Hydrogen has the potential to become a key energy vector for a decarbonised future. However making it a reality entails various challenges. tedHy is a support decision tool developed by PersEE for smart hydrogen project planning.
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tedHy your h2 planning partner
1. Design your Hydrogen Project*
with tedHy, your smart H2 planning partner
By Pers-EE
*A hydrogen project includes the set of hydrogen infrastructure and the flow of energy from producer to consumer
2. Planning H2 projects implies multiple challenges
As a consequence people struggle to define a viable Hydrogen project in line with local reality and energy markets
2
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?
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Which primary energy source shall we use?
Which technologies can we consider?
How much will the project cost?
What is the payback to expect?
Should we mobilise public financing?
What is the benefit for the environment?
Which level of energy efficiency should we expect?
What is the impact on local activity?
How long should the first project stage last?
When should we start?
Which partners must we mobilise?
How attractive is hydrogen for us compared to alternative energy vectors?
?
Pers-EE with its tool tedHyTM helps all hydrogen stakeholders plan sustainable deployments
within an all-round perspective, addressing such questions as below:
4. , a multi-faceted H2-project planning tool
A scenario based approach to hydrogen-energy complexity
4
Over the last 3 years, tedHy has become a reference tool
for Cities&Regions to plan their hydrogen pathway
by simulating, assessing and comparing the multiple alternatives available.
Configurable
tedHy enables easy
scenario generation based
on multiple parameters
(technical, macro economic
and environmental), to
grasp the dynamics behind
hydrogen deployments.
Multi-stakeholder
tedHy offers a tailored
solution to all stakeholders
involved in a hydrogen
project: public authorities,
end users, operators,
investors,…
“Producter to
Consumer”
tedHy’s scope encompasses
primary energy sources as well
as end user’s consumption
patterns.
tedHy addresses the chicken
and egg dilemma.
User-friendly
tedHy delivers pedagogic
results based on advanced
data management and
computational technics
integrated in didactic web
2.0 user interfaces
5. 5
Step 1
Step 2
Step 3
Step 4
Goal
a four-step methodology
to plan a hydrogen project and take the most of hydrogen potential
MAP
SIMULATE
ASSESS
COMPARE
DEFINE
6. Add Energy Source
6
Map the local situation by acquiring data about regulations, energy sources, uses and financial resources
Stationary
Uses
Mobility
Uses
Local
Regulations
Primary Energy
Sources
Financial
resources
€
- Step 1: Map
Add Mobility Use
7. 7
Simulate H2 deployments scenario leveraging in-house catalogue of products and advanced data management capabilities
Prospective Products
(2030)
Future Products
(2020)
Existing Products
(TRL >6)
- Step 2: Simulate
CATALOGUE OF
H2 AND FUEL CELL
PRODUCTS
Big data Operation
Research
Stochastic
optimisation
Data
management
ADVANCED DATA
MANAGEMENT AND
PROCESSING
Hydrogen Deployment Scenario
8. 8
Wha
t
Supply chain design
Combination of individual
products: Technology / Size /
Quantity
Business Plan
Level of investment required, cost
and cost structure, revenues,
payback.
Milestones
Adoption rate of hydrogen,
Evolution of the supply chain
Environmental
review
Energy consumption,
Emissions
How
much
When
Why
Assess each scenario from different perspectives (economic, operational, environmental)
- Step 3: Assess
9. 9
Compare the different scenarios from an economic, operational and environmental perspective
- Step 4: Compare
SCENARIO COMPARISON
10. - Multiple benefits
both for all hydrogen stakeholders
10
tedHy is the planning partner for all hydrogen
stakeholders who aim to define a meaningful and
structured hydrogen project and take the most of
hydrogen potential.
tedHy is a tool and a methodology:
IN A NUTSHELL,
On-target
securing results through a robust process
Adapted to all levels of H2 awareness
as each level accesses a set of parameterization options
Cost efficient
leveraging the knowledge build-up embedded in the
tool
All round
offering a more exhaustive understanding of hydrogen
systems
13. Pers-EE drives smart decision-making in Hydrogen deployments
13
Initial diagnosis
to assess the opportunity
to locally introduce
hydrogen
Pathway
conception
to design the blueprint of
the hydrogen project
Supply chain
engineering
to produce the supply chain
design (P&ID)
Infrastructure
monitoring
to perform real time supervision
& optimisation (SCADA)
Cross-cutting
Independence
Digital mastery
Business expertise
Founded in 2013, Pers-EE is a startup which
combines deep hydrogen knowledge together with
digital mastery; it positions itself as the operational
decision specialist for hydrogen projects and
infrastructure.
Leveraging a unique mathematical representation of
the hydrogen economy and comprehensive data
bases, the company delivers innovative digital
solutions targeted at every step of a hydrogen
project.
Positioning
From initial planning to real time operations
TASK 38 – SubTask D leader