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The effect of combustion chamber geometry on injection and mixture preparation in a CNG direct injection SI engine

机译:CNG直喷SI发动机中燃烧室几何形状对喷射和混合气制备的影响

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摘要

In pursuing a project to convert a four cylinder gasoline multi-point port fuel injection engine to a CNG direct injection engine, a numerical model has been developed in AVL FIRE software to undertake a detailed numerical investigation on the effects of combustion chamber geometry in such engines. Two main phases have been considered in the present study. In the first phase, aiming to fully investigate flow field and mixing process, multi-dimensional numerical modeling of transient gas injection has been performed. In order to verify the accuracy of the model, two different validation cases have been employed. The results showed that the models are quite capable of grasping all the significant physical phenomena in the process. Adoption of such a modeling was found to be a challenging task because of required computational effort and numerical instabilities. In all validation cases, experimental and numerical results were observed to have excellent agreement with each other. In the second phase, using the moving mesh capability the validated model has been developed to include methane direct injection into the cylinder of a direct injection engine for various combustion chamber geometries. Five different piston head shapes along with two injector types of single hole and multi hole have been taken into consideration. A centrally mounted injector location has been adapted to all cases. The effects of combustion chamber geometry, injection parameters, injector type and cylinder head shape have been studied on mixing of air-fuel inside cylinder. Based on the results, suitable geometrical configuration for the new NG DI engine has been discussed.
机译:在进行将四缸汽油多点进气燃油喷射发动机转换为CNG直喷发动机的项目时,已在AVL FIRE软件中开发了一个数值模型,以对此类发动机中燃烧室几何形状的影响进行详细的数值研究。 。本研究已考虑了两个主要阶段。在第一阶段,为全面研究流场和混合过程,进行了瞬态气体注入的多维数值模拟。为了验证模型的准确性,已采用了两种不同的验证案例。结果表明,该模型能够很好地把握过程中所有重要的物理现象。由于需要所需的计算工作和数值不稳定性,因此采用这种模型是一项具有挑战性的任务。在所有验证案例中,观察到的实验结果和数值结果之间都具有极好的一致性。在第二阶段中,使用移动网格功能,已开发了经过验证的模型,其中包括将甲烷直接喷射到各种燃烧室几何形状的直接喷射发动机的气缸中。已经考虑了五种不同的活塞头形状以及两种类型的单孔和多孔喷射器。中心安装的喷油嘴位置已适应所有情况。研究了燃烧室几何形状,喷射参数,喷射器类型和气缸盖形状对气缸内空气-燃料混合的影响。根据结果​​,已讨论了适用于新型NG DI发动机的合适几何构型。

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