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Performance Analysis of Rail-Pressure Supply Pumps of Common-Rail Fuel Systems for Diesel Engines

机译:柴油发动机公共轨道燃料系统轨道压力供应泵的性能分析

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This paper discusses the performance of the radial plunger pump used in the contemporary diesel common-rail fuel systems for rail-pressure supply. On the ground of the pump mechanism, the transient flow, drive torque, and efficiency of the pump are analyzed for various operation conditions. The analysis shows that the number of plungers and utilization of the pump capacity govern fluctuations in the pump discharge. The pump flow can be characterized by a discharge function which applies to both full- and part-capacity pump flows. At the full pump capacity, the discharge fluctuation is determined solely by the number of plungers: a pump with an odd number of plungers has more ripples and lower amplitudes in its discharge than a pump with an even number of plungers does. A pump operates at a part capacity has more fluctuations in the discharge than when at the full capacity. If the pump speed is not very low, then a critical flow exists for any given pump speed, at which the pump discharge becomes fully pulsatile and increase in the pump speed will lead to a discontinuous pump flow, which generates pressure fluctuations in the common rail. This pump discharge induced rail-pressure fluctuation becomes significant when the engine is operated with a multiple-injection strategy: large rail-pressure fluctuations may result in a poor control in the non-primary injections. To mitigate the effect of the rail-pressure fluctuation on injections, the pump size and the volume of common rail should be designed according to both the engine fuel demands and the injection control strategy.
机译:本文讨论了现代柴油公共轨道燃料系统用于轨道压力供应的径向柱塞泵的性能。在泵机构的地面,分析泵的瞬态流量,驱动扭矩和效率,用于各种操作条件。分析表明,泵容量的柱塞数和利用率控制泵放电的波动。泵流程可通过排出功能来表征,该功能适用​​于全部和部分容量泵流。在全泵容量下,排出波动仅通过柱塞的数量来确定:具有奇数柱塞的泵具有更多的涟漪,并且在其放电中的较低幅度而不是具有偶数柱塞的泵。在零件容量下操作泵在排放中具有比全部容量更大的波动。如果泵速度不是很低,则对于任何给定的泵速存在临界流量,在该泵速度的情况下,泵排放变得完全脉冲,并且泵速的增加将导致不连续的泵流,从而产生共同导轨中的压力波动。当用多喷射策略操作发动机时,该泵放电诱导的轨道压力波动变得显着:大型轨道压力波动可能导致非初级喷射中的较差。为了减轻轨道压力波动对喷射的影响,应根据发动机燃料需求和注射控制策略设计泵尺寸和公共导轨的体积。

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