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Pulsating Heat Pipes for Hybrid Propulsion systems

Project description

Better heat management is on the horizon for new hybrid aircraft propulsion systems

Mechanical and electrical devices generate heat. Because the heat can impair the functioning of the systems over time, most systems have thermal management built in. Pulsating heat pipes (PHP) are an emerging technology with many advantages. They can rapidly transfer heat between source and sink, accommodate materials, shapes and sizes not accessible with conventional heat pipes, and they are very stable and low-weight. However, in-depth understanding of their functioning to support rational design is limited. The EU-funded PHP2 project is developing a detailed simulation code to support new PHP designs. A prototype will enable data collection and model refinement leading to a simplified model for widespread application.

Objective

As part of H2020 program, Clean Sky 2, the present topic is associated within WP1.6 “Demonstration of Radical Aircraft Configurations” and more specifically subWP1.6.2 “Hybrid Power Bench Development and Testing”. It aims at using Pulsating Heat Pipes (PHP) to exchange large amounts of energy for the cooling of different elements.
The solution proposed here is to develop a very detailed 1D simulation code for the development of new PHP designs (task number 1), fabricate them with innovative manufacturing techniques and extensively test them experimentally (task number 2) as a “proof-of-concept” of this new disruptive cooling technology. Experimental data is used to validate the 1D code and develop a reduced model (task number 3) that can be run in a short time (< 1s) to choose/select the most appropriate one for the application at hand. This approach will make PHP commercially viable by cutting the time for their choice, sale and cost whilst eliminating all (or most) of the final testing by the end client.

Technical challenges are numerous due to an incomplete understanding of PHP in the literature: the lack of good design theories and of viable, comprehensive simulation tools to describe the thermal/hydraulic performance of a PHP. Furthermore, PHP are a new disruptive cooling technology that need to gain their acceptance into engineering practice…hence the partners need to carefully and thoroughly develop a very convincing case for their acceptance.

The present proposal, called P(HP)2 project, offers cooperation between JJ Cooling Innovation and Provides, leaders in modelling, design and fabrication of high-performance micro-two-phase cooling systems, and Altran, world-leader in Engineering Solutions and outsourced R&D, through their Expertise Centres “Fluids and Thermal Engineering” and “Scientific Computing Methods and Tools”.

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Topic(s)

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RIA - Research and Innovation action

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Call for proposal

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(opens in new window) H2020-CS2-CFP07-2017-02

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Coordinator

ALTRAN TECHNOLOGY & ENGINEERING CENTER
Net EU contribution

Net EU financial contribution. The sum of money that the participant receives, deducted by the EU contribution to its linked third party. It considers the distribution of the EU financial contribution between direct beneficiaries of the project and other types of participants, like third-party participants.

€ 273 634,00
Address
4 AVENUE DIDIER DAURAT
31700 Blagnac
France

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Region
Occitanie Midi-Pyrénées Haute-Garonne
Activity type
Private for-profit entities (excluding Higher or Secondary Education Establishments)
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Total cost

The total costs incurred by this organisation to participate in the project, including direct and indirect costs. This amount is a subset of the overall project budget.

€ 273 634,00

Participants (4)

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