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Effect of cooling system design on the performance of the recompression CO_2 cycle for concentrated solar power application

机译:冷却系统设计对集中太阳能应用再现CO_2循环性能的影响

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The thermal performance of a supercritical CO2 (sCO(2)) recompression cycle is expressively influenced by main compressor inlet temperature. Design of the cooling system is imperative since the compressor inlet temperature substantially influence the system performance. Due to nonlinear variation of both thermal and transport properties of the CO2 under critical condition, the cooling tower design and selection for the sCO2 cycle power plant is quite different from the power plants with steam cycle. The present work comprehensively investigates the effect of cooling system design on the optimal cycle performance under different operating condition. An iterative section method is applied while designing and optimizing the air-cooled heat exchanger bundles inside the tower. Prior to the design of natural draft dry cooling tower (NDDCT), an optimal operating condition is rectified at which the cycle efficiency is maximal. The tower performance is investigated by demonstrating unit height heat rejection and average heat rejection by each heat exchanger bundle. A detailed economic analysis of NDDCT is performed which takes account of capital cost, maintenance cost, annual cost, and specific investment cost. The thermo-economic assessment of the NDDCT is conducted by the influence of sCO(2) inlet temperature inside the tower and variation of ambient air. (C) 2019 Elsevier Ltd. All rights reserved.
机译:超临界CO2的热性能(SCO(2))重新压缩循环被主压缩机入口温度表达地影响。冷却系统的设计是必要的,因为压缩机入口温度基本上影响了系统性能。由于CO2在临界条件下的热量和运输性能的非线性变化,SCO2循环发电厂的冷却塔设计和选择与蒸汽循环的发电厂完全不同。本工作全面调查了在不同操作条件下最佳循环性能下的冷却系统设计的影响。在设计和优化塔内的风冷热交换器束的同时施加迭代部分方法。在设计自然吹口干燥冷却塔(NDDCT)之前,整流了最佳操作条件,循环效率最大。通过说明每个热交换器束的单元高度热抑制和平均散热来研究塔性能。对NDDCT进行了详细的经济分析,考虑了资本成本,维护成本,年度成本和特定投资成本。 NDDCT的热经济评估因塔内的SCO(2)入口温度的影响和环境空气的变异而进行。 (c)2019 Elsevier Ltd.保留所有权利。

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