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Study of Ethanol-Blended Fuel (E85) Effects Under Cold-Start Conditions

机译:在冷启动条件下研究乙醇混合燃料(E85)效应

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Research was conducted on cold startability with a focus on the vaporization characteristics of ethanol-blended fuel (E85). Cold startability was tested with a conventional gasoline engine with standard calibration data by using gasoline and E85 of which RVP is adjusted to be equivalent to gasoline. The test engine started successfully when the gasoline was used, but failed to start when the E85 was used. A further analysis of this result indicated the fact that E85 displays lower vaporization than gasoline under cold conditions even if the RVP of both fuels are the same. The research determined that the formation of an air-fuel mixture with minimum of 2 vol% fuel concentration is necessary for a successful engine start. The effects of increasing compression ratio and cranking speed as means of enhancing fuel vaporization were investigated and no major impacts ware observed. To enhance the fuel vaporization in a cold environment, two effective methods, increase of injected fuel quantity and usage of a high RVP fuel, were revealed through this research. To keep the same engine startability as the gasoline in a cold environment by using the E85 fuel (ASTM Class-3), about 3 times the quantity of fuel should be injected or RVP of E85 fuel should be adjusted to about 108 kPa. From this research it is concluded that to realize more efficient cold start in terms of fuel consumption, it is necessary to reconsider the RVP standard for cold conditions.
机译:对冷启动性进行了研究,重点是乙醇共混燃料(E85)的蒸发特性。通过使用汽油和汽油和E85使用标准校准数据的传统汽油发动机测试了冷可动性,其中RVP调整为等同于汽油。当使用汽油时,测试引擎开始成功,但使用E85时未开始。对该结果的进一步分析表明,即使两个燃料的RVP都是相同的,E85也表明E85比汽油显示在冷条件下的汽油。研究确定,成功发动机启动是必需的,在最小2体积燃料浓度的情况下,形成空气燃料混合物。调查了压缩比和起动速度作为提高燃料蒸发的手段的影响,并未观察到主要影响。为了增强冷环境中的燃料蒸发,通过这项研究揭示了两种有效的方法,增加了注射燃料量和使用高RVP燃料的使用量。为了通过使用E85燃料(ASTM Class-3)将相同的发动机可动值作为冷环境中的汽油,应注入燃料量的约3倍,或者E85燃料的RVP应调节至约108kPa。从这项研究开始,它的结论是在燃料消耗方面实现更有效的冷启动,必须​​重新考虑RVP标准的冷条件。

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