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Optimization design of plate heat exchangers (PHE) for geothermal district heating systems

机译:地热集中供热系统的板式换热器(PHE)的优化设计

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Plate heat exchangers (PHEs) are an important part of a geothermal heating system. If titanium is the material used for the PHE, then the latter will cost from about 25-30% of the total cost of the heating system. This paper discusses the integrated optimal design of the materials, placement, size and flow-rate of a plate heat exchanger. With an input of data on the application technology, and economic and environmental parameters, a computer can be used to design the optimal placement, size and flow-rate of the PHEs. With this type of calculation, the computer can provide values for PHE size, flow-rate, flow paths and flow channels, with a minimum heat transfer area for a basic heat requirement. The paper also illustrates how the choice of PHE size, and the placement of the flow paths and flow channels influences the heat transfer area, producing a different design from that of a practical application (Tianjin, China). By optimizing its design, the PHEs will effectively be smaller than the real example given, with a consequent reduction in cost.
机译:板式换热器(PHE)是地热加热系统的重要组成部分。如果钛是用于PHE的材料,则后者的成本约为加热系统总成本的25-30%。本文讨论了板式换热器的材料,位置,尺寸和流量的综合优化设计。输入有关应用技术,经济和环境参数的数据后,可以使用计算机来设计PHE的最佳放置,尺寸和流量。通过这种类型的计算,计算机可以提供PHE大小,流速,流动路径和流动通道的值,并为基本热量需求提供最小的传热面积。本文还说明了PHE尺寸的选择以及流路和流道的位置如何影响传热面积,从而产生了与实际应用不同的设计(中国天津)。通过优化其设计,PHE将有效地小于给出的实际示例,从而降低了成本。

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