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首页> 外文期刊>International Journal of Theoretical and Applied Mechanics >Modelling of Multiple Injections of HCCI Engine Using Computational Fluid Dynamics
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Modelling of Multiple Injections of HCCI Engine Using Computational Fluid Dynamics

机译:基于计算流体动力学的HCCI发动机多次喷射建模

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Due to the stringent emission norms the research in the field of internal combustion engines in general and diesel engines in particular gathered huge importance and also increasing demand on fuel consumption the importance of detailed simulation of fuel injection, mixing and combustion have been increased in the recent years. In this research a cfd simulation is carried out on direct injection diesel engine to study the flow, combustion and emissions. In a diesel engine the flow pattern that is the turbulence inside the engine will control the combustion and thereby the emission mainly NO_x, SO_x and Soot. So it is very important to study the flow phenomenon first before the emission study is carried out. In this work an attempt is made to study the flow patterns for a cylinder design using split injection. Commercial cfd tool FLUENT is used for numerical simulation. It solves the basic governing equations of fluid flow that is continuity, momentum, species transport and energy equation. Using finite volume method Turbulence is modeled by using standard k-8 model. Injection is modeled using Lagrangian system. The reaction is modeled using non-premixed combustion which considers the effects of turbulence and detailed chemical mechanism into account to model the reaction rates. The specific heats for all the species is approximated by using piecewise polynomials. In this research simulation has been carried for triple injection and compared with experimental results and found simulation results of triple injections have shown good agreement.
机译:由于严格的排放规范,一般在内燃机领域,尤其是柴油机领域的研究非常重要,并且对燃料消耗的需求也在增加,近来对燃料喷射,混合和燃烧进行详细模拟的重要性日益增加。年份。在这项研究中,对直喷柴油机进行了cfd仿真,以研究其流量,燃烧和排放。在柴油发动机中,作为发动机内部湍流的流型将控制燃烧,从而主要控制NO_x,SO_x和烟灰的排放。因此,在进行排放研究之前,首先研究流动现象非常重要。在这项工作中,尝试研究采用分流喷射的气缸设计的流型。商业cfd工具FLUENT用于数值模拟。它解决了流体流动的基本控制方程,即连续性,动量,物质迁移和能量方程。使用有限体积方法,使用标准k-8模型对湍流进行建模。注射是使用拉格朗日系统建模的。使用非预混燃烧对反应进行建模,该燃烧考虑了湍流的影响和详细的化学机理,以对反应速率进行建模。通过使用分段多项式,可以估算所有物质的比热。在这项研究中,进行了三次注射的模拟,并与实验结果进行了比较,发现三次注射的模拟结果显示出良好的一致性。

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