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An energy-efficient air-conditioning system for hydrogen driven cars
Authors:Marc Linder  Rudi Kulenovic
Affiliation:a Institute of Technical Thermodynamics, German Aerospace Center - DLR e.V., Pfaffenwaldring 38-40, 70569 Stuttgart, Germany
b Institute of Nuclear Technology and Energy Systems, University of Stuttgart, Pfaffenwaldring 31, 70569 Stuttgart, Germany
Abstract:In this paper a new operation principle of an air-conditioning system for hydrogen driven cars is proposed and experimental results of a laboratory prototype are presented. The system is able to utilize the potential energy of the compressed hydrogen gas as main driving energy to generate a cooling effect usable for e.g. air-conditioning. Therefore, it is able to partially reuse the compression energy originally spent in order to increase the energy density of hydrogen but is so far wasted onboard. The underlying principle of the process is based on a chemical reaction of a metal hydride (Ti0.99Zr0.01V0.43Fe0.09Cr0.05Mn1.5) with hydrogen at different pressures and corresponding equilibrium temperatures. The laboratory prototype consists of two alternating capillary tube bundle reactors (together around 5 kg and 1.5 l) and is able to generate a quasi-continuous cooling effect at 13 °C in the order of 900 W.
Keywords:Metal hydride   Cooling system   Air-conditioning   Compressed hydrogen   Sorption system
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