首页> 外文期刊>International journal of automobile engineering research and development >INFLUENCE OF INJECTION TIMING ON PERFORMANCE PARAMETERS AND COMBUSTION CHARACTERISTICS OF HIGH GRADE SEMI ADIABATIC DIESEL ENGINE WITH COTTON SEED BIODIESEL
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INFLUENCE OF INJECTION TIMING ON PERFORMANCE PARAMETERS AND COMBUSTION CHARACTERISTICS OF HIGH GRADE SEMI ADIABATIC DIESEL ENGINE WITH COTTON SEED BIODIESEL

机译:喷射正时对棉籽生物柴油中高绝热绝热柴油机性能参数及燃烧特性的影响

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Biodiesel obtained from feed stocks of vegetable oils are important substitutes of diesel fuel, as they are renewable and biodegradable. However, with moderate viscosity and low volatility of biodiesel cause combustion problems in CI engines, call for hot combustion chamber engines, which provide hot environment for burning moderate viscous biodiesel fuels. With cotton seed biodiesel investigations were carried out to evaluate the performance of low heat rejection combustion chamber. It consisted of an air gap insulated piston with superni (an alloy of nickel) crown, an air gap insulated liner with superni insert and ceramic coated cylinder head with cotton seed biodiesel with varied injection timing. Performance parameters of brake thermal efficiency, brake specific energy consumption, exhaust gas temperature, coolant load and volumetric efficiency were determined at full load operation of the engine. At full load operation of the engine Combustion characteristics of peak pressure, maximum rate of pressure rise and time of occurrence of peak pressure were evaluated by means of Piezo electric transducer, TDC encoder and special pressure-crank angle software package. The optimum injection timing for conventional engine (CE) and LHR combustion chamber were 31° bTDC and 28° bTDC (before top dead centre) respectively with biodiesel. Comparative studies were made at manufacturer's recommended injection timing (27°bTDC) and optimum injection timing with biodiesel operation for CE and engine with LHR combustion chamber. Engine with LHR combustion chamber with biodiesel showed improved performance and combustion characteristics at 27°bTDCand at optimum injection timing over CE.
机译:从植物油原料中获得的生物柴油是柴油的重要替代品,因为它们具有可再生性和生物可降解性。然而,具有中等粘度和低挥发性的生物柴油会引起CI发动机的燃烧问题,因此需要热燃烧室发动机,该发动机为燃烧中等粘度的生物柴油提供了热环境。用棉籽生物柴油进行了研究,以评估低排热燃烧室的性能。它由一个带superni(镍合金)冠的气隙绝热活塞,一个带superni插入物的气隙绝热衬套和一个带有棉籽生物柴油的陶瓷涂层汽缸盖组成,并带有可变的注入时间。在发动机满负荷运行时,确定了制动器热效率,制动器比能耗,排气温度,冷却液负荷和容积效率的性能参数。在发动机满负荷运行时,通过压电传感器,TDC编码器和特殊的压力曲轴角度软件包评估了峰值压力的燃烧特性,最大升压速率和峰值压力出现的时间。常规发动机(CE)和LHR燃烧室的最佳喷射正时分别为31°bTDC和28°bTDC(在上死点之前)和生物柴油。在CE和带有LHR燃烧室的发动机的生物柴油操作下,以制造商建议的喷射正时(27°bTDC)和最佳喷射正时进行了对比研究。带有生物柴油的LHR燃烧室的发动机在27°bTDC时以及在超过CE的最佳喷射正时下均具有改进的性能和燃烧特性。

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