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Numerical Study of In-Cylinder Flow Using Screw Threaded Intake Manifold in a Single Cylinder Diesel Engine

机译:单缸柴油发动机中螺纹进气歧管缸流动缸流量的数值研究

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In-cylinder flow study is important to understand the fuel mixing, combustion and emissions in diesel engines. The initial flow pattern is set up by the intake stroke as free vortex and is subsequently modified during compression stroke as forced vortex. This paper deals with in-cylinder flow comparison for two different geometries of the intake manifold (Standard and Screw Threaded) of a single cylinder direct injection diesel engine. The scope of using screw threads is to improve the swirl motion of the intake air. Modified geometry involves an internal screw threaded intake manifold (forming a protrusion into the manifold) with defined pitch, cross-section and length of the helix path. An experimental study using a steady state flow rig(Paddle Wheel Type) has been performed on the standard geometry to obtain mass flow coefficient and swirl ratio. Steady state CFD simulations are performed on both the geometries using ANSYS FLUENT as solver and compared with the experimental data. Effect on mass flow coefficient due to resistance from screw threads to the intake air has been studied. To understand the effect of compression stroke on swirl parameters, a transient simulation is run for both geometries to capture the flow during intake and compression stroke. Swirl flow inside the cylinder is characterized by swirl ratio. Swirl ratio varies with crank angle and is compared for both the geometries. Various flow parameters like turbulent kinetic energy, velocity streamlines and velocity components on a section plane were also studied.
机译:气缸流动研究对于了解柴油发动机的燃料混合,燃烧和排放非常重要。初始流动模式由进气冲程为自由涡流设置,随后在压缩冲程期间被修改为强制涡流。本文对单缸直喷柴油发动机的进气歧管(标准和螺纹)的两个不同几何形状的缸内流量比较。使用螺纹的范围是改善进气空气的旋流运动。改进的几何形状涉及内螺纹进气歧管(形成侧侧的突起),具有限定的俯仰,横截面和螺旋路径的长度。已经在标准几何形状上执行了使用稳态流动钻机(桨轮式)的实验研究以获得质量流量系数和旋涡比。使用ANSYS流畅的求解器并与实验数据进行比较,对两个几何形状进行稳态CFD仿真。研究了对螺纹到进气螺纹的电阻引起的质量流量系数的影响。要了解压缩冲程对旋流参数的影响,为两个几何形状运行瞬态仿真以在进气期间捕获流量和压缩行程。气缸内部的旋流特征在于旋流比。旋流比随曲柄角而变化,并与几何形状进行比较。还研究了各种流动参数,如湍流动能,速度流线和截面平面上的速度分量。

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