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Justifying performance of thermo-acoustic Stirling engines based on a novel lumped mechanical model

机译:基于新型集体机械模型的热声斯特林发动机的性能

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摘要

This paper presents a novel lumped mechanical model incorporating modern control theory to investigate performance and startup condition of thermo-acoustic Stirling engines (TASEs). Although different well-defined mathematical approaches have been devised to design free piston Stirling engines (FPSEs), however, such important analytical methods cannot be directly applied to the TASEs as they are complex fluid systems. Accordingly, a purely mechanical analogous model of TASEs is first presented and then, the similarity of TASEs to FPSEs is revealed. Additionally, manipulating the extracted dynamic equations of the new mechanical analogous model shows that the TASEs are physical regulators from the viewpoint of modern control theory. Indeed, the mentioned idea is a significant outcome of this work and thus, the powerful design techniques of control engineering can be effectively used to simplify the design procedure of the TASEs. Next, the influence of design parameters such as resonator length, inertance length, pulse tube length, hot and cold gas temperatures, mean pressure, connecting tube, and compliance on the real and imaginary parts of the dominant poles of the physical closed-loop system is investigated based on the control principles. Besides, a quality index is introduced to evaluate resonance phenomenon in the TASEs. Finally, validity of the proposed mathematical model incorporating the control-based design technique is affirmed using practical data of three prototype engines.(c) 2021 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种新的集体机械模型,包括现代控制理论,了解热声斯特林发动机(馅饼)的性能和启动条件。尽管已经设计了不同明确的数学方法来设计自由的活塞斯特林发动机(FPSE),但是,这种重要的分析方法不能直接施加到馅饼上,因为它们是复杂的流体系统。因此,首先呈现纯机械类似的馅饼模型,然后揭示了与FPS的相似性。另外,操纵新机械类似模型的提取的动态方程表明,从现代控制理论的观点来看,馅饼是物理调节器。实际上,提到的想法是这项工作的重要结果,因此,可以有效地利用控制工程的强大设计技术来简化延期的设计过程。接下来,设计参数的影响,如谐振器长度,惯性长度,脉冲管长,热和冷气体温度,平均压力,连接管和符合物理闭环系统的主要和虚部的实部和虚部根据控制原则调查。此外,引入了质量指标来评估馅饼中的共振现象。最后,使用三种原型发动机的实际数据肯定了包含基于控制的设计技术的所提出的数学模型的有效性。(c)2021 elestvier有限公司保留所有权利。

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