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A coupled computational model of nonlinear thermoacoustics of standing wave heat engines

机译:驻波热机的非线性热声耦合计算模型

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摘要

Thermoacoustic engines have been recently regarded and developed as reliable, long-life, and environment-friendly engines by using experiments or mathematical models. Thermoacoustic mathematical models can be divided into two categories of linear and nonlinear. This paper introduces a coupled 1D-2D computational nonlinear model of heat and flow fields inside loaded standing-wave thermoacoustic engines. On the one hand, the computational cost of the present model is much lower than that of full CFD models whose computational domain contains the entire engine. On the other hand, it does not have the limitation of uniform global cross section as the simplified numerical models do. In addition to the coupled nonlinear model, another simulation based on linear thermoacoustic theory (LTA) has been performed. The model has been well validated using previous experimental data and compared with the results of LTA. Subsequently, the temperature and pressure distributions, the mean acoustic power, and heat transfer and volume flow rate distributions have been presented and discussed. This model is extendable to many other systems whose some parts have negligible multidimensional effects and the other parts have considerable ones.
机译:通过使用实验或数学模型,热声发动机最近被认为并发展为可靠,长寿命且环境友好的发动机。热声数学模型可以分为线性和非线性两类。本文介绍了负载的驻波热声发动机内部热流场的一维至二维耦合非线性计算模型。一方面,本模型的计算成本远低于其计算域包含整个引擎的完整CFD模型的计算成本。另一方面,它不像简化的数值模型那样具有均匀的整体横截面的限制。除了耦合的非线性模型外,还基于线性热声理论(LTA)进行了另一次仿真。该模型已使用先前的实验数据进行了充分验证,并与LTA的结果进行了比较。随后,提出并讨论了温度和压力分布,平均声功率,传热和体积流量分布。该模型可扩展到许多其他系统,这些系统的某些部分的多维影响可忽略不计,而其他部分的影响则相当大。

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