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Design and Fabrication of a 5-kWe Free-Piston Stirling Power Conversion System

机译:5 kWe自由活塞斯特林功率转换系统的设计与制造

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摘要

Progress in the design and fabrication of a 5-kWe free-piston Stirling power conversion system is described. A scaled-down version of the successful 12.5-kWe Component Test Power Converter (CTPC) developed under NAS3-25463, this single cylinder prototype incorporates cost effective and readily available materials (steel versus beryllium) and components (a commercial linear alternator). The design consists of a displacer suspended on internally pumped gas bearings and a power piston/alternator supported on flexures. Non-contacting clearance seals are used between internal volumes. Heat to and from the prototype is supplied via pumped liquid loops passing through shell and tube heat exchangers. The control system incorporates several novel ideas such as a pulse start capability and a piston stroke set point control strategy that provides the ability to throttle the engine to match the required output power. It also ensures stable response to various disturbances such as electrical load variations while providing useful data regarding the position of both power piston and displacer. All design and analysis activities are complete and fabrication is underway. Prototype test is planned for summer 2008 at Foster-Miller to characterize the dynamics and steady-state operation of the prototype and determine maximum power output and system efficiency. Further tests will then be performed at Auburn University to determine start-up and shutdown characteristics and assess transient response to temperature and load variations.
机译:描述了5-kWe自由活塞斯特林功率转换系统的设计和制造进展。该单缸原型机是在NAS3-25463下成功开发的成功的12.5-kWe组件测试功率转换器(CTPC)的缩小版,结合了具有成本效益且易于获得的材料(钢与铍)和组件(商用线性交流发电机)。该设计包括一个悬挂在内部抽气轴承上的置换器和一个支撑在挠性件上的动力活塞/交流发电机。内部容积之间使用非接触式间隙密封。穿过原型泵的热量通过泵送的液体回路通过壳管式热交换器提供。该控制系统结合了一些新颖的想法,例如脉冲启动能力和活塞冲程设定点控制策略,该策略提供了节流发动机以匹配所需输出功率的能力。它还可提供对各种干扰(例如电负载变化)的稳定响应,同时提供有关动力活塞和置换器位置的有用数据。所有设计和分析活动均已完成,并且制造正在进行中。计划在2008年夏季在Foster-Miller进行原型测试,以表征原型的动力学特性和稳态操作,并确定最大功率输出和系统效率。然后,将在奥本大学进行进一步的测试,以确定启动和关闭特性,并评估对温度和负载变化的瞬态响应。

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