首页> 外文会议>ASME(American Society of Mechanical Engineers) Internal Combustion Engine Division Fall Technical Conference; 20071014-17; Charleston,SC(US) >DESIGN AND DEVELOPMENT OF DOUBLE HELIX FUEL INJECTION PUMP FOR FOUR STROKE V-16 RAIL TRACTION DIESEL ENGINE
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DESIGN AND DEVELOPMENT OF DOUBLE HELIX FUEL INJECTION PUMP FOR FOUR STROKE V-16 RAIL TRACTION DIESEL ENGINE

机译:四冲程V-16轨道牵引柴油机双螺旋加油泵的设计与开发

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The diesel fuel-injection system of ALCO DLW 251 engine consists of single cylinder injection pumps, delivery pipes, and fuel injector nozzles. Fuel injection into the combustion chamber through multi-hole nozzles delivers designed power and fuel efficiency. The two most important variables in a fuel injection system of a diesel engine are the injection pressure and injection timing. Proper timing of the injection process is essential for satisfactory diesel engine operation and performance. Injection timing needs to be optimised for an engine based on requirements of power, fuel economy, mechanical and thermal loading limitations, smoke and emissions etc. Since each of these requirements varies with the operating conditions, sometimes contrary to the requirements of the other parameters, the map of optimised injection timing can be very complex. The ALCO DLW 251 engine's fuel injection pump is jerk type to permit accurate metering and timing of the fuel injected. The pump has a ported barrel and constant-stroke plunger incorporating a bottom helix for fuel delivery control with constant injection timing. From the point of view of good power and fuel economy, combustion should take place so that the peak firing pressure occurs at about 10-15° after TDC and is usually a few degrees after combustion starts. For this to happen, fuel should be injected at an appropriate time, depending on Injection delay and Ignition delay. Both these factors are dependent on the speed and load. Changing the operating point of the engine may change either one or both types of delay, altering the moment of start of combustion. Various researchers have shown that both the Injection and the Ignition delay are reduced as the engine speed is decreased resulting in advancement of injection timing at lower speeds (and loads). This condition will be corrected by varying the static injection timing, which can be achieved by providing a modified helix on the plunger to delay the start of fuel injection, for the lower speeds and loads. A new double helix (upper and lower helix) fuel injection pump for the ALCO DLW 251 16 V engine has been designed. The new fuel injection pump has been tested on the engine test cell at Research Designs & Standards Organisation and has shown an improvement of 1.2% in locomotive duty cycle fuel consumption. This paper describes the design & development of double helix fuel injection pump and discusses the engine tests completed to verify the projected improvements in fuel efficiency.
机译:ALCO DLW 251发动机的柴油喷射系统由单缸喷射泵,输送管和喷油嘴组成。通过多孔喷嘴将燃料喷射到燃烧室中可提供设计的功率和燃料效率。柴油发动机的燃料喷射系统中两个最重要的变量是喷射压力和喷射正时。喷射过程的正确时机对于令人满意的柴油机运行和性能至关重要。需要根据功率,燃油经济性,机械和热负荷限制,烟尘和排放等方面的要求对发动机的喷射正时进行优化。由于这些要求中的每一项都会随操作条件而变化,有时与其他参数的要求相反,优化的喷射正时图可能非常复杂。 ALCO DLW 251发动机的燃油喷射泵为急动型,可精确计量和定时喷射燃油。该泵具有带端口的枪管和恒定冲程柱塞,该柱塞具有底部螺旋,用于在恒定喷射正时下进行燃料输送控制。从良好的功率和燃料经济性的角度出发,应进行燃烧,以使峰值燃烧压力出现在TDC之后约10-15°,通常在燃烧开始后几度。为此,应根据喷射延迟和点火延迟在适当的时间喷射燃料。这两个因素都取决于速度和负载。改变发动机的工作点可以改变一种或两种类型的延迟,从而改变燃烧的开始时刻。各种研究人员表明,随着发动机转速的降低,喷射和点火延迟都减小,从而导致在较低速度(和载荷)下喷射正时提前。这种情况将通过改变静态喷射正时来纠正,对于较低的速度和负载,可以通过在柱塞上设置一个改进的螺旋线以延迟燃料喷射的开始来实现,从而实现这一目的。设计了用于ALCO DLW 251 16 V发动机的新型双螺旋(上下螺旋)燃油喷射泵。新型燃油喷射泵已经在Research Designs&Standards Organization的发动机测试单元上进行了测试,并且显示出机车占空比燃料消耗降低了1.2%。本文介绍了双螺旋燃油喷射泵的设计与开发,并讨论了已完成的发动机测试,以验证燃油效率的预期提高。

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