首页> 外文会议>ASME annual dynamic systems and control conference >ASSESSMENT OF THE VEHICLE LEVEL IMPACT FOR A SOFC INTEGRATED WITH THE POWER AND THERMAL MANAGEMENT SYSTEM OF AN AIR VEHICLE
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ASSESSMENT OF THE VEHICLE LEVEL IMPACT FOR A SOFC INTEGRATED WITH THE POWER AND THERMAL MANAGEMENT SYSTEM OF AN AIR VEHICLE

机译:集成有空气动力和热管理系统的SOFC的车辆碰撞等级评估

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The demand for electrical power onboard aerospace vehicles continues to grow at an accelerating pace. Accompanied with the electrical power is the increase in thermal demands for removing the low quality waste heat from the electrical components and advanced electronics. The increase in thermal demands onboard an aircraft dramatically impact the capability and performance of the air vehicle due to the low coefficients of performance (COP) of aerospace refrigeration systems. The low COP means the system requires a significant amount of work to lift the thermal waste from the aircraft subsystems. This leads to significant demands on the propulsion system and the power and thermal management systems creating a cycle of diminishing returns, which leads to inefficiency and limited capability of future air vehicles. Alternative components and configurations have the potential to increase the efficiency of the power and thermal management system reducing the overall negative impact on air vehicles' efficiency and capabilities. A solid oxide fuel cell (SOFC) integrated with the power and thermal management system has been investigated. The vehicle level impact of this novel configuration has been assessed along with the dynamic behavior of the SOFC when integrated into these systems. The results provide insight into the advantages and disadvantages of the proposed system.
机译:航空航天器对电力的需求继续以加速的步伐增长。与电力相伴的是,从电气部件和先进的电子设备中去除低质量废热的热需求不断增加。由于航空制冷系统的性能系数(COP)低,飞机上热量需求的增加极大地影响了飞行器的性能和性能。低COP意味着系统需要大量工作才能从飞机子系统中清除热量。这导致对推进系统以及功率和热管理系统的巨大需求,从而形成了收益递减的循环,这导致了未来飞机的效率低下和能力受限。替代组件和配置有可能提高电源和热管理系统的效率,从而减少对飞行器效率和功能的总体负面影响。已经研究了与电源和热管理系统集成的固体氧化物燃料电池(SOFC)。当将SOFC集成到这些系统中时,已经评估了这种新颖配置对车辆水平的影响以及SOFC的动态行为。结果提供了对提出的系统的优点和缺点的见解。

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