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Biodiesel effects on transient needle motion and near-exit flow characteristics of a high-pressure diesel injector

机译:生物柴油对高压柴油喷射器的瞬时针头运动和接近出口流量特性的影响

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In this study, biodiesel effects on transient needle motion and near-exit flow characteristics of a single-orifice high-pressure diesel injector were investigated in terms of needle-lift, needle speed, exit velocity and near-exit flow structure under various injection pressures. Ultrafast x-ray phase-contrast imaging technique was employed in this study to analyze the transient needle motion and near-exit flow characteristics. High-energy sub-nanosecond x-ray pulses have a potential to visualize the needle inside the nozzle and near-exit dense supersonic flow which speed reaches over 600 m/s. Transient needle motion and the structure and velocity of near-exit supersonic flows can be obtained by fabricated analysis of the x-ray images regardless of fuel, injection condition and type of injector. High bulk modulus and viscosity of biodiesel normally slow down the needle movement and decrease the flow performance. During opening-transient, sharp increase and following overshoot in needle speed and exit velocity were observed with a concurrent increase in spray width. The biodiesel showed a slower increase in needle speed, exit velocity and spray width but a higher degree of velocity overshoot during opening-transient. At steady-state, the biodiesel showed less turbulent flow structure and smaller spray width than diesel. During closing-transient, an abrupt increase in needle speed and decrease in exit velocity were observed with a concurrent increase in spray width. The biodiesel showed the retarded start of closing-transient and longer total injection duration under same energizing pulse duration. The difference between biodiesel and diesel became insignificant at low injection pressures roughly below 100 MPa.
机译:在这项研究中,研究了生物柴油对单孔高压柴油喷射器的瞬时针运动和近出口流量特性的影响,包括在各种喷射压力下的针升,针速度,出口速度和近出口流量结构。 。本研究采用超快X射线相衬成像技术来分析针头的瞬时运动和接近出口的流动特性。高能量的亚纳秒X射线脉冲具有使喷嘴内的针头和接近出口的密集超声速(速度超过600 m / s)流可视化的潜力。无论燃料,喷射条件和喷射器类型如何,都可以通过对X射线图像进行伪造分析来获得瞬态针头运动以及接近出口的超声波流的结构和速度。生物柴油的高体积模量和粘度通常会减慢针头的运动并降低流动性能。在打开瞬态过程中,观察到喷针速度和出口速度急剧增加并随后超调,同时喷雾宽度增加。在打开瞬态过程中,生物柴油的针速,出口速度和喷雾宽度的增加较慢,但速度过冲的程度较高。在稳态下,生物柴油显示出比柴油更少的湍流结构和更小的喷雾宽度。在关闭瞬态过程中,观察到针头速度突然增加而出口速度降低,同时喷雾宽度增加。在相同的激励脉冲持续时间下,生物柴油显示了关闭瞬态的启动延迟和更长的总喷射持续时间。在大约低于100 MPa的低注入压力下,生物柴油和柴油之间的差异变得微不足道。

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