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Definition of a CFD Methodology to Evaluate the Cylinder Temperature Distribution in Two-Stroke Air Cooled Engines

机译:CFD方法的定义评估双冲程空气冷却发动机中的气缸温度分布

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On the basis of the operating cooling fluid, internal combustion engine cooling systems can be classified in two macro areas: air-cooling system and liquid-cooling system. In four-stroke engines, liquid-cooling system is generally preferred to the air-cooling system because of its efficiency in the engine heat dissipation. However, thanks to its simplicity, today the engine air-cooling system is still widely used in the engine market, especially on two-stroke engine applications like small motorbike, light aircraft, and handheld products. To assure the necessary heat waste in air-cooled engines, the key point is the optimization of the air flow over the cylinder external surface. Air flow separation from cylinder external surface can result in high temperature gradients inside the cylinder volume causing destructive heat problem for the engine It can be avoided only by a fine optimization of the cylinder fin design placed externally to the cylinder surface. To fulfil this need, the definition of specific methodology to evaluate the air-cooling effect on the engine is mandatory. In the present paper, the authors present a 3D-CFD simulation methodology designed to perform a detailed evaluation of two-stroke air-cooled engines. The methodology was applied on two different engines equipping handheld brush-cutter machines. The optimization of the air-cooling system of such a machine is a very challenging task because the machine design must be very compact forcing all the engine parts to remain quite close each other. The simulation results are compared to experimental evidences in order to verify the validity of the proposed approach.
机译:在操作冷却液的基础上,内燃机冷却系统可以分为两个宏区域:空气冷却系统和液体冷却系统。在四冲程发动机中,由于其在发动机散热中的效率,液体冷却系统通常优于空气冷却系统。然而,由于其简单性,今天发动机空气冷却系统仍然广泛用于发动机市场,特别是对小型摩托车,轻型飞机和手持产品等两冲程发动机应用。为了确保空气冷却发动机中的必要热废物,关键点是在气缸外表面上的空气流的优化。从气缸外表面的空气流量可以导致气缸体积内的高温梯度导致发动机的破坏性热问题,只能通过在外部放置在汽缸表面外部的气缸翅片设计的精细优化来避免。为了满足这种需求,强制性地是评估发动机空气冷却效果的具体方法的定义。在本文中,作者呈现了3D-CFD仿真方法,旨在进行双冲程空气冷却发动机的详细评估。该方法应用于配备手持式刷子机的两种不同的发动机。这种机器的空气冷却系统的优化是一个非常具有挑战性的任务,因为机器设计必须非常紧凑地强制所有发动机部件彼此保持密切依赖。将仿真结果与实验证据进行比较,以验证所提出的方法的有效性。

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