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EVALUATION OF ALTERNATIVE DESIGNS FOR A HIGH TEMPERATURE PARTICLE-TO-SCO2 HEAT EXCHANGER

机译:高温颗粒-SCO2换热器替代设计的评估

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This paper presents an evaluation of alternative particle heat-exchanger designs, including moving packed-bed and fluidized-bed designs, for high-temperature heating of a solar-driven supercritical CO2 (sCO2) Brayton power cycle. The design requirements for high pressure (≥ 20 MPa) and high temperature (≥ 700 °C) operation associated with sCO2 posed several challenges requiring high-strength materials for piping and/or diffusion bonding for plates. Designs from several vendors for a 100 kW-thermal particle-to-sCO2 heat exchanger were evaluated as part of this project. Cost, heat-transfer coefficient, structural reliability, manufacturability, parasitics and heat losses, scalability, compatibility, erosion and corrosion, transient operation, and inspection ease were considered in the evaluation. An analytical hierarchy process was used to weight and compare the criteria for the different design options. The fluidized-bed design fared the best on heat transfer coefficient, structural reliability, scalability and inspection ease, while the moving packed-bed designs fared the best on cost, parasitics and heat losses, manufacturability, compatibility, erosion and corrosion, and transient operation. A 100 kW_t shell-and-plate design was ultimately selected for construction and integration with Sandia's falling particle receiver system.
机译:本文提出了一种替代性粒子热交换器设计的评估方案,包括移动填充床和流化床设计,用于对太阳能驱动的超临界CO2(sCO2)布雷顿功率循环进行高温加热。与sCO2相关的高压(≥20 MPa)和高温(≥700°C)操作的设计要求带来了一些挑战,要求使用高强度材料进行管道铺设和/或板的扩散粘结。该项目评估了几家供应商设计的100 kW热粒子-sCO2换热器的设计。评估中考虑了成本,传热系数,结构可靠性,可制造性,寄生物和热损失,可扩展性,相容性,腐蚀和腐蚀,瞬态操作以及易于检查。使用层次分析法对不同设计选项的标准进行加权和比较。流化床设计在传热系数,结构可靠性,可扩展性和易于检查方面表现最佳,而移动填充床设计在成本,寄生物和热量损失,可制造性,相容性,腐蚀和腐蚀以及瞬态运行方面表现最佳。最终选择了100 kW_t的板壳式设计进行构造,并与Sandia的下落颗粒接收器系统集成。

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