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首页> 外文期刊>International Journal of Engine Research >Study of the short-term cylinder wall temperature oscillations during transient operation of a turbo-charged diesel engine with various insulation schemes
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Study of the short-term cylinder wall temperature oscillations during transient operation of a turbo-charged diesel engine with various insulation schemes

机译:不同绝缘方案的涡轮增压柴油机瞬态运行中短期气缸壁温度波动的研究

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摘要

This work investigates the phenomenon of short-term temperature (cyclic) oscillations in the combustion chamber walls of a turbocharged diesel engine during transient operation after a ramp increase in load. For this purpose, an experimentally validated simulation code of the thermodynamic cycle of the engine during transient conditions is used. This takes into account the transient operation of the fuel pump and the development of friction torque using a detailed per degree crank angle submodel, while the equations for each cylinder are solved individually and sequentially. The thermodynamic model of the engine is appropriately coupled to a wall periodic heat conduction model, which uses the gas temperature variation as boundary condition throughout the engine cycle after being treated by Fourier analysis techniques. Various insulation schemes are examined (plasma spray zirconia, silicon nitride) for load-increase transient operation. The evolution of many variables during transients is depicted, such as amplitude of oscillation, depth where the swing dies out, or gradient of temperature swing. The investigation reveals many interesting aspects of transient engine heat transfer, regarding the influence that the engine wall material properties have on the values of cyclic temperature swings.
机译:这项工作研究了在负载增加后的瞬态运行过程中,涡轮增压柴油机燃烧室壁中的短期温度(循环)振荡现象。为此,使用了在瞬态条件下发动机热力学循环的经过实验验证的模拟代码。这考虑到了燃油泵的瞬态运行以及使用详细的每度曲轴转角子模型产生的摩擦扭矩,同时每个汽缸的方程式都被依次求解。发动机的热力学模型适当地耦合到壁式周期性导热模型,该模型在经过傅立叶分析技术处理后,将气体温度变化作为整个发动机循环的边界条件。检查了各种绝缘方案(等离子喷涂氧化锆,氮化硅),以增加负载的瞬态运行。描绘了瞬态期间许多变量的演变,例如振荡幅度,摆动消失的深度或温度摆动的梯度。这项研究揭示了发动机瞬态传热的许多有趣方面,涉及到发动机壁材料性能对循环温度波动值的影响。

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