Operational Control of Power Indicators of Diesel Engines with Common Rail Fuel System

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY
F. Safin, Radik M. Bashirov, A. Negovora, Sergey K. Korabelnikov, N. Rakov
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Abstract

Introduction. Operational methods to monitor the power indicators of engines for continuous diagnosis of their technical condition are of particular interest for creating optimal operating conditions of motor and tractor machinery. The methods are characterized by the mechanical efficiency, determined in the conditions of repair shops with the use of complex braking devices. Aim of the Article. To present the results of research on the development of an operational method for determining the mechanical efficiency of diesel engines with batteryoperated electronically controlled fuel supply systems. Materials and Methods. The Bashkir State Agrarian University proposed and successfully tested an operational method for assessing the technical condition of diesel engines with direct-acting fuel equipment on their mechanical efficiency, which is determined by the performance of their fuel equipment adjusted using the diesel itself as an adjusting stand. The possibility of using the proposed method for diesel engines with storage fuel systems was investigated. Results. The accuracy of determining the mechanical efficiency of diesel engines by electronically controlled fuel systems of battery type can be affected by the features of their work – the correction of cyclic feeds by the electronic engine control unit depending on the technical condition of the cylinders and high fuel injection pressure. To test this hypothesis, there were carried out studies on a four-cylinder D4EA 2.0 engine of a Hyundai Tuscon car with a Common Rail type storage fuel system. The engine fuel supply system was supplemented with an electronic unit integrated between the injector and the standard engine control unit, which interrupted the transmission line of the control signal to the injector according to a given algorithm without the standard unit transition to emergency mode. It has been found that the proposed method can successfully determine the technical condition of the engine as a whole and of its individual cylinders (alternating disabled and working cylinders). Discussion and Conclusion. The proposed operational method for determining the mechanical efficiency can be successfully used for diesel engines with accumulator electronically controlled fuel supply systems. At the same time, an increase in the cyclic supply by the electronic control unit of the engine fuel supply system reduces the mechanical efficiency slightly, and it can be taken into account only in special cases.
共轨燃油系统柴油机功率指标的运行控制
介绍。监测发动机功率指标以连续诊断其技术状况的操作方法对于创造电机和拖拉机机械的最佳操作条件特别感兴趣。该方法的特点是机械效率高,在维修车间的条件下确定使用复杂的制动装置。文章的目的。介绍一种用于确定电池驱动的电控燃料供应系统的柴油发动机机械效率的操作方法的发展研究结果。材料与方法。巴什基尔国立农业大学提出并成功测试了一种操作方法,用于评估具有直接作用燃料设备的柴油发动机的技术状况,其机械效率取决于使用柴油本身作为调整支架调整的燃料设备的性能。研究了将该方法应用于具有储油系统的柴油机的可能性。蓄电池式电控燃油系统确定柴油机机械效率的准确性受到其工作特性的影响——电控发动机控制单元根据气缸的技术条件和高喷油压力对循环进料进行校正。为了验证这一假设,对采用共轨式存储燃料系统的现代Tuscon轿车的4缸D4EA 2.0发动机进行了研究。在发动机供油系统中增加一个集成在喷油器和发动机标准控制单元之间的电子单元,使控制信号按照给定的算法中断到喷油器的传输线,而标准单元没有切换到应急模式。结果表明,所提出的方法可以成功地确定发动机整体和各个气缸(交替停用和工作气缸)的技术状况。讨论与结论。所提出的确定机械效率的操作方法可成功地用于具有蓄能器电控供油系统的柴油机。同时,发动机供油系统电控单元循环供油量的增加会使机械效率略有降低,只有在特殊情况下才可以考虑。
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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
29
审稿时长
12 weeks
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