首页> 外文会议>ASME Internal Combustion Engine Division technical conference >APPLICATION OF HYPERBOLIC TANGENT APPROXIMATION MODEL TO GASOLINE DIRECT INJECTION ENGINE SIMULATION
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APPLICATION OF HYPERBOLIC TANGENT APPROXIMATION MODEL TO GASOLINE DIRECT INJECTION ENGINE SIMULATION

机译:双曲正切逼近模型在汽油直喷发动机仿真中的应用

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The improved fuel economy and low pollutant emissions are highly demanded for internal combustion engines. Gasoline Direct Injection (GDI) engine is the one of promising devices for highly efficient engine. However, GDI engines generally tend to emit more Particulate Matter (PM) than Port Fuel Injection (PFI) engine because the fuel sprayed from the injector can easily attach to the wall, which is the major origin of PM. Therefore, the precise analysis of the fuel/air mixture formation and the prediction of emissions are required. From the view of industrial use, Computational Fluid Dynamics (CFD) becomes a necessary tool for the various analyses including the fuel/air mixture formation, spray attachment on the cylinder wall, the in-cylinder turbulence formation, the combustion and emission etc. In our previous study, the flow and spray simulation in internal combustion engine has been conducted using OpenFOAM~®, the open-source CFD toolbox. Since the engine involves the dynamic motion such as valve and piston, the morphing and mapping approach was employed. Furthermore, by virtue of open-source code, we have developed the methodology of the hybrid simulation from the internal nozzle flow to the fuel/air mixture in order to take into account detailed breakup process nearby injector nozzle. We expand the above research to the combustion simulation. For the combustion model, the Hyperbolic Tangent Approximation (HTA) model is adopted. The HTA model has a simple form of equation and one can easily implement; moreover, the HTA model has the following features: 1. capability of both laminar and turbulent flow, 2. the clearness of analytical derivation based on the functional approximation of the reaction progress variable distribution in a one-dimensional laminar flame. In the current study, the premixed flame is studied on a gasoline combustion engine. The simulations for in-cylinder engine are conducted with different Air/Fuel (A/F) ratio conditions, and the results are compared with the experimental results. The in-cylinder pressure agrees well with experimental results and the validity of the current methodology is confirmed.
机译:内燃机强烈要求改善燃料经济性和低污染物排放。汽油直喷(GDI)发动机是高效发动机的有前途的设备之一。但是,GDI发动机通常比港口燃料喷射(PFI)发动机排放更多的颗粒物(PM),因为从喷射器喷出的燃料很容易附着在壁上,这是PM的主要来源。因此,需要对燃料/空气混合物形成的精确分析和排放的预测。从工业用途的角度来看,计算流体动力学(CFD)成为进行各种分析的必要工具,包括燃料/空气混合物形成,气缸壁上的喷雾附着,缸内湍流形成,燃烧和排放等。我们以前的研究是使用开源CFD工具箱OpenFOAM〜®进行的内燃机中的流动和喷雾模拟。由于发动机涉及阀门和活塞等动态运动,因此采用了变形和映射方法。此外,借助开源代码,我们已经开发了从内部喷嘴流到燃料/空气混合物的混合模拟方法,以便考虑到喷油嘴附近的详细破裂过程。我们将上述研究扩展到燃烧模拟。对于燃烧模型,采用了双曲正切近似(HTA)模型。 HTA模型具有简单的方程式形式,并且可以轻松实现;此外,HTA模型具有以下特征:1.层流和湍流的能力; 2.基于一维层流火焰中反应进度变量分布的函数逼近的解析推导的清晰性。在当前的研究中,在汽油内燃机上研究了预混火焰。在不同的空燃比(A / F)条件下进行了缸内发动机的仿真,并将结果与​​实验结果进行了比较。缸内压力与实验结果吻合得很好,并证实了当前方法的有效性。

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