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Optimized Number of Intake Runner Guide Vanes to Improve In-Cylinder Airflow Characteristics of CI Engine Fuelled by Higher Viscous Fuels

机译:优化的进气旋流器导叶片以改善CI发动机的缸内气流特性,由更高的粘性燃料加油

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The performance of a compression ignition (CI) engine run with alternative fuel is inferior to when it is run with petro-diesel resulting in lower power, higher fuel consumption and higher carbon deposits. This is due to the poorer properties of the alternative fuel for the CI engine compared to petro-diesel, for instance, higher viscosity. Due to this factor, this research has grouped these fuels as higher viscous fuels (HVFs). In order to solve or reduce the problem of higher viscosity, this paper presents research that has sought to improve the in-cylinder airflow characteristics by using a guide vane so that the evaporation, diffusion, mixing and combustion processes can be stimulated eventually improving or at least reducing the problem. The in-cylinder airflow was studied using ANSYSCFX with the help of SolidWorks. Firstly, the validated base model replicated from the generator of a CI engine was prepared. Then, 10 guide vane models with various numbers of vanes were adapted to simulate the in-cylinder airflow characteristics. The results of in-cylinder turbulence kinetic energy (TKE) and velocity were presented and discussed. This research found that four vanes was the optimized number of vanes since it improved approximately 10% of the average in-cylinder TKE and approximately 20% of the average in-cylinder velocity.
机译:与替代燃料的压缩点火(CI)发动机运行的性能差时,它与导致较低的功率石油柴油,更高的燃料消耗和较高的碳沉积物运行。这是由于为相对于石油柴油的发动机CI,例如,较高粘度的替代燃料的较差的性能。由于这个因素,该研究已分组这些燃料作为较高粘性燃料(HVFs)。为了解决或减少较高粘度的问题,本文提出查询已经寻求通过使用导向叶片,以提高气缸内的气流特性,以使蒸发,扩散,混合和燃烧过程可以刺激最终改善或在至少降低的问题。使用ANSYSCFX与SolidWorks的帮助下,缸内气流进行了研究。首先,从CI发动机的发电机复制的验证基础模型制备。然后,随着叶片的各种数目的10导向叶片模型适于模拟缸内气流特性。缸内紊流动能(TKE)和速度的结果进行了介绍和讨论。本研究发现,四个叶片是叶片的最优数量,因为它提高了平均缸内TKE的约10%,并且平均缸内速度的大约20%。

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