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A 1-D MODEL OF A REAL STIRLING ENGINE CALIBRATED BY EXPERIMENTS

机译:通过实验校准实际斯特林发动机的一维模型

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In this study the results of a detailed thermodynamic investigation of a real Stirling engine are presented. A combined experimental and simulation approach was applied. A detailed 1-D thermodynamic model of a real Stirling engine was built and calibrated to match experimental data. The experimental data were collected on a prototype engine at the manufacturer's test laboratory. The set of calibration parameters included energy balance inputs and outputs in the form of integral data and the crank angle based pressure data from the working volumes of the Stirling engine. Unconventional data acquisition and analysis was developed due to the specific nature of the Stirling engine. The procedure for calibrating the Stirling engine model is described in detail, and the resulting tuned model is used to predict the operation of the Stirling engine beyond the measured range. Further design optimization will be performed by the model in future studies. Although the experiments focused on the acquisition and evaluation of instantaneous pressures, the calibration of the model revealed a need for more detailed measurements of the temperature distribution within the regenerator.
机译:在这项研究中,提出了对真正的斯特林发动机进行详细热力学研究的结果。实验和模拟相结合的方法被应用。建立了真实斯特林发动机的详细一维热力学模型,并对其进行了校准以匹配实验数据。实验数据是在制造商的测试实验室的原型引擎上收集的。校准参数集包括能量平衡输入和输出,这些输入和输出的形式为整数数据和来自斯特林发动机工作容积的基于曲轴转角的压力数据。由于斯特林引擎的特殊性,开发了非常规的数据获取和分析方法。详细介绍了斯特林发动机模型的校准过程,并将所得的调整后的模型用于预测斯特林发动机超出测量范围的运行情况。该模型将在以后的研究中进行进一步的设计优化。尽管实验着重于瞬时压力的获取和评估,但模型的校准表明需要对再生器内的温度分布进行更详细的测量。

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