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DESIGN OF AN AIR COOLED CYLINDER HEAD FOR TWO FAMILYS OF DIESEL ENGINES WITH DIRECT INJECTION

机译:用于直喷式柴油发动机的空气冷却气缸盖的设计

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When designing a cylinder head for two families of stationary diesel engines, air cooled, direct injection, to consider these issues: the BMEP, which is limited to these engines to value 5.5 bar. To optimize gases exchange and obtain a desired swirl number, different solutions are studied geometry galleries, speed location of valves and gas fields developed in the process for each proposed solution. The paper presents the optimal solution found in the following constructive analysis made for a program Fluent single cylinder engine and one engine family bi-cylinder mentioned, looking at for each case of cooling air flow. Another aspect to be taken into account when designing the cylinder heads is to determine the thermal regimes of the cylinder head, piston, cylinder, valve and nozzle, in order to define the development of heat per cycle. From our experience in designing and attempts stationary air cooled engines and the development of injectors and new combustion chambers, a combustion code, written in C++, I simulate the heat release rate per cycle serving to define data plating to determine required heat transfer. The objectives of this paper are to define optimum construction solutions for a cylinder head for two families of air-cooled diesel engine with direct injection and 76 and 82 mm bore.
机译:在为两个固定柴油发动机的两个家庭设计气缸盖时,空气冷却,直接注射,考虑这些问题:BMEP,其仅限于这些发动机到价值5.5巴。为了优化气体交换并获得所需的旋流数,研究了不同的解决方案,几何画廊,阀门和天然气领域的速度定位为每个提出的解决方案。本文介绍了在下列建设性分析中发现的最佳解决方案,为程序流畅的单缸发动机和提到的一个发动机家族双缸,看着每种冷却空气流量的情况。在设计气缸盖时要考虑的另一个方面是确定气缸盖,活塞,圆筒,阀门和喷嘴的热调节,以便定义每个循环的热量的发展。从我们的设计和尝试的经验以及喷射器和新的燃烧室的开发,一种燃烧码,在C ++中写入,我模拟了每周期的热释放速率,用于定义数据电镀以确定所需的传热。本文的目的是为气缸头定义用于两个空气冷却柴油发动机的气缸盖的最佳施工解决方案,直接注入,76和82毫米孔。

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