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Piston Bowl Optimization for Single Cylinder Diesel Engine Using CFD

机译:使用CFD的单缸柴油机的活塞碗优化

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Automotive Diesel engines delivers more energy than gasoline because it burns the fuel more efficiently by compression process. Diesel engine piston plays an important role in delivering more power with the same volume of air-fuel mixture. To achieve this we need to have a better swirl (rotation of air inside the cylinder along the cylinder axis) to ignite the fuel by proper air-fuel ratio. In this project we target to improve the swirl motion for the proper mixing of fuel and air inside the combustion chamber by making tangential groves on the piston bowl. Different bowl designs are targeted to compare and analyse the effects of piston bowl by using CFD code (Commercial CFD code for engine specific). The intake port, combustion chamber roof, cylinder liner, piston bowl, intake valves and exhaust vales are considered for the 3D CFD modelling. The in-cylinder flow are measured numerically on different planes at various crank angles to see the effect of air motion caused by the tangential swirl groves created on the piston bowl. Different types of piston bowls by varying the number of groves, increasing the width of the groves are studied numerically and compared to identify the better swirl generating piston bowl.
机译:汽车柴油发动机提供比汽油更多的能量,因为它通过压缩过程更有效地燃烧燃料。柴油发动机活塞在通过相同体积的空气燃料混合物提供更多的功率方面起着重要作用。为了实现这一点,我们需要更好地旋流(沿气缸轴线内的气缸内的空气旋转)以通过适当的空燃比点燃燃料。在该项目中,我们旨在通过在活塞碗上制作切向叶片来改善燃料和空气的正确混合的旋涡运动。不同的碗设计是针对使用CFD代码进行比较和分析活塞碗的影响(用于发动机特定的商业CFD代码)。考虑到3D CFD造型,考虑进气口,燃烧室屋顶,气缸套,活塞碗,进气阀和排气阀。缸内流动在各种曲柄角度以不同的曲柄角度进行数字上测量,以看到由在活塞碗上产生的切向旋流林引起的空气运动的效果。通过改变叶片的数量,增加叶片的宽度的不同类型的活塞碗是在数上进行了数值,并比较了识别更好的旋流产生活塞碗。

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