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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Effects of transient diesel engine operation on its cyclic heat transfer: an experimental assessment
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Effects of transient diesel engine operation on its cyclic heat transfer: an experimental assessment

机译:瞬态柴油机运行对其循环传热的影响:实验评估

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This paper presents results from the analysis of experimental data with the aim of investigating the cyclic, instantaneous heat transfer phenomena occurring in both the cylinder head and exhaust manifold wall surfaces of a direct injection, air-cooled diesel engine, operating under transient events (long-term), viz. during a sudden change in engine speed and/or load, rather than the usual steady state. The experimental installation allowed both for long-and short-term signal types to be recorded on a common time reference base during the transient event. Processing of experimental data was accomplished using a modified version of one-dimensional heat conduction theory with Fourier analysis, capable of catering for the special characteristics of transient engine operation. Based on this model, the evolution of local surface heat flux during a transient event was calculated. Two engine transient events are examined, which present a key difference in the way the load and speed changes are imposed on each one of them. It is revealed that in the case of a 'ramp' transient the amplitude of wall surface temperature and heat flux variation in the combustion chamber during the first 20 engine cycles was increased by almost three times more than the corresponding ones during steady state operation. At the same time, temporal gradients of cylinder pressure and wall surface temperature are also sharply increased in the combustion chamber and exhaust manifold surfaces. The variation of cylinder pressure, surface temperature, and heat flux is altered significantly during the transient event, with their peak values either advanced or retarded compared with those for the corresponding steady state operation. The previous observations are moderated or even vanished in the case of a 'slow pace' transient variation, revealing the significant influence of engine speed and load triggered by the external command, on the response of heat transfer variables. During a ramp transient, the amplitude of wall temperature swing is increased significantly even at a depth of a few millimetres below the surface of the combustion chamber, thereby influencing the dissipation of heat towards its external layers. Under these circumstances, the depth of penetration for temperature oscillations inside the metal volume is also significantly increased.
机译:本文介绍了对实验数据的分析结果,目的是调查在瞬态事件(长时)下运行的直喷式空冷柴油机的气缸盖和排气歧管壁面中均发生的循环瞬时传热现象。 -term),即发动机转速和/或负载突然变化,而不是通常的稳定状态。实验装置允许在瞬态事件期间将长期和短期信号类型记录在公共时间基准上。实验数据的处理使用具有傅里叶分析的一维热传导理论的改进版本完成,能够满足瞬态发动机运行的特殊特性。基于此模型,计算了瞬态事件期间局部表面热通量的演变。研究了两个发动机瞬态事件,这两个事件在负载和速度变化施加于每个瞬变事件的方式上存在关键差异。结果表明,在“斜坡”瞬变的情况下,在前20个发动机循环中,燃烧室壁面温度和热通量变化的幅度几乎比稳态运行时相应的增加了三倍。同时,气缸压力和壁表面温度的时间梯度在燃烧室和排气歧管表面也急剧增加。汽缸压力,表面温度和热通量的变化在瞬态事件中发生了显着变化,与相应的稳态运行相比,其峰值提前或滞后。在“慢速”瞬态变化的情况下,先前的观察结果有所缓和甚至消失,这揭示了外部指令触发的发动机转速和负载对传热变量响应的重大影响。在斜坡瞬变期间,即使在燃烧室表面以下几毫米的深度处,壁温摆动的幅度也会显着增加,从而影响热量向其外层的散发。在这些情况下,金属体积内部温度振荡的穿透深度也显着增加。

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