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ELECTRONIC CONTROL OF GENERATOR DIESEL ENGINE

机译:发电机柴油机的电子控制

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摘要

The paper deals with the optimisation process of existing engines and the compilation of data to allow future electronic control of fuel injection. The general trend is towards the development of high-pressure electronic injection with injection pressures exceeding 1500 bar and with the reduced injection tinning. We based our research measurements of diesel engine on the above assumptions. The measurements were undertaken on an engine tester by means of an analyser, charge amplifiers, a needle lift transducer and pressure measuring sensors. Using the measuring instruments we measured the needle lift, injection pressures in the nozzle, combustion pressures, fluctuations of pressure in the charge and exhaust ducts in relation to the crankshaft angle, crank revolutions per minute, preinjection angle and engine loading. Moreover, we measured the fuel consumption, the temperature of cylinders and bridges between valves in the engine. We then calculated the temperature in the engine cylinder and other control characteristics using the simulation programs. The work described in the paper is focused primarily on the complex measurements and their description as well as on the optimisation of the engine along with the production of tables and diagrams illustrating an optimum engine adjustment to individual speeds. With the data thus obtained we could initiate the process of introducing the electronic control of fuel injection.
机译:本文讨论了现有发动机的优化过程和数据汇编,以允许将来对燃油喷射进行电子控制。总的趋势是朝着高压电子喷射技术发展,其喷射压力超过1500 bar并减少了镀锡量。我们基于上述假设对柴油机进行研究。这些测量是通过分析仪,电荷放大器,针升传感器和压力测量传感器在发动机测试仪上进行的。使用测量仪器,我们测量了针升力,喷嘴中的喷射压力,燃烧压力,进排气管中的压力相对于曲轴转角,每分钟曲轴转数,预喷射角和发动机负载的波动。此外,我们还测量了燃油消耗量,气缸温度以及发动机气门之间的桥梁。然后,我们使用模拟程序计算了发动机气缸中的温度和其他控制特性。本文中描述的工作主要集中在复杂的测量及其描述以及发动机的优化以及表格和图表的生成上,这些表格和图表说明了针对各个速度的最佳发动机调整。利用由此获得的数据,我们可以启动引入燃油喷射电子控制的过程。

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