A computational investigation into the effects of piston bowl geometry on fuel-air mixing and performance in a high-intensified diesel engine

Dong Hu, Guo-xiu Li, Yusong Yu
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引用次数: 1

Abstract

A computational investigation is performed to evaluate the effects of piston bowl geometry on fuel-air mixing and engine performance in a high-intensified diesel engine. Fourteen different shapes of diesel engine piston bowl are selected and simulated by CFD FIRE. The main results suggest that an optimal value exist to maximize indicated power, respectively, of piston bowl diameter, re-entrant angle and bowl bottom radius. Piston bowl diameter and bowl bottom radius are found to have a more significant impact on performance than re-entrant angle. Because variations of piston bowl diameter and bowl bottom radius are found to have a bigger effect on piston bowl geometry, which mainly affect fuel-air mixing process near bowl side-wall and bottom of central convexity, resulting in marked effects on combustion process and performance. This study underlines the need to carefully consider fuel-air mixing process induced by piston bowl geometry.
高强度柴油机活塞碗形结构对燃油空气混合及性能影响的计算研究
采用数值计算方法,研究了高强度柴油机活塞碗形结构对燃油空气混合及发动机性能的影响。采用CFD FIRE对14种不同形状的柴油机活塞碗进行了数值模拟。主要结果表明,活塞碗直径、再入角和碗底半径分别存在一个使指示功率最大化的最优值。发现活塞碗直径和碗底半径比回入角对性能的影响更显著。由于活塞碗直径和碗底半径的变化对活塞碗几何形状的影响较大,主要影响燃料-空气混合过程靠近碗侧壁和中心凸起底部,从而对燃烧过程和性能产生显著影响。这项研究强调需要仔细考虑活塞碗几何形状引起的燃料-空气混合过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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