首页> 外文会议>ASME Internal Combustion Engine Division fall technical conference 2011 >AN EXPERIMENTAL INVESTIGATION OF HYDROGEN FUMIGATION IN A SMALL DIRECT-INJECTION DIESEL ENGINE DURING PART-LOAD OPERATION
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AN EXPERIMENTAL INVESTIGATION OF HYDROGEN FUMIGATION IN A SMALL DIRECT-INJECTION DIESEL ENGINE DURING PART-LOAD OPERATION

机译:小负荷柴油机部分负荷运行过程中氢烟气的实验研究

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Hydrogen enrichment may offer enhanced performance of internal combustion engines. Hydrogen's high specific energy, wide flammability limits, and high flame speed are all desirable traits that can potentially enhance combustion. However, hydrogen's low energy density and its need to be produced from another energy source pose significant challenges for implementation. Hydrogen enrichment involves co-firing of hydrogen and another primary fuel. The hydrogen can be aspirated through the intake manifold via fumigation or injected at the port or cylinder with the primary fuel. The effect of hydrogen fumigation in diesel engines has been studied to some degree but is not fully understood. In this research, a single-cylinder four-stroke direct-injection diesel engine was modified for hydrogen fumigation and was instrumented to monitor combustion related performance parameters. This engine is representative of low-cost systems that are widely used in developing nations for agricultural and other low power applications. A factorial design of experiments was implemented to study the effects and interactions of hydrogen fumigation flow rate, injection timing, and diesel fuel flow rate on part-load engine performance. At relatively low energy fractions, hydrogen was found to have statistically insignificant effects on brake torque and indicated mean effective pressure, leading to modest decreases in brake thermal efficiency. Exhaust gas temperature increased with hydrogen enrichment. The coefficient of variance of indicated mean effective pressure decreased with hydrogen enrichment, and visible changes to the in-cylinder pressure trace were observed, particularly when injection timing was retarded. The results of this investigation show that for this specific configuration, hydrogen enrichment is not beneficial to the combustion process. The marginal improvements in coefficient of variance and changes of in-cylinder pressure cannot justify the decrease in thermal efficiency of the engine.
机译:氢浓缩可以提高内燃机的性能。氢的高比能,宽的可燃性极限和高的火焰速度都是可以潜在地增强燃烧的理想特性。然而,氢的低能量密度及其从另一种能源生产的需求给实施带来了重大挑战。氢浓缩涉及氢与另一种主要燃料的共烧。氢可以通过熏蒸从进气歧管中吸出,或者与主要燃料一起在进气口或气缸中注入。已经对柴油机中氢熏蒸的影响进行了一定程度的研究,但尚未完全了解。在这项研究中,对单缸四冲程直喷柴油机进行了氢熏蒸改造,并用于监测燃烧相关的性能参数。该引擎代表了低成本系统的代表,这些低成本系统在发展中国家广泛用于农业和其他低功率应用。进行了析因设计实验,以研究氢熏蒸流速,喷射正时和柴油流速对部分负荷发动机性能的影响和相互作用。在相对较低的能量分数下,发现氢气对制动扭矩的影响不显着,并显示出平均有效压力,从而导致制动热效率适度下降。废气温度随氢气富集而增加。指示的平均有效压力的方差系数随着氢的富集而降低,并且观察到缸内压力曲线的可见变化,特别是在延迟喷射时间时。研究的结果表明,对于这种特定的配置,富氢对燃烧过程没有好处。方差系数和缸内压力变化的边际改进不能证明降低发动机热效率是合理的。

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