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A calculation method for indicated mean effective pressure based on harmonic analysis of pressure waveform

机译:基于压力波形谐波分析的指示平均有效压力计算方法

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摘要

A new method for calculating indicated mean effective pressure (i.m.e.p.) was derived from harmonic analysis of pressure waveform in working space, instead of conventional numerical integration of the pressurevolume (P-V) diagram. The method is applicable to a number of displacement-type machines including engines. This pa per first introduces a generalized i.m.e.p. equation, then derives the specific i.m.e.p. equations for various mechanisms such as the piston-crank, swash plate, etc. The proposed i.m.e.p. equations introduced show that i.m.e.p. is determined by very low frequency components, of less then several hundred Hz, included in the pressure waveform. The reason is that the amplitude of volumetric variation becomes rapidly smaller as the order of its harmonics increases. This means that the i.m.e.p. equations proposed are more accurate where the number n of sampling pressure data per cycle is decreased and allow highspeed calculation as compared with the conventional method. The error of the i.m.e.p. equation for internal combustion engines with a piston-crank driving mechanism is less than ± 0.1 per cent. For a Stirling engine with a Ross yoke driving mechanism the error is less than ± 0.4 per cent, even if n is decreased until four per cycle because the pressure waveform is close or similar to the sinusoidal wave. The digital i.m.e.p. meter developed as an application of the i.m.e.p. equation is also described, and its validation is discussed.
机译:通过对工作空间中压力波形的谐波分析,得出了一种计算指示平均有效压力(i.m.e.p.)的新方法,而不是传统的压力体积(P-V)图的数值积分方法。该方法适用于包括发动机在内的许多排量式机器。本章首先介绍了一个广义的i.m.e.p.方程,然后得出特定的i.m.e.p.各种机构如活塞曲柄,旋转斜盘等的方程式。引入的等式表明i.m.e.p.由包含在压力波形中的小于几百赫兹的极低频分量确定。原因是体积变化的幅度随着其谐波次数的增加而迅速变小。这意味着i.m.e.p.与传统方法相比,在减少每个循环的采样压力数据的数量n的情况下,提出的方程更加精确,并且可以进行高速计算。 i.m.e.p.的错误具有活塞曲柄驱动机构的内燃发动机的方程式小于±0.1%。对于具有罗斯轭驱动机构的斯特林发动机,即使由于压力波形接近或类似于正弦波而将n减小至每个周期四个,误差仍小于±0.4%。数字i.m.e.p.作为i.m.e.p.还描述了方程,并讨论了其有效性。

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