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Numerical investigation of natural gas direct injection properties and mixture formation in a spark ignition engine

机译:火花点火发动机中天然气直喷特性和混合气形成的数值研究

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摘要

In this study, a numerical model has been developed in AVL FIRE software to perform investigation of Direct Natural Gas Injection into the cylinder of Spark Ignition Internal Combustion Engines. In this regard two main parts have been taken into consideration, aiming to convert an MPFI gasoline engine to direct injection NG engine. In the first part of study multi-dimensional numerical simulation of transient injection process, mixing and flow field have been performed via three different validation cases in order to assure the numerical model validity of results. Adaption of such a modeling was found to be a challenging task because of required computational effort and numerical instabilities. In all cases present results were found to have excellent agreement with experimental and numerical results from literature. In the second part, using the moving mesh capability the validated model has been applied to methane Injection into the cylinder of a Direct Injection engine. Five different piston head shapes along with two injector types have been taken into consideration in investigations. A centrally mounted injector location has been adapted to all cases. The effects of injection parameters, combustion chamber geometry, injector type and engine RPM have been studied on mixing of air-fuel inside cylinder. Based on the results, suitable geometrical configuration for a NG DI Engine has been discussed.
机译:在这项研究中,已经在AVL FIRE软件中开发了一个数值模型,以进行直接天然气喷射到火花点火式内燃机气缸中的研究。在这方面,已经考虑了两个主要部分,旨在将MPFI汽油发动机转换为直接喷射NG发动机。在研究的第一部分中,瞬态注入过程的多维数值模拟是通过三个不同的验证案例进行的混合和流场,以确保结果的数值模型的有效性。由于所需的计算量和数值不稳定性,采用这种模型是一项艰巨的任务。在所有情况下,发现目前的结果与文献中的实验和数值结果具有极好的一致性。在第二部分中,使用移动网格功能将验证后的模型应用于将甲烷注入到直喷发动机的气缸中。在研究中已考虑了五种不同的活塞头形状以及两种喷射器类型。中心安装的喷油嘴位置已适应所有情况。研究了喷射参数,燃烧室几何形状,喷射器类型和发动机转速对气缸内空气-燃料混合的影响。基于结果,已经讨论了用于NG DI引擎的合适的几何构造。

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