Modeling of thermodynamic processes in internal combustion engine cylinder during cranking in compression measurement tests

A. Khrulev, Oleksii Saraiev, Iryna Yuryevna Saraieva, Oleksandr Vorobiov
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引用次数: 0

Abstract

The thermodynamics of in-cylinder processes of the internal combustion engine in cranking mode when measuring compression were examined. Analysis of various theoretical models and comparison of known data showed that the problems of constructing mathematical models of the engine operating cycle remain unresolved. The vast majority of practical data and recommendations for measuring cylinder compression are based on empirical knowledge, numerous experiments and tests. In accordance with this, there is a need for computational models of the compression measurement process and their theoretical justification. To solve the identified problems, a mathematical model of the thermodynamic processes in the cylinder was developed. Unlike existing ones, the model describes the processes in the cylinder step by step, taking into account the real nature of the intake-exhaust processes, air leakage through the interfaces of parts and heat exchange with the walls. Using modeling, the main patterns of changes in compression depending on the modes, the nature of damage to the associated parts of the valve mechanism and cylinder-piston group, the amount of leakage and engine temperature were found. Based on the results of the study, the properties of the model which make its use effective in diagnosing and monitoring the technical condition of engines in operation were concluded.
压缩测量试验中曲柄转动期间内燃机气缸热力学过程建模
研究了内燃机在曲柄模式下测量压缩时气缸内过程的热力学。对各种理论模型的分析和已知数据的比较表明,建立发动机工作循环数学模型的问题仍未解决。绝大多数测量气缸压缩的实用数据和建议都是基于经验知识、大量实验和测试。因此,需要建立压缩测量过程的计算模型及其理论依据。为了解决已发现的问题,我们开发了气缸热力学过程数学模型。与现有模型不同的是,该模型考虑到进气-排气过程、通过部件界面的空气泄漏以及与气缸壁的热交换的实际性质,逐步描述了气缸内的过程。通过建模,发现了压缩变化的主要模式取决于模式、气门机构和气缸活塞组相关部件损坏的性质、泄漏量和发动机温度。根据研究结果,总结出了该模型的特性,这些特性使其在诊断和监测运行中发动机的技术状况时非常有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
30
审稿时长
6 weeks
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