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IMPROVEMENT OF POPPET VALVE INJECTION PERFORMANCE IN LARGE-BORE NATURAL GAS ENGINES

机译:大孔自然燃气发动机提升提升阀注入性能

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Poppet valves have been used as fuel delivery mechanisms in internal combustion engines due to their excellent sealing characteristics. For example, in large-bore stationary natural gas engines, gas is directly injected by a poppet valve into the engine cylinder. The objectives of this paper are to show that a significant amount of stagnation pressure is lost during the gas flow through a conventional poppet valve and to suggest design improvements to obtain more efficient poppet valves with reduced stagnation pressure loss. In this paper, simple converging-diverging nozzles are incorporated into the poppet valve configuration to reduce the stagnation pressure loss originating from compressible flow structures. Numerical simulations of the gas flow through various poppet valve geometries were performed. Both push and pull poppet valve geometries with nozzle were studied. The stagnation pressure losses, momentum delivery downstream and downstream flow characteristics of the jets from conventional poppet valves and the modified valves were compared. A pressure-based valve injection efficiency was defined and used to compare the valve injection performance. A mixing fraction parameter was also defined to compare valve performance in a moving piston simulation. The results indicate that a conventional poppet valve is an inefficient mechanism to deliver momentum to the fuel-air mixture. Comparison of the results indicates that it is possible to make significant improvements of injection performance in momentum delivery by incorporating well-designed nozzles into the poppet valve geometry.
机译:由于其优异的密封特性,提升阀已被用作内燃机中的燃料输送机构。例如,在大胆固定式天然气发动机中,气体通过提升阀直接注入发动机缸。本文的目的是表明,在气体流过传统的提升阀期间,在气流过程中损失了大量的停滞压力,并建议设计改进,以获得更高的滞留压力损失的高效提升阀。在本文中,简单的会聚散热喷嘴纳入提升阀配置中,以减少源自可压缩流动结构的停滞。进行了通过各种提升阀几何形状的气流的数值模拟。研究了带喷嘴的推动和拉开提升阀几何形状。比较了来自传统提升阀和改性阀的喷射器的停滞压力损失,动量输送下游和下游流动特性。定义了基于压力的阀门注入效率并用于比较阀门注入性能。还定义了混合级分参数以比较移动活塞仿真中的阀性能。结果表明,传统的提升阀是将动量输送到燃料 - 空气混合物的低效机制。结果的比较表明,通过将精心设计的喷嘴结合到提升阀几何形状中,可以在动量递送中进行注射性能的显着改善。

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