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Application of metal foams in air-cooled condensers for geothermal power plants: An optimization study

机译:金属泡沫在地热发电厂空冷冷凝器中的应用:优化研究

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Optimized design of metal foam heat exchangers, as replacements for finned-tubes in air-cooled condensers of a geothermal power plant, is presented here. Two different optimization techniques, based on first and second law (of thermodynamics) are reported. While the former aims at the highest heat transfer rate with as low pressure drop as possible, the latter minimizes the generated entropy in the thermodynamic system. Interestingly, the two methods lead to the same optimal design. The new design has been compared to the conventional air-cooled condenser designed and optimized by using the commercially available software ASPEN. It is shown that while the heat transfer rate increases significantly (by an order of magnitude) compared to the finned-tube for the same main flow obstruction height, the pressure drop increase is within an acceptable range. Further comparison between the two systems are carried out making use of Mahjoob and Vafai's performance factor developed specifically for metal foam heat exchangers.
机译:本文介绍了金属泡沫热交换器的优化设计,以代替地热发电厂的风冷冷凝器中的翅片管。报告了基于(热力学)第一定律和第二定律的两种不同的优化技术。前者的目标是在尽可能低的压降下实现最高的传热速率,而后者则使热力学系统中产生的熵最小化。有趣的是,这两种方法导致相同的最佳设计。该新设计已与使用商用软件ASPEN设计和优化的传统风冷冷凝器进行了比较。结果表明,在相同的主流阻塞高度下,虽然与翅片管相比传热速率显着增加(一个数量级),但压降的增加在可接受的范围内。利用专门为金属泡沫热交换器开发的Mahjoob和Vafai的性能因子,对这两个系统进行了进一步的比较。

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