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Preliminary designs for 25 kWe advanced Stirling conversion systems for dish electric applications

机译:25 kWe先进斯特林转换系统的初步设计,用于碟式电气应用

摘要

Under the Department of Energy's (DOE) Solar Thermal Technology Program, Sandia National Laboratories is evaluating heat engines for terrestrial Solar Distributed Heat Receivers. The Stirling engine has been identified by Sandia as one of the most promising engines for terrestrial applications. The Stirling engine also has the potential to meet DOE's performance and cost goals. The NASA Lewis Research Center is conducting Stirling engine technology development activities directed toward a dynamic power source for space applications. Space power systems requirements include high reliability, very long life, low vibration and high efficiency. The free-piston Stirling engine has the potential for future high power space conversion systems, either nuclear or solar powered. Although both applications appear to be quite different, their requirements complement each other. Preliminary designs feature a free-piston Stirling engine, a liquid metal heat transport system, and a means to provide nominally 25 kW electric power to a utility grid while meeting DOE's performance and long term cost goals. The Cummins design incorporates a linear alternator to provide the electrical output, while the STC design generates electrical power indirectly through a hydraulic pump/motor coupled to an induction generator. Both designs for the ASCS's will use technology which can reasonably be expected to be available in the early 1990's
机译:根据能源部(DOE)的太阳能热技术计划,桑迪亚国家实验室(Sandia National Laboratories)正在评估用于地面太阳能分布式受热器的热机。桑迪亚(Standia)已将斯特林(Stirling)发动机确定为陆地应用最有前途的发动机之一。斯特林发动机还具有实现能源部性能和成本目标的潜力。美国国家航空航天局刘易斯研究中心正在开展斯特林发动机技术开发活动,该活动的目标是为太空应用提供动力源。太空动力系统的要求包括高可靠性,超长寿命,低振动和高效率。自由活塞斯特林发动机具有未来用于核动力或太阳能动力大功率空间转换系统的潜力。尽管两个应用程序看起来完全不同,但是它们的需求是相辅相成的。初步设计包括一个自由活塞斯特林发动机,一种液态金属传热系统,以及一种在满足能源部的性能和长期成本目标的同时向公用电网提供标称25 kW电力的方法。康明斯设计结合了线性交流发电机以提供电力输出,而STC设计则通过与感应发电机相连的液压泵/电动机间接产生电力。两种ASCS的设计都将使用可以合理预期在1990年代初期使用的技术。

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