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Experimental Study on Hydraulic Free-Piston Diesel Engine

机译:液压自由活塞柴油机的实验研究

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Free-piston engines are investigated by a number of research groups worldwide, with potential advantages of high efficiency and low-emissions. Hydraulic free-piston diesel engine, which combines a two-stroke diesel engine and a hydraulic pump, could be an alternative to conventional technology in applications. It can fulfill the power requirements of vehicle under optimum operation conditions, only by change the operation frequency. The piston dynamics of the free-piston engine differ from those of conventional engines, and this may influence the combustion process and power output. This paper introduces the design of a single piston hydraulic free-piston diesel engine. The piston dynamics and combustion process were investigated from test data. Different from conventional engine, the main combustion phase of hydraulic free-piston diesel engine is pre-mixed combustion phase. Most of the fuel burns in the pre-mixed phase, resulting in a very high rate of heat release. Finally, the pumping process of hydraulic free-piston diesel engine has been discussed. It is seemed that the response lag between the pump chamber pressure and the piston displacement at the start of the expansion stroke is mostly determined by the close action of the suction valve. Improving response performance of the suction valve will increase the total efficiency of the hydraulic free-piston diesel engine.
机译:全球范围内的许多研究小组对自由活塞发动机进行了研究,它们具有高效率和低排放的潜在优势。结合了二​​冲程柴油发动机和液压泵的液压自由活塞柴油发动机可以在应用中替代传统技术。仅通过改变操作频率,就可以在最佳操作条件下满足车辆的动力需求。自由活塞发动机的活塞动力学不同于常规发动机,这可能会影响燃烧过程和功率输出。本文介绍了单活塞液压自由活塞柴油机的设计。从测试数据研究了活塞的动力学和燃烧过程。与传统发动机不同,液压自由活塞柴油机的主要燃烧阶段是预混合燃烧阶段。大多数燃料在预混合阶段燃烧,从而导致很高的放热率。最后,对液压自由活塞柴油机的泵送过程进行了讨论。似乎在膨胀冲程开始时泵腔压力与活塞位移之间的响应滞后主要由吸气阀的关闭动作决定。改善吸气阀的响应性能将提高液压自由活塞柴油机的总效率。

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