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Numerical analysis of flow dynamics for two piston bowl designs at different spray angles

机译:两种活塞碗设计在不同喷射角度下的流动动力学数值分析

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摘要

The main objective of the present study is to find the need of technology transformation from hemispherical bowl piston geometry to re-entrant piston bowl geometry. The two different piston bowl geometries were examined by the application of different spray angles. The NO and Soot emission characteristics for both geometries were measured and performance parameters were also evaluated to justify the use of geometry as a part of combustion study. A commercial CFD simulation software AVL FIRE was used to evaluate re-entrant and hemispherical bowl piston geometry. Easily available hemispherical bowl piston geometry of Kirloskar single cylinder diesel engine was used for comparison and validation purpose. The effect of spray angles such as 120 degrees, 140 degrees and 160 degrees tested on both geometry, while comparison has drawn for emissions and performance parameters. Results indicated that, NO and Soot mass fraction of 120 degrees and 160 degrees spray angle is lowest respectively. Whereas, NO emissions are reduced to 66% at 120 degrees spray angle in case of a Re-entrant piston bowl than hemispherical bowl piston geometry. However, the soot mass fraction shows same response for both geometry at 160 degrees spray angle. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本研究的主要目的是发现从半球形碗形活塞几何形状向凹腔活塞形几何形状转变的技术需求。通过使用不同的喷雾角度检查了两种不同的活塞碗几何形状。测量了两种几何结构的NO和烟尘排放特性,并对性能参数进行了评估,以证明使用几何结构作为燃烧研究的一部分是合理的。使用商用CFD模拟软件AVL FIRE评估凹腔和半球形碗形活塞的几何形状。比较容易使用的Kirloskar单缸柴油发动机的半球形碗形活塞几何形状进行比较和验证。测试了喷射角度(例如120度,140度和160度)对两种几何形状的影响,同时比较了排放和性能参数。结果表明,NO和烟灰质量分数分别为120度和160度喷雾角最低。相对于半球形碗形活塞,在凹腔式活塞碗中,在120度喷雾角下,NO排放降低到66%。但是,对于两种几何形状,在160度喷雾角下,烟灰质量分数都显示出相同的响应。 (C)2017 Elsevier Ltd.保留所有权利。

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