Design and Testing of a 275 Bar 700 Degree Celsius Expander for an Integrally Geared Supercritical CO2 Compander

Jason C. Wilkes, Kyle Robinson, Karl D. Wygant, Rob Pelton, Jonathan Bygrave
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Abstract

An integrally-geared (IG) compressor-expander (compander) for use in a nominal 10 MW-scale concentrated solar power (CSP) supercritical carbon dioxide (sCO2) plant application was designed, manufactured, and tested. The integrally-geared compander (IGC) developed for this application comprises multiple pinion shafts interacting through a single bull gear to create a compact package and utilize a low-cost, low-speed driver. The present work will detail the design of the high-pressure high-temperature expander casing on an integrally geared frame, and illustrate how the project successfully mitigated the risk of fatigue and creep while allowing for rapid thermal transients in the design. Furthermore, test data from the test campaign will be presented supporting the analysis. Test results also show temperature profiles during operation exceeding 720° Celsius.
整齿轮式超临界CO2压缩机用275 Bar 700℃膨胀机的设计与试验
设计、制造并测试了用于标称10兆瓦规模聚光太阳能(CSP)超临界二氧化碳(sCO2)电厂的集成齿轮(IG)压缩机-膨胀器(compander)。为该应用开发的整体式齿轮压缩机(IGC)由多个小齿轮轴组成,通过单个牛轮相互作用,形成紧凑的封装,并利用低成本、低速的驱动器。目前的工作将详细介绍在整体齿轮框架上的高压高温膨胀机套管的设计,并说明该项目如何成功地减轻了疲劳和蠕变的风险,同时允许设计中的快速热瞬变。此外,将提供来自测试活动的测试数据来支持分析。测试结果还显示操作期间的温度分布超过720摄氏度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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