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Experimental investigation on heat recovery from diesel engine exhaust using finned shell and tube heat exchanger and thermal storage system

机译:翅片管壳式换热器及储热系统从柴油机尾气中回收热量的实验研究

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摘要

The exhaust gas from an internal combustion engine carries away about 30% of the heat of combustion. The energy available in the exit stream of many energy conversion devices goes as waste, if not utilized properly. The major technical constraint that prevents successful implementation of waste heat recovery is due to its intermittent and time mismatched demand and availability of energy. In the present work, a shell and finned tube heat exchanger integrated with an IC engine setup to extract heat from the exhaust gas and a thermal energy storage tank used to store the excess energy available is investigated in detail. A combined sensible and latent heat storage system is designed, fabricated and tested for thermal energy storage using cylindrical phase change material (PCM) capsules. The performance of the engine with and without heat exchanger is evaluated. It is found that nearly 10-15% of fuel power is stored as heat in the combined storage system, which is available at reasonably higher temperature for suitable application. The performance parameters pertaining to the heat exchanger and the storage tank such as amount of heat recovered, heat lost, charging rate, charging efficiency and percentage energy saved are evaluated and reported in this paper. ? 2010 Elsevier Ltd. All rights reserved.
机译:内燃机的废气带走了大约30%的燃烧热。如果没有正确利用,许多能量转换装置的出口流中可利用的能量会浪费掉。阻碍废热回收成功实施的主要技术限制是由于其间歇性和时间错配的需求以及能源的可用性。在目前的工作中,详细研究了与IC发动机装置集成在一起的壳管式换热器,以从废气中提取热量,以及用于存储多余能量的热能储罐。使用圆柱形相变材料(PCM)胶囊设计,制造和测试了组合式显热和潜热存储系统,以进行热能存储。评估带有和不带有热交换器的发动机的性能。发现将近10-15%的燃料动力以热量的形式存储在组合存储系统中,该温度可在较高的温度下使用以适合应用。评估并报告了与热交换器和储罐有关的性能参数,例如回收的热量,热量损失,装料速率,装料效率和节能百分比。 ? 2010 Elsevier Ltd.保留所有权利。

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