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A Practical Design Approach to Improve the Charging Efficiency of a Small Two-Stroke High Speed Engine Based on Basic CFD

机译:一种基于基础CFD提高小二冲程高速发动机充电效率的实用设计方法

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The paper deals with the optimisation of the charging efficiency in a small two-stroke high-speed engine according to well-established design guidelines. The aim is to present the method successfully used in the preliminary screening of the performance improvement attainable in a crank-case-compression engine by design modifications to the transfer ports and manifolds. The method applies a basic CFD model of the steady-state flow across the cylinder block validated against experimental tests at the discharge flow bench. This model is used to approximate the actual scavenging process through a transient simulation of the cold flow across the cylinder inside which the piston is fixed at the bottom centre. A fast assessment of the charging efficiency is permitted by a transported passive scalar implemented in the model to easily estimate all the parameters needed for monitoring the effectiveness of the scavenging process at each crankangle. This practical design approach has been applied to the geometry of a Schnürle-type loop-scavenged 125cc single-cylinder engine compliant with the 2018 FIA homologation form for the KF2 karting competition category. The maximum increase of indicated mean effective pressure expected according to the comparison between the CFD simulations of the original and the modified design of the transfer ports is approximately equal to 4%. This result demonstrates that the CFD analyses are sensitive to the limited modifications commonly needed to tune two-stroke racing-engines and confirms that the suggested design approach can be profitably employed by engineers and technicians involved in the design of small two-stroke highspeed engines.
机译:本文根据熟悉的设计指南,涉及小型两冲程高速发动机的充电效率优化。目的是通过对转移端口和歧管的设计修改,在曲柄壳 - 压缩发动机中成功地介绍初步筛选的方法。该方法应用于在排出流动凳上验证的气缸模块上的稳态流的基本CFD模型。该模型用于通过在底部中心固定在底部中心的气缸中的冷流体的瞬态模拟来近似实际的清除过程。在模型中实现的运输被动标量允许对充电效率进行快速评估,以便容易地估计监测每个曲克脉的清除过程的有效性所需的所有参数。这种实用的设计方法已应用于Schnürle型环路清除的125CC单缸发动机的几何形状,符合2018 FIA同源形式,适用于KF2卡丁车竞争类别。根据原始CFD模拟与转移端口的修改设计之间的比较预期的指示平均有效压力的最大增加大约等于4%。这一结果表明,CFD分析对致电两次行程赛车的有限修改敏感,并确认所建议的设计方法可以由参与小型两冲程高速发动机设计的工程师和技术人员有利可图。

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