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A Functional Thermochemical Energy Storage System for Mobile Applications: Design and Performance Analysis

机译:用于移动应用的功能性热化学能量存储系统:设计和性能分析

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Thermochemical energy storage (TCES), as a long-term and lossless energy storage principle, provides a contribution for the reduction of greenhouse emissions of mobile applications, such as passenger vehicles with an internal combustion engine. A prototype of a TCES system, based on reversible sorption reactions of LiBr composite and methanol has been designed at Vienna University of Technology. In this paper, the selection of reactive and inert carrier materials as well as the design of heat exchangers (reactor vessel and evapo-condenser) was reviewed and the cycle stability under real operating conditions was investigated. The performance of the developed system strongly depends on the environmental temperatures, to which the reactor vessel and evapo-condenser are exposed during the phases of thermal conversion. For an integration of the system into mobile applications, the functionality of the designed prototype was proved in numerous conducted cycles whereby no adverse reactions were observed.
机译:热化学能存储(TCES)作为一种长期且无损的能量存储原理,为减少移动应用(例如带有内燃机的乘用车)的温室气体排放做出了贡献。维也纳工业大学已经设计了基于LiBr复合材料和甲醇可逆吸附反应的TCES系统原型。本文综述了反应性和惰性载体材料的选择以及热交换器(反应器容器和蒸发冷凝器)的设计,并研究了实际运行条件下的循环稳定性。所开发系统的性能在很大程度上取决于环境温度,在热转化阶段,反应堆容器和蒸发冷凝器会暴露于该环境温度下。为了将系统集成到移动应用程序中,已设计的原型的功能在众多的传导周期中得到了证明,因此没有观察到不良反应。

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