首页> 外文会议>ASME Internal Combustion Engine Division Technical Conference >MODEL-BASED OPTIMIZATION AND PRESSURE FLUCTUATION CONTROL OF PRESSURE RESERVOIR IN ELECTRICALLY CONTROLLED FUEL INJECTION SYSTEM FOR SINGLE CYLINDER DIESEL ENGINE
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MODEL-BASED OPTIMIZATION AND PRESSURE FLUCTUATION CONTROL OF PRESSURE RESERVOIR IN ELECTRICALLY CONTROLLED FUEL INJECTION SYSTEM FOR SINGLE CYLINDER DIESEL ENGINE

机译:用于单缸柴油发动机电控燃料喷射系统压力储存器的模型优化和压力波动控制

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Single-cylinder diesel engines usually employ mechanically actuated or time-type electrically controlled fuel injection systems. But due to the lack of flexibility to provide high pressure and fully varying injection parameters, fuel efficiency and emissions are poor. Although modern multi-cylinder engines have employed high pressure common rail fuel injection system for a long time, this technology has not been demonstrated in single-cylinder diesel engines. Due to the small installation space and little fuel injection amount of single cylinder diesel engine, high pressure common rail fuel injection system cannot be employed directly. In this study an electrically controlled high pressure fuel injection system of time-pressure-type (PTFS) for single-cylinder diesel engine was demonstrated. PTFS integrated the fuel pump and pressure reservoir (PR) to reduce installation space, which enabled it to match various kinds of single-cylinder diesel engines. However, the volume of the PR of PTFS is still limited, leading to obvious pressure fluctuation induced by periodic fuel pumping and injection. Pressure fluctuation might affect the stability and consistency of fuel injection, deteriorating the combustion and emissions of the engine further. This work established a mathematical model for the system, and studied the effect of the main parameters of the PR to the pressure fluctuations in the PR. The structure and dimensions of the system were optimized and a damping mechanism was proposed to reduce the pressure fluctuation. The optimized pressure fluctuation of PTFS achieved an acceptable level which can support steady and effective fuel injection. As a result, the fuel consumption efficiency and emission level of single cylinder diesel engine were enhanced.
机译:单缸柴油发动机通常采用机械致动或时间型电控燃料喷射系统。但由于提供高压和完全不同的注射参数的灵活性,燃料效率和排放差。虽然现代多缸发动机长时间采用了高压共轨燃料喷射系统,但该技术尚未在单缸柴油发动机中证明。由于机空间小,单缸柴油发动机的单缸喷射量小,高压共轨燃料喷射系统不能直接采用。在本研究中,证明了用于单缸柴油发动机的时压型(PTF)的电控高压燃料喷射系统。 PTFS集成了燃油泵和压力储存器(PR)以减少安装空间,使其能够匹配各种单缸柴油发动机。然而,PTF的PR的体积仍然有限,导致通过周期性燃料泵送和注射引起的明显压力波动。压力波动可能会影响燃料喷射的稳定性和一致性,进一步降低发动机的燃烧和排放。这项工作为系统建立了数学模型,并研究了PR的主要参数对PR压力波动的影响。优化了系统的结构和尺寸,提出了阻尼机构以降低压力波动。 PTF的优化压力波动达到了可接受的水平,可以支持稳定且有效的燃料喷射。结果,增强了单缸柴油发动机的燃料消耗效率和排放水平。

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