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首页> 外文期刊>Journal of Energy Engineering >Potentialities of a Common Rail Injection System for the Control of Dual Fuel Biodiesel-Producer Gas Combustion and Emissions
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Potentialities of a Common Rail Injection System for the Control of Dual Fuel Biodiesel-Producer Gas Combustion and Emissions

机译:共轨喷射系统用于控制双燃料生物柴油生产商的气体燃烧和排放的潜力

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This paper conducts an extensive experimental campaign for dual fuel biodiesel-producer gas combustion development and the related pollutant emissions and reports the results with the aim of highlighting the effect of biodiesel pilot injection parameters. For this purpose, a common rail diesel research engine was converted to operate in dual fuel mode; the gaseous fuel was introduced into the engine through an indirect injector housed well upstream of the engine intake duct; and the composition of the gaseous fuel simulating the producer gas was obtained using a mixing system able to generate a gaseous mixture of carbon monoxide (CO), hydrogen (H_2), and nitrogen (N_2) with the desired amount for each of them. The biodiesel pilot injection required to ignite the gaseous fuel was instead sprayed into the cylinder using a common rail high-pressure injection system. During tests, the biodiesel injection amount, pressure, and advance were varied on several levels, together with the composition and amount of gaseous fuel. The cylinder pressure was sampled and, from it, heat release rate and indicated mean effective pressure were estimated. Moreover, gaseous pollutant emissions at the exhaust were measured. The results demonstrate that biodiesel pilot injection parameters are crucial to control the development of combustion and emission levels when the engine is operated in dual fuel biodiesel-producer gas mode. Therefore, the potentialities of the common-rail high-pressure injection system may be developed to optimize as much as possible the operation of such engines in terms of power output, increase in combustion efficiency, and reduction of environmental impact.
机译:本文针对双燃料生物柴油生产商的气体燃烧发展及相关污染物排放开展了广泛的实验活动,并报告了结果,目的是强调生物柴油中试喷射参数的影响。为此,共轨柴油研究引擎被转换为以双燃料模式运行。气态燃料通过位于发动机进气管上游的间接喷油器引入发动机。并使用能够产生一氧化碳(CO),氢气(H_2)和氮气(N_2)的气态混合物的混合系统来获得模拟产生气的气态燃料的成分,每种气态混合物具有所需的量。相反,使用共轨高压喷射系统将点燃气体燃料所需的生物柴油先导喷射喷射到气缸中。在测试过程中,生物柴油的注入量,压力和提前量会随气体燃料的组成和量在几个级别上变化。采样气缸压力,并据此估算出放热率和指示的平均有效压力。此外,还测量了废气中的气态污染物排放。结果表明,当发动机以双燃料生物柴油-生产者气体模式运行时,生物柴油先导喷射参数对于控制燃烧和排放水平的发展至关重要。因此,可以开发共轨高压喷射系统的潜力,以在功率输出,增加燃烧效率和减少环境影响方面尽可能地优化这种发动机的运行。

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