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Influence of Varying Height of Guide Vanes on the Performance of a Diesel Engine Run with Biodiesel

机译:导叶片不同高度对生物柴油柴油机运行柴油机性能的影响

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Diesel engine can be run with biodiesel which has the potential to supplement the receding supply of crude oil. As biodiesel possess similar physiochemical properties to diesel, most diesel engines can run with biodiesel with minimum modifications. However, the viscosity of biodiesel is higher, and the calorific value is lower than diesel. Therefore, when biodiesel is used in diesel engines, it is usually blended with diesel at different proportions. Use of 100% biodiesel in diesel engines shows inferior performance of having lower power and torque. Improving in-cylinder airflow characteristic to break down higher viscous biodiesel and to improve air-fuel mixing are the aims of this research. Therefore, guide vanes in the intake runner were used in this research to improve the performance of diesel engine run with biodiesel. Previous research done by the authors using CFD cold flow simulations (no combustion) showed an improvement of air-biodiesel mixing with guide vanes installed into the intake runner in a diesel engine. In this research, vane height was varied experimentally to find the effect of vane height on the performance of a CI engine run with biodiesel. Subsequently, five guide vanes models with varied vane height were fabricated and tested. The other parameters of the vanes such as angle, length and number were kept constant at 35°, three times the radius of the intake runner and four. The results of brake specific fuel consumptions, engine efficiency and engine torque of the CI engine run with all five guide vane models of varied vane height were then compared with the one having no guide vanes. Generally, a reduction of BSFC and increment of engine efficiency were observed when the CI engine was run with guide vanes as compared to the one without guide vanes while the torques were remained same for both cases.
机译:柴油发动机可以与生物柴油一起运行,有可能补充原油的后退供应。由于生物柴油对柴油具有相似的物理化学性质,大多数柴油发动机可以用生物柴油与最低修改一起运行。然而,生物柴油的粘度较高,热值低于柴油。因此,当生物柴油用于柴油发动机时,通常以不同比例与柴油混合。在柴油发动机中使用100%生物柴油显示出具有较低功率和扭矩的劣质性能。改善缸内气流特性以破裂更高的粘性生物柴油,并改善空气燃料混合是该研究的目的。因此,在本研究中使用了进气跑步者中的导叶,以提高柴油机运行与生物柴油的性能。以前使用CFD冷流模拟(无燃烧)的作者完成的研究表明,在柴油发动机中安装到进气流仪中的导叶片的空气生物柴油混合的改善。在本研究中,叶片高度实验地改变,以找到叶片高度对具有生物柴油的CI发动机的性能的影响。随后,制造和测试了五种具有变化的叶片高度的叶片型号。叶片如角度,长度和数量等的其他参数在35°保持恒定,进气跑器半径的三倍和四倍。然后将制动器特定燃料消耗,发动机效率和发动机扭矩与不同的叶片高度的所有五种导向叶片型号进行了相同的变化叶片的模型。通常,当与没有引导叶片的导叶相比,当CI发动机与导叶片相比,在扭矩保持相同的情况下,当扭矩相同时,观察到BSFC的降低和发动机效率的增量。

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