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Low Mach number analysis of idealized thermoacoustic engines with numerical solution

机译:用数值解法对理想化热声发动机进行低马赫数分析

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摘要

A model of an idealized thermoacoustic engine is formulated, coupling nonlinear flow and heat exchange in the heat exchangers and stack with a simple linear acoustic model of the resonator and load. Correct coupling results in an asymptotically consistent global model, in the small Mach number approximation. A well-resolved numerical solution is obtained for two-dimensional heat exchangers and stack. The model assumes that the heat exchangers and stack are shorter than the overall length by a factor of the order of a representative Mach number. The model is well-suited for simulation of the entire startup process, whereby as a result of some excitation, an initially specified temperature profile in the stack evolves toward a near-steady profile, eventually reaching stationary operation. A validation analysis is presented, together with results showing the early amplitude growth and approach of a stationary regime. Two types of initial excitation are used: Random noise and a small periodic wave. The set of assumptions made leads to a heat-exchanger section that acts as a source of volume but is transparent to pressure and to a local heat-exchanger model characterized by a dynamically incompressible flow to which a locally spatially uniform acoustic pressure fluctuation is superimposed.
机译:建立了理想化热声引擎的模型,将热交换器和烟囱中的非线性流动和热交换与谐振器和负载的简单线性声学模型耦合在一起。正确的耦合会产生一个渐近一致的整体模型,其马赫数小。对于二维换热器和烟囱,可以获得很好的数值解。该模型假设换热器和烟囱比总长度短约一个代表马赫数的系数。该模型非常适合于整个启动过程的仿真,因此,由于某种激励,烟囱中最初指定的温度曲线向接近稳定的方向发展,最终达到稳定运行。提出了一个验证分析,以及结果表明了早期振幅的增长和静止状态的接近。使用两种类型的初始激励:随机噪声和小周期波。所作的一组假设导致了一个作为体积源但对压力透明的热交换器部分,以及一个局部热交换器模型,该模型的特征是动态不可压缩的流动,在该流动模型上叠加了局部空间均匀的声压波动。

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