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Study of low load performance on a two-stroke direct injection spark ignition aero-piston engine fuelled with diesel

机译:双冲程直喷火花点火航空活塞发动机的低负荷性能研究柴油

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Purpose The purpose of this paper is to investigate power performance, economy and hydrocarbons (HC)/carbon monoxide (CO) emissions of diesel fuel on a two-stoke direct injection (DI) spark ignition (SI) engine. Design/methodology/approach Experimental study was carried out on a two-stroke SI diesel-fuelled engine with air-assisted direct injection, whose power performance and HC/CO emissions characteristics under low-load conditions were analysed according to the effects of ignition energy, ignition advance angle (IAA), injection timing angle and excess-air-ratio. Findings The results indicate that, for the throttle position of 10%, a large IAA with adequate ignition energy effectively increases the power and decrease the HC emission. The optimal injection timing angle for power and fuel consumption is 60 degrees crank angle (CA) before top dead centre (BTDC). Lean mixture improves the power performance with the HC/CO emissions greatly reduced. At the throttle position of 20%, the optimal IAA is 30 degrees CA BTDC. The adequate ignition energy slightly improves the power output and greatly decreases HC/CO emissions. Advancing the injection timing improves the power and fuel consumption but should not exceed the exhaust port closing timing in case of scavenging losses. Burning stoichiometric mixture achieves maximum power, whereas burning lean mixture obviously reduces the fuel consumption and the HC/CO emissions. Practical implications Gasoline has a low flash point, a high-saturated vapour pressure and relatively high volatility, and it is a potential hazard near a naked flame at room temperature, which can create significant security risks for its storage, transport and use. The authors adopt a low volatility diesel fuel for all vehicles and equipment to minimise the number of different devices using various fuels and improve the potential military application safety. Originality/value Under low-load conditions, the two stroke port-injected SI engine performance of burning heavy fuels including diesel or kerosene was shown to be worse than those of gasoline. The authors have tried to use the DI method to improve the performance of the diesel-fuelled engine in starting and low-load conditions.
机译:目的本文的目的是调查柴油机燃料的功率性能,经济和烃(HC)/一氧化碳(CO)排放在双止床直接喷射(DI)火花点火(Si)发动机上。在具有空气辅助直接注射的双程Si柴油机发动机上进行设计/方法/方法实验研究,其功率性能和HC / CO排放特性根据点火能量的影响分析了低负荷条件下的低负荷条件,点火前进角(IAA),注射正时角度和过量比率。结果结果表明,对于10%的节流位,具有足够点火能量的大型IAA有效地增加了功率并降低了HC发射。功率和燃料消耗的最佳喷射正时角是顶部死亡中心(BTDC)之前的60度曲柄角(CA)。瘦混合物随着HC / CO排放而改善功率性能大大降低。在节气门位置为20%,最佳IAA是30摄氏度的CA BTDC。充足的点火能量略微提高了功率输出,大大降低了HC / CO排放。推进喷射时间提高功率和燃料消耗,但在清除损失的情况下,不应超过排气口关闭时机。燃烧的化学计量混合物实现了最大功率,而燃烧的瘦混合物明显降低了燃料消耗和HC / CO排放。实际影响汽油具有较低的闪点,高饱和的蒸气压和相对高的挥发性,并且在室温下裸体火焰附近的潜在危险,这可以为其储存,运输和使用产生显着的安全风险。作者对所有车辆和设备采用低挥发性柴油燃料,以最小化使用各种燃料的不同设备的数量,提高潜在的军用应用安全。在低负荷条件下的原创性/值,燃烧的重型燃料的两个行程口腔注射发动机性能显示出比汽油的重型燃料在内的燃烧重型燃料的性能比汽油更差。作者试图使用DI方法来提高柴油燃料发动机在起始和低负载条件下的性能。

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