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DESIGN AND OPTIMIZATION OF A RESTRICTOR OF A RACE CAR

机译:赛车限制器的设计与优化

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Formula SAE is a student competition organized by SAE International. The team of students design, manufacture and race a car. Restrictions are imposed by the Formula SAE rules committee to restrict the air flow into the intake manifold by putting a single restrictor of 20 mm. This rule limits the maximum engine power by reducing the mass flow rate flowing to the engine. The pull is greater at higher rpms and the pressure created inside the cylinder is low. As the diameter of the flow path is reduced, the cross sectional area for flow reduces. For cars running at low rpm when the engine requires less air, the reduction in area is compensated by accelerated flow of air through the restrictor. Since this is for racing purpose cars here are designed to run at very high rpms where the flow at the throat section reach sonic velocities. Due to these restrictions the teams are challenged to come up with improved restrictor designs that allow maximum pressure drop across the restrictor's inlet and outlet. The design considered for optimizing a flow restrictor is a venturi type having 20 mm restriction between the inlet and the outlet complying with the rules set by Formula SAE committee. The primary objective of this work is to optimize the flow restriction device that achieves maximum mass flow and minimum pull from the engine. This implies the pressure difference created due to the cylinder pressure and the atmospheric pressure at the inlet should be minimum. An optimum flow restrictor is designed by conducting analysis on various converging and diverging angles and coming up with an optimum value. Venturi type is a tubular pipe with varying diameter along its length, through which the fluid flows. Law of governing fluid dynamics states that the "Velocity of the fluid increases as it passes through the constriction to satisfy the principle of continuity". An equation can be derived from the combination of Bernoulli's equation and Continuity equation for the pressure drop due to venturi effect. A Computational Fluid Dynamics (CFD) tool is used to calculate the minimum pressure drop across the restrictor by running a series of analysis on various converging and diverging angles and calculating the pressure drop. As a result, an optimum air flow restrictor is achieved that maximizes the mass flow rate and minimizes the engine pull.
机译:Formula SAE是由SAE International组织的学生竞赛。学生团队设计,制造和赛车。 Formula SAE规则委员会施加了限制,以通过放置20 mm的单个限流器来限制进入进气歧管的空气流。该规则通过减少流向发动机的质量流率来限制最大发动机功率。在较高的转速下,拉力更大,并且在气缸内部产生的压力较低。随着流动路径的直径减小,流动的横截面积减小。对于在发动机需要较少空气的情况下以低rpm运行的汽车,面积的减小可通过加速通过限流器的空气来补偿。由于这是为赛车目的而设计的,因此这里的汽车设计为以很高的rpm运行,从而使喉管部分的流量达到声速。由于这些限制,团队面临着提出改进的限流器设计的挑战,以允许最大的压降通过限流器的入口和出口。为优化限流器而考虑的设计是文丘里管型,其入口和出口之间的节流限制为20 mm,符合Formula SAE委员会设定的规则。这项工作的主要目的是优化限流装置,以实现最大的质量流量和最小的发动机牵引力。这意味着由于气缸压力和入口处的大气压而产生的压差应最小。通过对各种会聚角和发散角进行分析并得出最佳值来设计最佳限流器。文丘里管类型是一种管状管,其直径沿其长度变化,流体通过该管流动。控制流体动力学的法则规定:“流体的速度随着其通过缩颈而满足连续性原理而增加”。可以从伯努利方程和连续性方程的组合得出因文丘里效应引起的压降的方程。通过对各种会聚角和发散角进行一系列分析并计算压降,可使用计算流体动力学(CFD)工具计算通过限流器的最小压降。结果,获得了最佳的空气流量限制器,该空气流量限制器使质量流率最大化并且使发动机牵引力最小化。

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