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Analysis and Research of the Combustion Process of YN4100QB Diesel Engine

机译:YN4100QB柴油机燃烧过程的分析与研究

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In order to obtain the foundation to the research on the Diesel Engine YN4100QB combustion process, exhaust, the optimal design of combustion chamber and the useful information for the design of exhaust muffler, the geometric model and mesh model of a type internal combustion engine are constructed by using FIRE software to analyze the working process of internal combustion engine. Exhaust noise is the main component of automobile noise in the study of controlling vehicle noise. It is primary to design a type of muffler which is good for agricultural automobile engine matching and noise reduction effect. The present car mufflers are all development means. So it is bound to cause the long cycle of product development and waste of resources. Even sometimes not only can it not reach the purpose of reducing the noise but also it leads to reduce the engine dynamic. The strength of the exhaust noise is closely related to engine combustion temperature and pressure. The calculation and initial parameters are applied to the software based on the combustion model and theory, According to the specific operation process of internal combustion engine. Five kinds of common operation condition were compiled. It is obtained for the detailed distribution parameters of combusted gas temperature pressure. It is also got for flow velocity of the fields in cylinder and given for the relation of the parameters and crankshaft angle for the further research. At the same time NO_x emissions situation are got. The numerical results show that not only does it provide the 3D distribution data in different crank shaft angle inside the cylinder in the simulation of combustion process, but also it provides a basis for the engine combustion, emission research, the optimization design of the combustion chamber and the useful information for the designs of muffler.
机译:为了获得对柴油发动机YN4100QB燃烧过程的研究基础,排气,燃烧室的最佳设计和排气消声器设计的有用信息,构造了型内燃机的几何模型和网状模型通过使用消防软件来分析内燃机的工作过程。排气噪音是汽车噪声在控制车辆噪声研究中的主要成分。设计一种型消声器是初级的,这对于农用汽车发动机匹配和降噪效果有益。目前的汽车消声器是所有开发手段。因此,它必然会导致产品开发和资源浪费的长期循环。甚至有时不仅可以达到减少噪音的目的,而且它也导致减少发动机动态。排气噪声的强度与发动机燃烧温度和压力密切相关。根据内燃机的特定操作过程,基于燃烧模型和理论应用了计算和初始参数。编制了五种常见的操作条件。获得用于燃烧气体温度压力的详细分布参数。还可以用于圆柱体中的磁场的流速,并给出参数和曲轴角度的关系,以实现进一步的研究。与此同时,No_X排放情况得到了。数值结果表明,它不仅提供了燃烧过程模拟中的汽缸内外的不同曲柄轴角度的3D分布数据,还为发动机燃烧,排放研究,燃烧室的优化设计提供了基础以及消声器设计的有用信息。

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