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Experimental study of a burner with high temperature heat recovery system for TPV applications

机译:TPV应用的带有高温热回收系统的燃烧器的实验研究

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摘要

An experimental investigation to develop and test a burner and a heat recovery system for thermophoto-voltaic (TPV) applications is presented. Experimental data have been compared with theoretical calculations and considerations in the pre-design and design phases of the project to find the weakest point of the concept and to validate the expected performance. The TPV generator has been designed as a compact module in order to be used as a range extender in an electric car. The heat recovery system is the key element to increase the efficiency of the system. The heat recovery system presented in this paper is a rotary type regenerator that is very compact and has higher effectiveness in comparison with other types of regenerators with the same number of transfer units (NTU). The experimental data have been used to verify the numerical models used in the calculations for design of the regenerator matrix. A new version of the numerical model has been developed to take into account the variation of the thermal properties of the system with the temperature. Dimensions, weight, efficiency, emissions and high working temperatures have been the most important competitive constraints to observe for design of the system.
机译:本文介绍了开发和测试用于热光电(TPV)应用的燃烧器和热回收系统的实验研究。在项目的预设计和设计阶段,将实验数据与理论计算和考虑因素进行了比较,以找出概念的最薄弱之处并验证预期的性能。 TPV发电机被设计为紧凑型模块,以便用作电动汽车的增程器。热回收系统是提高系统效率的关键要素。本文介绍的热回收系统是一种旋转式蓄热器,与具有相同数量传输单元(NTU)的其他类型的蓄热器相比,它非常紧凑并且具有更高的效率。实验数据已用于验证用于蓄热器矩阵设计的数值模型。已经开发了新版本的数值模型,以考虑系统的热特性随温度的变化。尺寸,重量,效率,排放物和高工作温度一直是系统设计中要观察的最重要的竞争限制。

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