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Energy Efficiency and Cooling Cost
Reduction in Data Centers With CFD
Dr. Pawel Sosnowski
Pawel Sosnowski, PhD
Customer Success Engineer
Pawel holds a Ph.D. in Environmental and
Industrial Fluid Mechanics and a M.Sc. in
Technical Physics. His expertise includes CFD,
numerical analysis, customer relations
management, 3D printing, and software
development.
1. Benefits of Using Simulation
2. Introduction to SimScale
3. Today’s Topic
4. Live Demonstration
5. Results Summary
6. Q & A
Create a free SimScale account
ACCELERATE YOUR
DESIGN PROCESS
Easily test performance, optimize
durability or improve design efficiency
with cloud-based simulation.
ALL-IN-ONE
Structural mechanics,
fluid dynamics, and
thermodynamics.
REAL-TIME SUPPORT
Chat, phone and email.
Consultancy, webinars,
and training.
COLLABORATION
Join the community,
benefit from public projects,
and share know-how.
FAST & EASY
Get results faster
on any device thanks
to cloud technology.
COST-EFFICIENT
Start risk-free without
an upfront investment.
SECURE
High security with
government-approved
Advanced Encryption
Standard (AES).
ELECTRONICSA E C ENERGY AUTOMOTIVE AEROSPACE
HEALTHCARE MACHINERY MARINE CONSUMER
GOODS
VALVES &
PUMPS
Watch the workshop recording
Energy Efficiency and Cooling Cost Reduction in Data Centers with CFD
How to REDUCE THE COOLING
COST of DATA CENTERS with CFD
Energy Consumption
● 2000 - 2005: 90% increase
● 2005 - 2010: 40 % increase
● Current Trends:
○ Limit to 1.5 % increase
○ Save 620 Billion kWh
The Importance of Energy Consumption is Rising
[1] Source: U.S. Department of Energy, Lawrence Berkeley National Laboratory
http://www.expansionsolutionsmagazine.com/industry_articles/view/12081/the_data_center_revolution____who_are_gordon_moore_and_robert_dennard__and_what_do_they_mean_to_me__
Energy Distribution in a Data Center
Image Source [1]: http://ieeexplore.ieee.org/document/7279063/
Image Source [2]: http://dptgroup.com/event/thermal-power-il/
High Power Density Data Center
Server Racks (4 KW Each)
CRACs Return Outlet
CRACs Supply Inlet
Cold Aisle
Containments
Raised Floor
Plenum
Raised Floor Cold-Aisle Containment Layout
High Power Density Data Center
COLD
AISLE
COLD
AISLE
HOT AISLE
C
R
A
C
C
R
A
C
C
R
A
C
HOT AISLE
HOT AISLE
C
R
A
C
Perforated Tiles (modeled using porous media)
Raised Floor Cold-Aisle Containment Layout
High Power Density Data Center
Cross-section view of layout showing flow physics
Raised Floor Cold-Aisle Containment Layout
Front GrillServers Heat
Source
Fan Momentum
Source
Rear Grill Perforated
Tiles
Design Constraints & Parameters
CONSTRAINTS
● 208 KW Total Space Load
● 140 m2 Data Center
● Server Intake Temperature
PARAMETERS
● Supply Temperature
● Supply Flow Rate
● Rack Cooling Effectiveness
(RCI)
● Cooling Cost Function
Rack Cooling Index (RCI) – Measure of Cooling Effectiveness
ASHRAE Standards – “The recommended equipment intake temperature range is 20-25°C and the allowable range is 15-
32°C.”
(Reference: Herrlin, M. and Khankari, K. Methods for Optimizing Equipment Cooling Effectiveness and HVAC Cooling Costs in
Telecom and Data Centers. ASHRAE Transactions, Volume 114, Part 1)
“RCIHI is a measure of the equipment health at the high end of the temperature
range. Over-temperature conditions exist when one or more equipment intake
temperatures exceed the max recommended temperature.”
“The RCILO is a complement to RCIHI especially when the supply condition is
below the minimum recommended temperature.”
Flow Parameter Variation for Cooling Index
A total of 16 cases analyzed
Watch the workshop recording
Servers Intake Temperatures
Row 1
Row 2
Row 3
Row 4
Average Servers Intake Temperatures
Servers Temperatures at Rack Midplane (Row 1 & Row 2)
Servers Temperatures at Rack Midplane (Row 3 & Row 4)
Velocity at 1m Height
Temperature at 1m Height
Velocity Contours at Grill Section
Temperature Contours at Grill Section
Pressure Drop at Perforated Plates & Grills
Cost Function – A Trade-off between Supply Temperature & Supply Flow Rate
Cost Function Definition: Energy costs for conditioning are associated with chiller and fan energy
consumption.
1. Increase in supply air temperature is linearly proportional to higher chiller Coefficient of Performance
(COP).
2. Increase in supply airflow rate demands more fan energy to circulate air between the air-handler and
data center.
Cost & Energy Savings
RCI criteria: With both RCIHI and RCILO ≥ 95 and energy savings of 11% (at 21°C, 120 % supply
configuration) is a true win-win situation in accordance with ASHRAE Standards.
CAD IMPORT
Upload your CAD model
or import it from other cloud
services into SimScale.
SIMULATION SETUP
All steps to define and run
a simulation are done
within SimScale.
DESIGN DECISION
Use the simulation insights
to make better and faster
design decisions.
1 2 3
Read this blog article to learn more
Data Center Cooling System Design: Reducing Cooling Costs and Power Consumption with CFD

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Data Center Cooling System Design: Reducing Cooling Costs and Power Consumption with CFD

  • 1. Energy Efficiency and Cooling Cost Reduction in Data Centers With CFD Dr. Pawel Sosnowski
  • 2. Pawel Sosnowski, PhD Customer Success Engineer Pawel holds a Ph.D. in Environmental and Industrial Fluid Mechanics and a M.Sc. in Technical Physics. His expertise includes CFD, numerical analysis, customer relations management, 3D printing, and software development.
  • 3. 1. Benefits of Using Simulation 2. Introduction to SimScale 3. Today’s Topic 4. Live Demonstration 5. Results Summary 6. Q & A
  • 4.
  • 5.
  • 6.
  • 7. Create a free SimScale account
  • 8. ACCELERATE YOUR DESIGN PROCESS Easily test performance, optimize durability or improve design efficiency with cloud-based simulation.
  • 9. ALL-IN-ONE Structural mechanics, fluid dynamics, and thermodynamics. REAL-TIME SUPPORT Chat, phone and email. Consultancy, webinars, and training. COLLABORATION Join the community, benefit from public projects, and share know-how. FAST & EASY Get results faster on any device thanks to cloud technology. COST-EFFICIENT Start risk-free without an upfront investment. SECURE High security with government-approved Advanced Encryption Standard (AES).
  • 10. ELECTRONICSA E C ENERGY AUTOMOTIVE AEROSPACE HEALTHCARE MACHINERY MARINE CONSUMER GOODS VALVES & PUMPS
  • 11. Watch the workshop recording
  • 12. Energy Efficiency and Cooling Cost Reduction in Data Centers with CFD How to REDUCE THE COOLING COST of DATA CENTERS with CFD
  • 13. Energy Consumption ● 2000 - 2005: 90% increase ● 2005 - 2010: 40 % increase ● Current Trends: ○ Limit to 1.5 % increase ○ Save 620 Billion kWh The Importance of Energy Consumption is Rising [1] Source: U.S. Department of Energy, Lawrence Berkeley National Laboratory http://www.expansionsolutionsmagazine.com/industry_articles/view/12081/the_data_center_revolution____who_are_gordon_moore_and_robert_dennard__and_what_do_they_mean_to_me__
  • 14. Energy Distribution in a Data Center Image Source [1]: http://ieeexplore.ieee.org/document/7279063/ Image Source [2]: http://dptgroup.com/event/thermal-power-il/
  • 15. High Power Density Data Center Server Racks (4 KW Each) CRACs Return Outlet CRACs Supply Inlet Cold Aisle Containments Raised Floor Plenum Raised Floor Cold-Aisle Containment Layout
  • 16. High Power Density Data Center COLD AISLE COLD AISLE HOT AISLE C R A C C R A C C R A C HOT AISLE HOT AISLE C R A C Perforated Tiles (modeled using porous media) Raised Floor Cold-Aisle Containment Layout
  • 17. High Power Density Data Center Cross-section view of layout showing flow physics Raised Floor Cold-Aisle Containment Layout Front GrillServers Heat Source Fan Momentum Source Rear Grill Perforated Tiles
  • 18. Design Constraints & Parameters CONSTRAINTS ● 208 KW Total Space Load ● 140 m2 Data Center ● Server Intake Temperature PARAMETERS ● Supply Temperature ● Supply Flow Rate ● Rack Cooling Effectiveness (RCI) ● Cooling Cost Function
  • 19. Rack Cooling Index (RCI) – Measure of Cooling Effectiveness ASHRAE Standards – “The recommended equipment intake temperature range is 20-25°C and the allowable range is 15- 32°C.” (Reference: Herrlin, M. and Khankari, K. Methods for Optimizing Equipment Cooling Effectiveness and HVAC Cooling Costs in Telecom and Data Centers. ASHRAE Transactions, Volume 114, Part 1) “RCIHI is a measure of the equipment health at the high end of the temperature range. Over-temperature conditions exist when one or more equipment intake temperatures exceed the max recommended temperature.” “The RCILO is a complement to RCIHI especially when the supply condition is below the minimum recommended temperature.”
  • 20. Flow Parameter Variation for Cooling Index A total of 16 cases analyzed
  • 21. Watch the workshop recording
  • 22.
  • 23. Servers Intake Temperatures Row 1 Row 2 Row 3 Row 4
  • 24. Average Servers Intake Temperatures
  • 25. Servers Temperatures at Rack Midplane (Row 1 & Row 2)
  • 26. Servers Temperatures at Rack Midplane (Row 3 & Row 4)
  • 27. Velocity at 1m Height
  • 29. Velocity Contours at Grill Section
  • 30. Temperature Contours at Grill Section
  • 31. Pressure Drop at Perforated Plates & Grills
  • 32. Cost Function – A Trade-off between Supply Temperature & Supply Flow Rate Cost Function Definition: Energy costs for conditioning are associated with chiller and fan energy consumption. 1. Increase in supply air temperature is linearly proportional to higher chiller Coefficient of Performance (COP). 2. Increase in supply airflow rate demands more fan energy to circulate air between the air-handler and data center.
  • 33. Cost & Energy Savings RCI criteria: With both RCIHI and RCILO ≥ 95 and energy savings of 11% (at 21°C, 120 % supply configuration) is a true win-win situation in accordance with ASHRAE Standards.
  • 34. CAD IMPORT Upload your CAD model or import it from other cloud services into SimScale. SIMULATION SETUP All steps to define and run a simulation are done within SimScale. DESIGN DECISION Use the simulation insights to make better and faster design decisions. 1 2 3
  • 35. Read this blog article to learn more