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Analytical solutions of heat and mass transfer process in combined gas-water heat exchanger applied for waste heat recovery

机译:用于废热回收的储气热交换器中热输出过程的分析解

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摘要

The main task of a combined gas-water heat exchanger (CGHE) in a waste heat recovery system is to transfer heat from flue gas to boiler backwater. A spray tower and an indirect contact heat exchanger are key components of the CGHE. Analytical solutions of the heat and mass transfer process for the overall system are presented in this paper. Analytical solutions of the air and water parameters agree well with the results gained from both experiment results and numerical solutions. The result developed from the analytical method has been used for optimizing the thermal performance of the CGHE. It's indicated the heat recovery efficiency is determined by CGHE structure characteristics and spray water flow rate, while inlet states of the flue gas and the backwater have limited effect. In a specified system, there is an optimal flow rate of the spray water corresponding to the minimum thermal resistance of the CGHE. This is mainly because the increase in the spray water flow rate is beneficial to the contact area in the spray tower, but adverse to the matching performance between the fluids. When the CGHE is optimized, the maximum heat recovery efficiency and the maximum heat transfer rate are obtained.
机译:废热回收系统中的组合气流式热交换器(CGHE)的主要任务是将来自烟气的热量转移到锅炉反水。喷雾塔和间接接触式热交换器是CGHE的关键部件。本文提出了整个系统的热量和传质过程的分析解。空气和水参数的分析解决方案对从实验结果和数值解决方案中获得的结果吻合。从分析方法中产生的结果已被用于优化CGHE的热性能。它表明了热回收效率由CGHE结构特性和喷水流速确定,而烟道气的入口状态和后水的效果有限。在指定的系统中,对应于CGHE的最小热阻的喷射水的最佳流速。这主要是因为喷射水流速的增加有利于喷雾塔中的接触面积,但不对流体之间的匹配性能不利。当优化CGHE时,获得最大热回收效率和最大传热速率。

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