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Control and influence of valve condition on compression stroke of hydraulic free piston engine

机译:气门状态对液压自由活塞发动机压缩冲程的控制及影响

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Though the two-cylinder four-stroke hydraulic free piston engine (HFPE) has advantages over the traditional HFPE in terms of fuel consumption and exhaust, its effective compression stroke which defines the compression ratio and the combustion is susceptible to the conditions of the intake valve. The force balance of the free piston assembly, the energy equation of the ideal gas in the combustion chamber and the relationship between the piston displacement and the angle of the intake valve were developed. The key parameters of the intake valve that influences the performance of the compression process were analyzed. The control flow chart of the intake valve was established according to the intake valve condition. The test rig was set up to verify the effectiveness and feasibility of the control. The results showed that no matter the initial angle of the intake valve is, the piston displacement almost overlaps and the piston can reach TDC almost at the same time. The angle of the intake valve and the servo motor are within the preset range when the intake valve closes and the piston reaches TDC despite of the changing of the initial angle of the intake valve.
机译:尽管两缸四冲程液压自由活塞发动机(HFPE)在燃料消耗和排气方面比传统HFPE更具优势,但其有效压缩冲程决定了压缩比,燃烧易受进气门状况的影响。建立了自由活塞组件的力平衡,燃烧室内理想气体的能量方程以及活塞排量和进气门角度之间的关系。分析了影响压缩过程性能的进气门关键参数。根据进气门状态建立进气门的控制流程图。设立测试台是为了验证控制的有效性和可行性。结果表明,无论进气门的初始角度是多少,活塞的排量几乎都是重叠的,并且活塞几乎可以同时达到TDC。尽管进气门的初始角度发生了变化,但当进气门关闭且活塞达到TDC时,进气门和伺服电机的角度在预设范围内。

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