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Effect of variable heat input on the heat transfer characteristics in an Organic Rankine Cycle system

机译:可变热量输入对有机朗肯循环系统中传热特性的影响

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This paper analyzes the heat transfer characteristics of an ORC evaporator applied on a diesel engine using measured data from experimental work such as flue gas mass flow rate and flue gas temperature. A mathematical model was developed with regard to the preheater, boiler and the superheater zones of a counter flow evaporator. Each of these zones has been subdivided into a number of cells. The hot source of the ORC cycle was modeled. The study involves the variable heat input's dependence on the ORC system's heat transfer characteristics, with especial emphasis on the evaporator. The results show that the refrigerant's heat transfer coefficient has a higher value for a 100% load from the diesel engine, and decreases with the load decrease. Also, on the exhaust gas side, the heat transfer coefficient decreases with the decrease of the load. The refrigerant's heat transfer coefficient increased normally with the evaporator's tube length in the preheater zone, and then increases rapidly in the boiler zone, followed by a decrease in the superheater zone. The exhaust gases' heat transfer coefficient increased with the evaporator' tube length in all zones. The results were compared with result by other authors and were found to be in agreement.
机译:本文使用来自实验工作的实测数据(例如烟气质量流量和烟气温度)分析了应用于柴油发动机的ORC蒸发器的传热特性。针对逆流蒸发器的预热器,锅炉和过热器区域开发了数学模型。这些区域中的每个区域都细分为多个单元。对ORC循环的热源进行了建模。这项研究涉及可变热量输入对ORC系统传热特性的依赖性,特别是蒸发器。结果表明,对于来自柴油机的100%负载,制冷剂的传热系数具有较高的值,并且随着负载的减小而减小。另外,在排气侧,传热系数随着负荷的降低而降低。在预热器区域中,制冷剂的传热系数通常随着蒸发器管的长度而增加,然后在锅炉区域中迅速增加,随后在过热器区域中减小。在所有区域中,废气的传热系数都随着蒸发器管的长度而增加。将结果与其他作者的结果进行比较,发现结果一致。

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