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Comparison of shell-and-tube with plate heat exchangers for the use in low-temperature organic Rankine cycles

机译:板式热交换器与管壳式热交换器在低温有机朗肯循环中的比较

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摘要

Organic Rankine cycles (ORCs) can be used for electricity production from low-temperature heat sources. These ORCs are often designed based on experience, but this experience will not always lead to the most optimal configuration. The ultimate goal is to design ORCs by performing a system optimization. In such an optimization, the configuration of the components and the cycle parameters (temperatures, pressures, mass flow rate) are optimized together to obtain the optimal configuration of power plant and components. In this paper, the configuration of plate heat exchangers or shell-and-tube heat exchangers is optimized together with the cycle configuration. In this way every heat exchanger has the optimum allocation of heat exchanger surface, pressure drop and pinch-point-temperature difference for the given boundary conditions. ORCs with plate heat exchangers perform mostly better than ORCs with shell-and-tube heat exchangers, but one disadvantage of plate heat exchangers is that the geometry of both sides is the same, which can result in an inefficient heat exchanger. It is also shown that especially the cooling-fluid inlet temperature and mass flow have a strong influence on the performance of the power plant.
机译:有机朗肯循环(ORC)可用于低温热源的发电。这些ORC通常是根据经验来设计的,但是这种经验并不会总是导致最佳的配置。最终目标是通过执行系统优化来设计ORC。在这种优化中,将组件的配置和循环参数(温度,压力,质量流率)一起优化,以获得电厂和组件的最佳配置。本文对板式换热器或管壳式换热器的配置以及循环配置进行了优化。这样,对于给定的边界条件,每个热交换器都具有最佳的热交换器表面分配,压降和夹点温度差。带板式换热器的ORC的性能比带管壳式换热器的ORC更好,但是板式换热器的一个缺点是两边的几何形状相同,这会导致热交换器效率低下。还显示出,特别是冷却流体入口温度和质量流量对发电厂的性能有很大的影响。

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