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Modelling and simulation of a temperature compensation device in a fuel control unit

机译:燃油控制单元中温度补偿装置的建模和仿真

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摘要

A model is developed for the simulation of a temperature compensation device of a gas turbine engine main fuel control unit. For this purpose the appropriate conservation laws (mass, momentum and energy) are employed. Both the effects of temperature and pressure is taken into consideration for the calculation of the thermophysical properties of the working medium in order to accurately predict the thermal expansion and contraction of the actuating mechanism. The behaviour of the system (temperature, pressure and displacement) is described by a system of ordinary differential equations which is solved using a variable step Runge-Kutta algorithm of order 5(4). A parametric study is carried out comparing the system performance for various design variables such as the liquid mass, the heat transfer coefficient and two working mediums, ethanol and acetone.
机译:开发了用于模拟燃气轮机主燃料控制单元的温度补偿装置的模型。为此,采用了适当的守恒定律(质量,动量和能量)。为了精确地预测致动机构的热膨胀和收缩,在计算工作介质的热物理特性时要同时考虑温度和压力的影响。系统的行为(温度,压力和位移)由一个常微分方程组描述,该系统使用阶数为5(4)的可变步长Runge-Kutta算法求解。进行了参数研究,比较了各种设计变量(例如液体质量,传热系数和两种工作介质,乙醇和丙酮)的系统性能。

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