SlideShare a Scribd company logo
1 of 48
Download to read offline
Mission Updates
Denis Felikson
03/22/2023
Future of Greenland ice Sheet Science (FOGSS)
2
Measurement concept
§ 3-km spacing between pairs provides spatial coverage
§ 90-m pair spacing for slope determination (2° yaw)
§ high-energy beams (3x) for better performance over low-reflectivity targets
§ Single pulse of 532 nm laser light
§ Split into six beams
§ Single-photon sensitive detection
From Smith et al. (2019)
500 km altitude
88S to 88N
15 revs/day
1387 tracks
91-day revisit
Ground tracks at
icesat-2.gsfc.nasa.gov
Orbit and repeat track design
4
~1,700 days on-orbit since launch
ATLAS: transmitting laser light since 01 October 2018
1.3 trillion (and counting) laser pulses
Performance metrics remain nominal,
and within requirements
Current Status
Observatory and instrument status
Outlook on mission lifetime
• Instrument components performing very well
• Fuel is main known limiting factor, projected to until year ~2037
Data products
7
Data access
Several (hopefully) easy ways to get at ICESat-2 lidar data
National Snow and Ice Data Center
http://nsidc.org
OpenAltimetry
http://openaltimetry.org
SlideRule
http://voila.icesat2sliderule.org/
CryoHub
http://cryointhecloud.com
icepyx
https://icepyx.readthedocs.io
https://icesat-2.hackweek.io/
ICESat-2 Hackweek
Greenland Ice Sheet science
More at https://icesat-2.gsfc.nasa.gov/publications
Medley, B., et al. (2022),
https://doi.org/10.5194/tc-16-3971-2022
Smith, B.E., et al. (2020),
https://doi.org/10.1126/science.aaz5845
Pervasive ice sheet mass loss
reflects competing ocean and
atmosphere processes
Khan, S.A., et al. (2022),
https://doi.org/10.1038/s41586-022-05301-z
Extensive inland thinning and speed-up of
Northeast Greenland Ice Stream
Simulations of firn processes
over the Greenland and
Antarctic ice sheets: 1980–2021
On-going work:
1. Release 006 for along-track data products
2. New data products in development:
• Gridded quarterly mass change product (based on ATL15) using Community Firn Model
• Global shallow bathymetry product
Backup slides
11
Measurement Concept
We want to measure elevation
Lidar measures range (time of flight)
Spacecraft measures absolute pointing angle
GPS measures position in orbit
Ground processing puts the pieces together
Josh Willis, Principal Investigator
Eric Rignot, Deputy PI
Ian Fenty, Project Scientist
Oceans Melting Greenland
NASA EVS-2 mission
2015-2021
This document has been reviewed and determined not to contain export controlled technical data.
GRACE
mass
loss
ocean
warming
Hypothesis:
Ocean warming drives a
large part of Greenland’s
ice loss
This document has been reviewed and determined not to contain export controlled technical data.
GLISTIN-A
AXCTDs
The OMG Experiment
1) measure how
the ocean
changes
2) observe how
glaciers reacts
3) ask: how do glaciers
react to ocean
changes?
This document has been reviewed and determined not to contain export controlled technical data.
Free-Air Gravity
Sea Floor Depth
from SONAR
To understand how
they are related, we
also need to know the
shape and depth of the
sea floor…
The OMG Experiment
This document has been reviewed and determined not to contain export controlled technical data.
This document has been reviewed and determined not to contain export controlled technical data.
This document has been reviewed and determined not to contain export controlled technical data.
OMG revolutionized
our knowledge of
the depth of
Greenland’s
continental shelf
This fundamentally
changes our
understanding of
how the Oceans are
Melting Greenland
Warm
water
Ocean Depth
This document has been reviewed and determined not to contain export controlled technical data.
This document has been reviewed and determined not to contain export controlled technical data.
This document has been reviewed and determined not to contain export controlled technical data.
OMG science impact: 84 pubs to date
AXCTDs & ship CTDs
GLISTIN
Airborne Gravity
Ship based bathymetry
Willis et al., Oceanography, 2018
An et al., Remote Sensing, 2019 Morlighem et al., Geophys.
Res. Lett., 2017
Data from every survey has been
used in peer reviewed publications
This document has been reviewed and determined not to contain export controlled technical data.
OMG, Jakobshavn is Growing!
OMG showed that short-term growth of
Greenland’s largest glacier was due to a
cyclic change in ocean temperature
https://apnews.com/b19abfb0a0534b51925aa121806255a8
Growth in 2016
Growth in 2017
Growth in 2018
This document has been reviewed and determined not to contain export controlled technical data.
Ocean cooling à glacier thickening
30 m rise in
elevation
between 2016
and 2017
OMG observed thickening of Jakboshavn
for the first time in almost 20 years.
Caused by arrival of cold water in Disko
Bay, which saw the coldest summer
water temperature since the 1980s.
2°C
cooling!
Khazendar, Fenty, Carroll, et al., Two decades of Jakobshavn Isbrae Acceleration and Thinning Interrupted as Ocean Cools,
Nature Geoscience, 2019.
This document has been reviewed and determined not to contain export controlled technical data.
Undercutting of northern ice shelves by a warmer ocean
- Zachariae (ZI) and 79North (79N) hold an ice volume above flotation equivalent to a 1.1 m SLR
- OMG survey reveals a deep channel in front of ZI and a shallow sill in front of 79N
- Modeling of glacier evolution since 1960’s supports retreat of ZI controlled by warmer ocean waters.
An, Rignot, Wood, et al., Ocean melting of the Zachariae Isstrøm and Nioghalvfjerdsfjorden glaciers, northeast Greenland
Proc. Nat. Acad. Sci., 2021
à Glacier undercutting, Qm, controls 1/3 of the retreat, Qgl, vs glacier thinning by melt and speed, Qs.
à OMG data help explain the contrasting behavior of the two glaciers and explain the retreat (within 12%).
Deep channel at Zachariae
Gravity survey Warm waters blocked by sill at 79N
This document has been reviewed and determined not to contain export controlled technical data.
Hypothesis confirmed:
Ocean Plays a Large Role in
Greenland Ice Loss
Nearby ocean warming and cooling
explains half of Greenland’s ice loss.
If ocean is ignored, predictions
underestimate melt by factor of 2
Wood, Rignot, Fenty, et al., Ocean melting of the Zachariae Isstrøm and Nioghalvfjerdsfjorden glaciers, northeast Greenland
Proc. Nat. Acad. Sci., 2021
This document has been reviewed and determined not to contain export controlled technical data.
Y. Choi
simulated the
evolution of
200+ glaciers
using OMG
data
Looking to the future: Ocean Will Continue to Play Large Role
in Greenland Ice Loss through 2100
Projections using JPL’s Ice Sheet and Sea
Level System (ISSM) Model
With ocean forcing, ice discharge is 2x higher than in previous projections
Ice loss
from
increased
discharge
continues
through
2100
Choi, Morlighem, Rignot, Wood, Ice dynamics will remain a primary driver of Greenland ice sheet mass loss over the next
century. Nature Communications: Earth and Environment (2021)
This document has been reviewed and determined not to contain export controlled technical data.
OMG-Narwhals
Hypothesis
Narwhal abundance and behavior is sensitive to seasonal
and interannual changes in ocean physical properties,
including temperature and salinity
Approach
Simultaneously record ocean acoustic signals at multiple
frequencies and ocean physical properties at multiple
depths at sub-daily frequencies three years (reduced to two
years because of Covid-19)
Status
Detection of narwhal acoustic signals in recordings
complete. Ocean physical data analysis ongoing by U.
Washington Ph.D. candidate Marie Zahn (K. Laidre,
advisor)
Moorings
GINR Vessel R/V Sanna
A collaboration between the NASA Phys. Ocean
Program, ONR Marine Mammal Program, and GINR
This document has been reviewed and determined not to contain export controlled technical data.
Argo-like Floats
MRV
Alamo
Teledyne
APEX
MRV –
small, easy
to handle but
~50% failure
Teledyne -
bulky, but
excellent
reliability
(similar cost)
~$25k
This document has been reviewed and determined not to contain export controlled technical data.
The APEX floats
not only survived
the winter, they
remained on the
shelf collecting
data all winter
APEX floats can
easily monitor
changes in ocean
temperature and
salinity on the shelf
This document has been reviewed and determined not to contain export controlled technical data.
OMG About Page
Community Outreach
via OMG Website
This document has been reviewed and determined not to contain export controlled technical data.
A program called “Greenland Rising” developed an app to deliver
OMG and other bathymetry data to local fisherman.
Halibut provides
primary income
for fisherman
like Jonas,
pictured here
With the help of the app, Jonas
moved his line by 600 m, and
substantially improved his catch
This document has been reviewed and determined not to contain export controlled technical data.
2021 Public Outreach
Several hundred local
students received lectures
and/or visited the airplane in
Kangerlussuaq, Ilulissat, and
Nuuk
Despite previous NASA
& NSF missions, few
prior talks like these
This document has been reviewed and determined not to contain export controlled technical data.
https://github.com/nasa/resample_GLISTIN_DEMs
This document has been reviewed and determined not to contain export controlled technical data.
OMG was successful because NASA
allowed us to be flexibility with how we
achieved the scientific objectives
• aircraft changes
• university partnerships (e.g., U. Washington)
• Instrument changes (e.g., APEX)
• changing survey areas
A robust university science Co-Investigator
team was also critical to the mission
success
Food for Thought: EVS
This document has been reviewed and determined not to contain export controlled technical data.
Petermann Glacier
This document has been reviewed and determined not to contain export controlled technical data.
Umiamako Glacier
CONCEPTUAL CORE STATION ELEVATION VIEW (circa 2014)
Based Upon Model 5 (even earlier)– Depicts Partial Deployment of Elevated Modules 3
• Power
• Winter Berthing
• Living
• Science
• AWO
CORE STATION ELEVATED MODULES CORE STATION SURFACE MODULES
• Operations Garage
• Summer Berthing
• Science Garage
• Renewable Energy
HSF Helheim Glacier mega-site:
collaborative project to quantify ice-ocean-atmosphere interactions
Chris Bickel, AAAS
Beverly, MA (2013) “Workshop on understanding”
San Francisco, CA (2015) “Establishing an observing system”
San Francisco, CA (2018) “Quantifying freshwater fluxes”
1. Long-term observations at a number of sites
(GrIOOS: Greenland Ice-Ocean Observing System).
2. Process studies to address identified dynamical
processes in isolation.
3. Megasite experiments to study inter-linkages of
process.
Workshops -> Community-driven priorities
GOAL:
improve understanding of processes occurring
at the marine margin of Helheim Glacier
Chris Bickel, AAAS
bed topography at the terminus
(Carl Leuschen, KU/CReSIS)
GEOMETRY:
bathymetry beneath the mélange
(Mathieu Morlighem, Dartmouth)
Project Goals:
• Fill in bed topography data gaps by acquiring dense
grids across Helheim’s terminus.
• VTOL/UAS platform can operate from lower altitudes
and slower speeds than crewed aircraft.
• HF radar less susceptible to attenuation in warm ice.
Project Goals:
• Map bathymetry under Helheim’s permanent pro-
glacial mélange;
• Some point measurements from CTDs and gravity
inversion, but largely unknown geometry.
• Integrate in BedMachine Greenland
OCEAN VARIABILITY:
mélange properties
(Luca Centurioni, UCSD-Scripps)
fjord properties
(Fiamma Straneo, UCSD-Scripps)
fjord-mélange modeling
(Kenneth Hughes, OSU)
(Emily Shroyer, ONR)
Project Goals:
• Collect ocean properties (salinity,
temperature, depth) at various depths
in the melange.
• Deploy drifters throughout the year.
• Successful pilot test in 2019.
Project Goals:
• Multi-year simulations of Sermilik Fjord
with realistic forcing and boundary
conditions.
• Idealized, high-res modeling of ocean
flows in, around, and under the melange
Project Goals:
• Maintain long-term acquisition of fjord
properties with moorings.
• Quantify seasonal and decadal fjord
variability in Sermilik Fjord.
• Investigate drivers of the variability.
present & recent SMB
(Marco Tedesco, LDEO)
ATMOSPHERE VARIABILITY:
Project Goals:
• Generate model simulations at 100m of surface
mass balance and energy balance components
• Close the water budget from the surface to the
bottom of the ice sheet
• Produce maps of surface and shallow-surface
evolution of the hydrological system
• Develop ML tools for downscaling and attribution
analysis (NEW !)
historic SMB
(Sarah Das, WHOI)
Project Goals:
• SMB history (seasonal to annual) over decades to ~century
• Identify mean state, trends and extreme years for ~century
• Identify horizons/age-depth for radar layer mapping
• Ground truth for modelled & remotely-sensed firn variables
• Connect history to downstream catchment (esp surface
hydrologic features and outlet glacier behavior)
Variables
-Accumulation
-Refrozen melt
-Density
-Temperature
-Chemistry
These variables are
poorly constrained by
models and reanalyses in
this region due to high
accumulation rates and
steep gradients
• 100 m downscaled product
improves SMB estimates from
MAR
• ML-based modeling and
attribution analysis
GLACIER VARIABILITY:
velocity & calving
(Leigh Stearns, KU)
(Dave Finnegan, CRREL)
coupled models
(Mathieu Morlighem, Dartmouth)
data fusion & models
(Doug Brinkerhoff, UM)
Project Goals:
• Determine the mechanisms that drive
variability in glacier flux at Helheim;
• Contribute to the development of a
robust glacier-ocean observing
system (GrIOOS)
Project Goals:
• Model the impact that ocean and
atmosphere variability has on glacier flow;
• Connect MAR subglacial discharge, MITgcm
ocean thermal forcing to higher resolution
model (100m - 1.5 km) of Helheim.
• Reproduce Helheim’s variability since 2007
• Possibly derive new calving law
Project Goals:
• Better constraining model parameters by
incorporating uncertainties in
observations and model physics.
• Simultaneous data assimilation over all
unknown model parameters given all
available datasets informed by this
project.
ADDITIONAL HSF PROJECTS:
PIs: Winnie Chu (Georgia Tech), Colin Meyer (Dartmouth), Kristin Poinar (SUNY-Buffalo)
Title: Follow the water
Funding: HSF
PIs: Sridhar Anandakrishnan (Penn State)
Title: Seismic monitoring with geoPebbles
Funding: HSF
PI: Alex Robel (Georgia Tech)
Title: Stochastic Ice Sheet Project
Funding: HSF
PI: Emily Arnold (KU/CReSIS)
Title: CAREER: UAS-Based Radar Suite for Sounding and Mapping Glaciers
Funding: NSF-CAREER
Volume
anomaly
(%)
Years
We love to collaborate - be in touch if any
of this data is useful for your projects!
Discussion prompts:
• This “megasite” style project is hard to find funding
for in Greenland (WAIS, ITGC in Antarctica). How
can we support them outside of foundations?
Adam LeWinter, CRREL

More Related Content

Similar to afternoon2.pdf

WE2.L10.4: OPERATION ICEBRIDGE: USING INSTRUMENTED AIRCRAFT TO BRIDGE THE OBS...
WE2.L10.4: OPERATION ICEBRIDGE: USING INSTRUMENTED AIRCRAFT TO BRIDGE THE OBS...WE2.L10.4: OPERATION ICEBRIDGE: USING INSTRUMENTED AIRCRAFT TO BRIDGE THE OBS...
WE2.L10.4: OPERATION ICEBRIDGE: USING INSTRUMENTED AIRCRAFT TO BRIDGE THE OBS...grssieee
 
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Sea Ice
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Sea IceNISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Sea Ice
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Sea IceDr. Pankaj Dhussa
 
Argo & GCOS 2016
Argo & GCOS 2016Argo & GCOS 2016
Argo & GCOS 2016JCOMMOPS
 
A large impact crater beneath Hiawatha Glacier in northwest Greenland
A large impact crater beneath Hiawatha Glacier in northwest GreenlandA large impact crater beneath Hiawatha Glacier in northwest Greenland
A large impact crater beneath Hiawatha Glacier in northwest GreenlandSérgio Sacani
 
MOSAiC – The International Arctic Drift Expedition
MOSAiC – The International  Arctic Drift ExpeditionMOSAiC – The International  Arctic Drift Expedition
MOSAiC – The International Arctic Drift ExpeditionAdvanced-Concepts-Team
 
Aspen Global Change Institute - 12 June 2017
Aspen Global Change Institute - 12 June 2017Aspen Global Change Institute - 12 June 2017
Aspen Global Change Institute - 12 June 2017Zachary Labe
 
Climate change co2 or crop irrigation
Climate change  co2 or crop irrigationClimate change  co2 or crop irrigation
Climate change co2 or crop irrigationKeith_Shotbolt
 
Climate Change in the Arctic
Climate Change in the ArcticClimate Change in the Arctic
Climate Change in the ArcticZachary Labe
 
Greening of the Arctic: Climate change and circumpolar Arctic vegetation
Greening of the Arctic: Climate change and circumpolar Arctic vegetation Greening of the Arctic: Climate change and circumpolar Arctic vegetation
Greening of the Arctic: Climate change and circumpolar Arctic vegetation Edie Barbour
 
final dissertation report
final dissertation reportfinal dissertation report
final dissertation reportLuis Duprat
 
WE1.L09 - AN OVERVIEW OF THE DESDYNI MISSION
WE1.L09 - AN OVERVIEW OF THE DESDYNI MISSIONWE1.L09 - AN OVERVIEW OF THE DESDYNI MISSION
WE1.L09 - AN OVERVIEW OF THE DESDYNI MISSIONgrssieee
 
afternoonkeynote_merge.pdf
afternoonkeynote_merge.pdfafternoonkeynote_merge.pdf
afternoonkeynote_merge.pdfWinnieChu21
 
The Pan-Arctic Impacts of Thinning Sea Ice
The Pan-Arctic Impacts of Thinning Sea IceThe Pan-Arctic Impacts of Thinning Sea Ice
The Pan-Arctic Impacts of Thinning Sea IceZachary Labe
 
Sea level rise, emerging issues paper, royal society of new zealand, sept 2010
Sea level rise, emerging issues paper, royal society of new zealand, sept 2010Sea level rise, emerging issues paper, royal society of new zealand, sept 2010
Sea level rise, emerging issues paper, royal society of new zealand, sept 2010petergnz
 
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Cryosphere
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) CryosphereNISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Cryosphere
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) CryosphereDr. Pankaj Dhussa
 
Saildrone Antarctica Mission
Saildrone Antarctica MissionSaildrone Antarctica Mission
Saildrone Antarctica MissionMatthieu LIENART
 
Intro Yamaltalk(1)
Intro Yamaltalk(1)Intro Yamaltalk(1)
Intro Yamaltalk(1)Edie Barbour
 

Similar to afternoon2.pdf (20)

WE2.L10.4: OPERATION ICEBRIDGE: USING INSTRUMENTED AIRCRAFT TO BRIDGE THE OBS...
WE2.L10.4: OPERATION ICEBRIDGE: USING INSTRUMENTED AIRCRAFT TO BRIDGE THE OBS...WE2.L10.4: OPERATION ICEBRIDGE: USING INSTRUMENTED AIRCRAFT TO BRIDGE THE OBS...
WE2.L10.4: OPERATION ICEBRIDGE: USING INSTRUMENTED AIRCRAFT TO BRIDGE THE OBS...
 
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Sea Ice
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Sea IceNISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Sea Ice
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Sea Ice
 
Argo & GCOS 2016
Argo & GCOS 2016Argo & GCOS 2016
Argo & GCOS 2016
 
A large impact crater beneath Hiawatha Glacier in northwest Greenland
A large impact crater beneath Hiawatha Glacier in northwest GreenlandA large impact crater beneath Hiawatha Glacier in northwest Greenland
A large impact crater beneath Hiawatha Glacier in northwest Greenland
 
Are we melting
Are we meltingAre we melting
Are we melting
 
MOSAiC – The International Arctic Drift Expedition
MOSAiC – The International  Arctic Drift ExpeditionMOSAiC – The International  Arctic Drift Expedition
MOSAiC – The International Arctic Drift Expedition
 
Aspen Global Change Institute - 12 June 2017
Aspen Global Change Institute - 12 June 2017Aspen Global Change Institute - 12 June 2017
Aspen Global Change Institute - 12 June 2017
 
Climate change co2 or crop irrigation
Climate change  co2 or crop irrigationClimate change  co2 or crop irrigation
Climate change co2 or crop irrigation
 
Thesis.Ppt
Thesis.PptThesis.Ppt
Thesis.Ppt
 
Climate Change in the Arctic
Climate Change in the ArcticClimate Change in the Arctic
Climate Change in the Arctic
 
Greening of the Arctic: Climate change and circumpolar Arctic vegetation
Greening of the Arctic: Climate change and circumpolar Arctic vegetation Greening of the Arctic: Climate change and circumpolar Arctic vegetation
Greening of the Arctic: Climate change and circumpolar Arctic vegetation
 
final dissertation report
final dissertation reportfinal dissertation report
final dissertation report
 
WE1.L09 - AN OVERVIEW OF THE DESDYNI MISSION
WE1.L09 - AN OVERVIEW OF THE DESDYNI MISSIONWE1.L09 - AN OVERVIEW OF THE DESDYNI MISSION
WE1.L09 - AN OVERVIEW OF THE DESDYNI MISSION
 
afternoonkeynote_merge.pdf
afternoonkeynote_merge.pdfafternoonkeynote_merge.pdf
afternoonkeynote_merge.pdf
 
The Pan-Arctic Impacts of Thinning Sea Ice
The Pan-Arctic Impacts of Thinning Sea IceThe Pan-Arctic Impacts of Thinning Sea Ice
The Pan-Arctic Impacts of Thinning Sea Ice
 
Sea level rise, emerging issues paper, royal society of new zealand, sept 2010
Sea level rise, emerging issues paper, royal society of new zealand, sept 2010Sea level rise, emerging issues paper, royal society of new zealand, sept 2010
Sea level rise, emerging issues paper, royal society of new zealand, sept 2010
 
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Cryosphere
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) CryosphereNISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Cryosphere
NISAR NASA-ISRO Synthetic Aperture Radar (NISAR) Cryosphere
 
Mercator Ocean newsletter 28
Mercator Ocean newsletter 28Mercator Ocean newsletter 28
Mercator Ocean newsletter 28
 
Saildrone Antarctica Mission
Saildrone Antarctica MissionSaildrone Antarctica Mission
Saildrone Antarctica Mission
 
Intro Yamaltalk(1)
Intro Yamaltalk(1)Intro Yamaltalk(1)
Intro Yamaltalk(1)
 

More from WinnieChu21

PaigeMartin_FOGSS_2023.pdf
PaigeMartin_FOGSS_2023.pdfPaigeMartin_FOGSS_2023.pdf
PaigeMartin_FOGSS_2023.pdfWinnieChu21
 
Catania_inclusion.pdf
Catania_inclusion.pdfCatania_inclusion.pdf
Catania_inclusion.pdfWinnieChu21
 
Walker-IARPC Pres for FOGSS.pdf
Walker-IARPC Pres for FOGSS.pdfWalker-IARPC Pres for FOGSS.pdf
Walker-IARPC Pres for FOGSS.pdfWinnieChu21
 
poster_merge.pdf
poster_merge.pdfposter_merge.pdf
poster_merge.pdfWinnieChu21
 
poster_merge.pdf
poster_merge.pdfposter_merge.pdf
poster_merge.pdfWinnieChu21
 
PDFsam_merge.pdf
PDFsam_merge.pdf PDFsam_merge.pdf
PDFsam_merge.pdf WinnieChu21
 
morningkeynote.pdf
morningkeynote.pdfmorningkeynote.pdf
morningkeynote.pdfWinnieChu21
 
Moon_FOGSS2023_5min_lightning.pdf
Moon_FOGSS2023_5min_lightning.pdfMoon_FOGSS2023_5min_lightning.pdf
Moon_FOGSS2023_5min_lightning.pdfWinnieChu21
 
FOGSS23-Arctic Field Safety Kim Derry.pdf
FOGSS23-Arctic Field Safety Kim Derry.pdfFOGSS23-Arctic Field Safety Kim Derry.pdf
FOGSS23-Arctic Field Safety Kim Derry.pdfWinnieChu21
 
Dibb Summit RECAP for FOGSS.pdf
Dibb Summit RECAP for FOGSS.pdfDibb Summit RECAP for FOGSS.pdf
Dibb Summit RECAP for FOGSS.pdfWinnieChu21
 
FOGSS2023-poster.pdf
FOGSS2023-poster.pdfFOGSS2023-poster.pdf
FOGSS2023-poster.pdfWinnieChu21
 
FOGSS_2023_Welcome.pdf
FOGSS_2023_Welcome.pdfFOGSS_2023_Welcome.pdf
FOGSS_2023_Welcome.pdfWinnieChu21
 

More from WinnieChu21 (17)

afternoon2.pdf
afternoon2.pdfafternoon2.pdf
afternoon2.pdf
 
afternoon3.pdf
afternoon3.pdfafternoon3.pdf
afternoon3.pdf
 
afternoon3.pdf
afternoon3.pdfafternoon3.pdf
afternoon3.pdf
 
PaigeMartin_FOGSS_2023.pdf
PaigeMartin_FOGSS_2023.pdfPaigeMartin_FOGSS_2023.pdf
PaigeMartin_FOGSS_2023.pdf
 
Catania_inclusion.pdf
Catania_inclusion.pdfCatania_inclusion.pdf
Catania_inclusion.pdf
 
Walker-IARPC Pres for FOGSS.pdf
Walker-IARPC Pres for FOGSS.pdfWalker-IARPC Pres for FOGSS.pdf
Walker-IARPC Pres for FOGSS.pdf
 
morning.pdf
morning.pdfmorning.pdf
morning.pdf
 
poster_merge.pdf
poster_merge.pdfposter_merge.pdf
poster_merge.pdf
 
breakout.pdf
breakout.pdfbreakout.pdf
breakout.pdf
 
poster_merge.pdf
poster_merge.pdfposter_merge.pdf
poster_merge.pdf
 
PDFsam_merge.pdf
PDFsam_merge.pdf PDFsam_merge.pdf
PDFsam_merge.pdf
 
morningkeynote.pdf
morningkeynote.pdfmorningkeynote.pdf
morningkeynote.pdf
 
Moon_FOGSS2023_5min_lightning.pdf
Moon_FOGSS2023_5min_lightning.pdfMoon_FOGSS2023_5min_lightning.pdf
Moon_FOGSS2023_5min_lightning.pdf
 
FOGSS23-Arctic Field Safety Kim Derry.pdf
FOGSS23-Arctic Field Safety Kim Derry.pdfFOGSS23-Arctic Field Safety Kim Derry.pdf
FOGSS23-Arctic Field Safety Kim Derry.pdf
 
Dibb Summit RECAP for FOGSS.pdf
Dibb Summit RECAP for FOGSS.pdfDibb Summit RECAP for FOGSS.pdf
Dibb Summit RECAP for FOGSS.pdf
 
FOGSS2023-poster.pdf
FOGSS2023-poster.pdfFOGSS2023-poster.pdf
FOGSS2023-poster.pdf
 
FOGSS_2023_Welcome.pdf
FOGSS_2023_Welcome.pdfFOGSS_2023_Welcome.pdf
FOGSS_2023_Welcome.pdf
 

Recently uploaded

Choosing the Right CBSE School A Comprehensive Guide for Parents
Choosing the Right CBSE School A Comprehensive Guide for ParentsChoosing the Right CBSE School A Comprehensive Guide for Parents
Choosing the Right CBSE School A Comprehensive Guide for Parentsnavabharathschool99
 
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...Nguyen Thanh Tu Collection
 
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptx
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptxMULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptx
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptxAnupkumar Sharma
 
DATA STRUCTURE AND ALGORITHM for beginners
DATA STRUCTURE AND ALGORITHM for beginnersDATA STRUCTURE AND ALGORITHM for beginners
DATA STRUCTURE AND ALGORITHM for beginnersSabitha Banu
 
Difference Between Search & Browse Methods in Odoo 17
Difference Between Search & Browse Methods in Odoo 17Difference Between Search & Browse Methods in Odoo 17
Difference Between Search & Browse Methods in Odoo 17Celine George
 
Proudly South Africa powerpoint Thorisha.pptx
Proudly South Africa powerpoint Thorisha.pptxProudly South Africa powerpoint Thorisha.pptx
Proudly South Africa powerpoint Thorisha.pptxthorishapillay1
 
Like-prefer-love -hate+verb+ing & silent letters & citizenship text.pdf
Like-prefer-love -hate+verb+ing & silent letters & citizenship text.pdfLike-prefer-love -hate+verb+ing & silent letters & citizenship text.pdf
Like-prefer-love -hate+verb+ing & silent letters & citizenship text.pdfMr Bounab Samir
 
Karra SKD Conference Presentation Revised.pptx
Karra SKD Conference Presentation Revised.pptxKarra SKD Conference Presentation Revised.pptx
Karra SKD Conference Presentation Revised.pptxAshokKarra1
 
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...Postal Advocate Inc.
 
Full Stack Web Development Course for Beginners
Full Stack Web Development Course  for BeginnersFull Stack Web Development Course  for Beginners
Full Stack Web Development Course for BeginnersSabitha Banu
 
ACC 2024 Chronicles. Cardiology. Exam.pdf
ACC 2024 Chronicles. Cardiology. Exam.pdfACC 2024 Chronicles. Cardiology. Exam.pdf
ACC 2024 Chronicles. Cardiology. Exam.pdfSpandanaRallapalli
 
Q4 English4 Week3 PPT Melcnmg-based.pptx
Q4 English4 Week3 PPT Melcnmg-based.pptxQ4 English4 Week3 PPT Melcnmg-based.pptx
Q4 English4 Week3 PPT Melcnmg-based.pptxnelietumpap1
 
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️9953056974 Low Rate Call Girls In Saket, Delhi NCR
 
Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17Celine George
 
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATIONTHEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATIONHumphrey A Beña
 
ENGLISH6-Q4-W3.pptxqurter our high choom
ENGLISH6-Q4-W3.pptxqurter our high choomENGLISH6-Q4-W3.pptxqurter our high choom
ENGLISH6-Q4-W3.pptxqurter our high choomnelietumpap1
 
Grade 9 Q4-MELC1-Active and Passive Voice.pptx
Grade 9 Q4-MELC1-Active and Passive Voice.pptxGrade 9 Q4-MELC1-Active and Passive Voice.pptx
Grade 9 Q4-MELC1-Active and Passive Voice.pptxChelloAnnAsuncion2
 

Recently uploaded (20)

Choosing the Right CBSE School A Comprehensive Guide for Parents
Choosing the Right CBSE School A Comprehensive Guide for ParentsChoosing the Right CBSE School A Comprehensive Guide for Parents
Choosing the Right CBSE School A Comprehensive Guide for Parents
 
LEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptx
LEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptxLEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptx
LEFT_ON_C'N_ PRELIMS_EL_DORADO_2024.pptx
 
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...
HỌC TỐT TIẾNG ANH 11 THEO CHƯƠNG TRÌNH GLOBAL SUCCESS ĐÁP ÁN CHI TIẾT - CẢ NĂ...
 
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptx
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptxMULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptx
MULTIDISCIPLINRY NATURE OF THE ENVIRONMENTAL STUDIES.pptx
 
DATA STRUCTURE AND ALGORITHM for beginners
DATA STRUCTURE AND ALGORITHM for beginnersDATA STRUCTURE AND ALGORITHM for beginners
DATA STRUCTURE AND ALGORITHM for beginners
 
Difference Between Search & Browse Methods in Odoo 17
Difference Between Search & Browse Methods in Odoo 17Difference Between Search & Browse Methods in Odoo 17
Difference Between Search & Browse Methods in Odoo 17
 
Proudly South Africa powerpoint Thorisha.pptx
Proudly South Africa powerpoint Thorisha.pptxProudly South Africa powerpoint Thorisha.pptx
Proudly South Africa powerpoint Thorisha.pptx
 
Like-prefer-love -hate+verb+ing & silent letters & citizenship text.pdf
Like-prefer-love -hate+verb+ing & silent letters & citizenship text.pdfLike-prefer-love -hate+verb+ing & silent letters & citizenship text.pdf
Like-prefer-love -hate+verb+ing & silent letters & citizenship text.pdf
 
Karra SKD Conference Presentation Revised.pptx
Karra SKD Conference Presentation Revised.pptxKarra SKD Conference Presentation Revised.pptx
Karra SKD Conference Presentation Revised.pptx
 
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...
USPS® Forced Meter Migration - How to Know if Your Postage Meter Will Soon be...
 
Full Stack Web Development Course for Beginners
Full Stack Web Development Course  for BeginnersFull Stack Web Development Course  for Beginners
Full Stack Web Development Course for Beginners
 
Raw materials used in Herbal Cosmetics.pptx
Raw materials used in Herbal Cosmetics.pptxRaw materials used in Herbal Cosmetics.pptx
Raw materials used in Herbal Cosmetics.pptx
 
ACC 2024 Chronicles. Cardiology. Exam.pdf
ACC 2024 Chronicles. Cardiology. Exam.pdfACC 2024 Chronicles. Cardiology. Exam.pdf
ACC 2024 Chronicles. Cardiology. Exam.pdf
 
Q4 English4 Week3 PPT Melcnmg-based.pptx
Q4 English4 Week3 PPT Melcnmg-based.pptxQ4 English4 Week3 PPT Melcnmg-based.pptx
Q4 English4 Week3 PPT Melcnmg-based.pptx
 
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
call girls in Kamla Market (DELHI) 🔝 >༒9953330565🔝 genuine Escort Service 🔝✔️✔️
 
Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17Computed Fields and api Depends in the Odoo 17
Computed Fields and api Depends in the Odoo 17
 
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATIONTHEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
THEORIES OF ORGANIZATION-PUBLIC ADMINISTRATION
 
YOUVE_GOT_EMAIL_PRELIMS_EL_DORADO_2024.pptx
YOUVE_GOT_EMAIL_PRELIMS_EL_DORADO_2024.pptxYOUVE_GOT_EMAIL_PRELIMS_EL_DORADO_2024.pptx
YOUVE_GOT_EMAIL_PRELIMS_EL_DORADO_2024.pptx
 
ENGLISH6-Q4-W3.pptxqurter our high choom
ENGLISH6-Q4-W3.pptxqurter our high choomENGLISH6-Q4-W3.pptxqurter our high choom
ENGLISH6-Q4-W3.pptxqurter our high choom
 
Grade 9 Q4-MELC1-Active and Passive Voice.pptx
Grade 9 Q4-MELC1-Active and Passive Voice.pptxGrade 9 Q4-MELC1-Active and Passive Voice.pptx
Grade 9 Q4-MELC1-Active and Passive Voice.pptx
 

afternoon2.pdf

  • 1. Mission Updates Denis Felikson 03/22/2023 Future of Greenland ice Sheet Science (FOGSS)
  • 2. 2 Measurement concept § 3-km spacing between pairs provides spatial coverage § 90-m pair spacing for slope determination (2° yaw) § high-energy beams (3x) for better performance over low-reflectivity targets § Single pulse of 532 nm laser light § Split into six beams § Single-photon sensitive detection From Smith et al. (2019)
  • 3. 500 km altitude 88S to 88N 15 revs/day 1387 tracks 91-day revisit Ground tracks at icesat-2.gsfc.nasa.gov Orbit and repeat track design
  • 4. 4 ~1,700 days on-orbit since launch ATLAS: transmitting laser light since 01 October 2018 1.3 trillion (and counting) laser pulses Performance metrics remain nominal, and within requirements Current Status Observatory and instrument status
  • 5. Outlook on mission lifetime • Instrument components performing very well • Fuel is main known limiting factor, projected to until year ~2037
  • 7. 7 Data access Several (hopefully) easy ways to get at ICESat-2 lidar data National Snow and Ice Data Center http://nsidc.org OpenAltimetry http://openaltimetry.org SlideRule http://voila.icesat2sliderule.org/ CryoHub http://cryointhecloud.com icepyx https://icepyx.readthedocs.io
  • 9. Greenland Ice Sheet science More at https://icesat-2.gsfc.nasa.gov/publications Medley, B., et al. (2022), https://doi.org/10.5194/tc-16-3971-2022 Smith, B.E., et al. (2020), https://doi.org/10.1126/science.aaz5845 Pervasive ice sheet mass loss reflects competing ocean and atmosphere processes Khan, S.A., et al. (2022), https://doi.org/10.1038/s41586-022-05301-z Extensive inland thinning and speed-up of Northeast Greenland Ice Stream Simulations of firn processes over the Greenland and Antarctic ice sheets: 1980–2021 On-going work: 1. Release 006 for along-track data products 2. New data products in development: • Gridded quarterly mass change product (based on ATL15) using Community Firn Model • Global shallow bathymetry product
  • 11. 11 Measurement Concept We want to measure elevation Lidar measures range (time of flight) Spacecraft measures absolute pointing angle GPS measures position in orbit Ground processing puts the pieces together
  • 12. Josh Willis, Principal Investigator Eric Rignot, Deputy PI Ian Fenty, Project Scientist Oceans Melting Greenland NASA EVS-2 mission 2015-2021
  • 13. This document has been reviewed and determined not to contain export controlled technical data. GRACE mass loss ocean warming Hypothesis: Ocean warming drives a large part of Greenland’s ice loss
  • 14. This document has been reviewed and determined not to contain export controlled technical data. GLISTIN-A AXCTDs The OMG Experiment 1) measure how the ocean changes 2) observe how glaciers reacts 3) ask: how do glaciers react to ocean changes?
  • 15. This document has been reviewed and determined not to contain export controlled technical data. Free-Air Gravity Sea Floor Depth from SONAR To understand how they are related, we also need to know the shape and depth of the sea floor… The OMG Experiment
  • 16. This document has been reviewed and determined not to contain export controlled technical data.
  • 17. This document has been reviewed and determined not to contain export controlled technical data.
  • 18. This document has been reviewed and determined not to contain export controlled technical data. OMG revolutionized our knowledge of the depth of Greenland’s continental shelf This fundamentally changes our understanding of how the Oceans are Melting Greenland Warm water Ocean Depth
  • 19. This document has been reviewed and determined not to contain export controlled technical data.
  • 20. This document has been reviewed and determined not to contain export controlled technical data.
  • 21. This document has been reviewed and determined not to contain export controlled technical data. OMG science impact: 84 pubs to date AXCTDs & ship CTDs GLISTIN Airborne Gravity Ship based bathymetry Willis et al., Oceanography, 2018 An et al., Remote Sensing, 2019 Morlighem et al., Geophys. Res. Lett., 2017 Data from every survey has been used in peer reviewed publications
  • 22. This document has been reviewed and determined not to contain export controlled technical data. OMG, Jakobshavn is Growing! OMG showed that short-term growth of Greenland’s largest glacier was due to a cyclic change in ocean temperature https://apnews.com/b19abfb0a0534b51925aa121806255a8 Growth in 2016 Growth in 2017 Growth in 2018
  • 23. This document has been reviewed and determined not to contain export controlled technical data. Ocean cooling à glacier thickening 30 m rise in elevation between 2016 and 2017 OMG observed thickening of Jakboshavn for the first time in almost 20 years. Caused by arrival of cold water in Disko Bay, which saw the coldest summer water temperature since the 1980s. 2°C cooling! Khazendar, Fenty, Carroll, et al., Two decades of Jakobshavn Isbrae Acceleration and Thinning Interrupted as Ocean Cools, Nature Geoscience, 2019.
  • 24. This document has been reviewed and determined not to contain export controlled technical data. Undercutting of northern ice shelves by a warmer ocean - Zachariae (ZI) and 79North (79N) hold an ice volume above flotation equivalent to a 1.1 m SLR - OMG survey reveals a deep channel in front of ZI and a shallow sill in front of 79N - Modeling of glacier evolution since 1960’s supports retreat of ZI controlled by warmer ocean waters. An, Rignot, Wood, et al., Ocean melting of the Zachariae Isstrøm and Nioghalvfjerdsfjorden glaciers, northeast Greenland Proc. Nat. Acad. Sci., 2021 à Glacier undercutting, Qm, controls 1/3 of the retreat, Qgl, vs glacier thinning by melt and speed, Qs. à OMG data help explain the contrasting behavior of the two glaciers and explain the retreat (within 12%). Deep channel at Zachariae Gravity survey Warm waters blocked by sill at 79N
  • 25. This document has been reviewed and determined not to contain export controlled technical data. Hypothesis confirmed: Ocean Plays a Large Role in Greenland Ice Loss Nearby ocean warming and cooling explains half of Greenland’s ice loss. If ocean is ignored, predictions underestimate melt by factor of 2 Wood, Rignot, Fenty, et al., Ocean melting of the Zachariae Isstrøm and Nioghalvfjerdsfjorden glaciers, northeast Greenland Proc. Nat. Acad. Sci., 2021
  • 26. This document has been reviewed and determined not to contain export controlled technical data. Y. Choi simulated the evolution of 200+ glaciers using OMG data Looking to the future: Ocean Will Continue to Play Large Role in Greenland Ice Loss through 2100 Projections using JPL’s Ice Sheet and Sea Level System (ISSM) Model With ocean forcing, ice discharge is 2x higher than in previous projections Ice loss from increased discharge continues through 2100 Choi, Morlighem, Rignot, Wood, Ice dynamics will remain a primary driver of Greenland ice sheet mass loss over the next century. Nature Communications: Earth and Environment (2021)
  • 27. This document has been reviewed and determined not to contain export controlled technical data. OMG-Narwhals Hypothesis Narwhal abundance and behavior is sensitive to seasonal and interannual changes in ocean physical properties, including temperature and salinity Approach Simultaneously record ocean acoustic signals at multiple frequencies and ocean physical properties at multiple depths at sub-daily frequencies three years (reduced to two years because of Covid-19) Status Detection of narwhal acoustic signals in recordings complete. Ocean physical data analysis ongoing by U. Washington Ph.D. candidate Marie Zahn (K. Laidre, advisor) Moorings GINR Vessel R/V Sanna A collaboration between the NASA Phys. Ocean Program, ONR Marine Mammal Program, and GINR
  • 28. This document has been reviewed and determined not to contain export controlled technical data. Argo-like Floats MRV Alamo Teledyne APEX MRV – small, easy to handle but ~50% failure Teledyne - bulky, but excellent reliability (similar cost) ~$25k
  • 29. This document has been reviewed and determined not to contain export controlled technical data. The APEX floats not only survived the winter, they remained on the shelf collecting data all winter APEX floats can easily monitor changes in ocean temperature and salinity on the shelf
  • 30. This document has been reviewed and determined not to contain export controlled technical data. OMG About Page Community Outreach via OMG Website
  • 31. This document has been reviewed and determined not to contain export controlled technical data. A program called “Greenland Rising” developed an app to deliver OMG and other bathymetry data to local fisherman. Halibut provides primary income for fisherman like Jonas, pictured here With the help of the app, Jonas moved his line by 600 m, and substantially improved his catch
  • 32. This document has been reviewed and determined not to contain export controlled technical data. 2021 Public Outreach Several hundred local students received lectures and/or visited the airplane in Kangerlussuaq, Ilulissat, and Nuuk Despite previous NASA & NSF missions, few prior talks like these
  • 33. This document has been reviewed and determined not to contain export controlled technical data. https://github.com/nasa/resample_GLISTIN_DEMs
  • 34. This document has been reviewed and determined not to contain export controlled technical data. OMG was successful because NASA allowed us to be flexibility with how we achieved the scientific objectives • aircraft changes • university partnerships (e.g., U. Washington) • Instrument changes (e.g., APEX) • changing survey areas A robust university science Co-Investigator team was also critical to the mission success Food for Thought: EVS
  • 35. This document has been reviewed and determined not to contain export controlled technical data. Petermann Glacier
  • 36. This document has been reviewed and determined not to contain export controlled technical data. Umiamako Glacier
  • 37.
  • 38.
  • 39. CONCEPTUAL CORE STATION ELEVATION VIEW (circa 2014) Based Upon Model 5 (even earlier)– Depicts Partial Deployment of Elevated Modules 3 • Power • Winter Berthing • Living • Science • AWO CORE STATION ELEVATED MODULES CORE STATION SURFACE MODULES • Operations Garage • Summer Berthing • Science Garage • Renewable Energy
  • 40. HSF Helheim Glacier mega-site: collaborative project to quantify ice-ocean-atmosphere interactions Chris Bickel, AAAS
  • 41. Beverly, MA (2013) “Workshop on understanding” San Francisco, CA (2015) “Establishing an observing system” San Francisco, CA (2018) “Quantifying freshwater fluxes” 1. Long-term observations at a number of sites (GrIOOS: Greenland Ice-Ocean Observing System). 2. Process studies to address identified dynamical processes in isolation. 3. Megasite experiments to study inter-linkages of process. Workshops -> Community-driven priorities
  • 42. GOAL: improve understanding of processes occurring at the marine margin of Helheim Glacier Chris Bickel, AAAS
  • 43. bed topography at the terminus (Carl Leuschen, KU/CReSIS) GEOMETRY: bathymetry beneath the mélange (Mathieu Morlighem, Dartmouth) Project Goals: • Fill in bed topography data gaps by acquiring dense grids across Helheim’s terminus. • VTOL/UAS platform can operate from lower altitudes and slower speeds than crewed aircraft. • HF radar less susceptible to attenuation in warm ice. Project Goals: • Map bathymetry under Helheim’s permanent pro- glacial mélange; • Some point measurements from CTDs and gravity inversion, but largely unknown geometry. • Integrate in BedMachine Greenland
  • 44. OCEAN VARIABILITY: mélange properties (Luca Centurioni, UCSD-Scripps) fjord properties (Fiamma Straneo, UCSD-Scripps) fjord-mélange modeling (Kenneth Hughes, OSU) (Emily Shroyer, ONR) Project Goals: • Collect ocean properties (salinity, temperature, depth) at various depths in the melange. • Deploy drifters throughout the year. • Successful pilot test in 2019. Project Goals: • Multi-year simulations of Sermilik Fjord with realistic forcing and boundary conditions. • Idealized, high-res modeling of ocean flows in, around, and under the melange Project Goals: • Maintain long-term acquisition of fjord properties with moorings. • Quantify seasonal and decadal fjord variability in Sermilik Fjord. • Investigate drivers of the variability.
  • 45. present & recent SMB (Marco Tedesco, LDEO) ATMOSPHERE VARIABILITY: Project Goals: • Generate model simulations at 100m of surface mass balance and energy balance components • Close the water budget from the surface to the bottom of the ice sheet • Produce maps of surface and shallow-surface evolution of the hydrological system • Develop ML tools for downscaling and attribution analysis (NEW !) historic SMB (Sarah Das, WHOI) Project Goals: • SMB history (seasonal to annual) over decades to ~century • Identify mean state, trends and extreme years for ~century • Identify horizons/age-depth for radar layer mapping • Ground truth for modelled & remotely-sensed firn variables • Connect history to downstream catchment (esp surface hydrologic features and outlet glacier behavior) Variables -Accumulation -Refrozen melt -Density -Temperature -Chemistry These variables are poorly constrained by models and reanalyses in this region due to high accumulation rates and steep gradients • 100 m downscaled product improves SMB estimates from MAR • ML-based modeling and attribution analysis
  • 46. GLACIER VARIABILITY: velocity & calving (Leigh Stearns, KU) (Dave Finnegan, CRREL) coupled models (Mathieu Morlighem, Dartmouth) data fusion & models (Doug Brinkerhoff, UM) Project Goals: • Determine the mechanisms that drive variability in glacier flux at Helheim; • Contribute to the development of a robust glacier-ocean observing system (GrIOOS) Project Goals: • Model the impact that ocean and atmosphere variability has on glacier flow; • Connect MAR subglacial discharge, MITgcm ocean thermal forcing to higher resolution model (100m - 1.5 km) of Helheim. • Reproduce Helheim’s variability since 2007 • Possibly derive new calving law Project Goals: • Better constraining model parameters by incorporating uncertainties in observations and model physics. • Simultaneous data assimilation over all unknown model parameters given all available datasets informed by this project.
  • 47. ADDITIONAL HSF PROJECTS: PIs: Winnie Chu (Georgia Tech), Colin Meyer (Dartmouth), Kristin Poinar (SUNY-Buffalo) Title: Follow the water Funding: HSF PIs: Sridhar Anandakrishnan (Penn State) Title: Seismic monitoring with geoPebbles Funding: HSF PI: Alex Robel (Georgia Tech) Title: Stochastic Ice Sheet Project Funding: HSF PI: Emily Arnold (KU/CReSIS) Title: CAREER: UAS-Based Radar Suite for Sounding and Mapping Glaciers Funding: NSF-CAREER Volume anomaly (%) Years
  • 48. We love to collaborate - be in touch if any of this data is useful for your projects! Discussion prompts: • This “megasite” style project is hard to find funding for in Greenland (WAIS, ITGC in Antarctica). How can we support them outside of foundations? Adam LeWinter, CRREL