基于有限元分析的CI直喷发动机活塞碗几何结构CFD分析

P. P. Varma, K. Subbaiah
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引用次数: 0

摘要

氮氧化物和烟尘排放是柴油机压缩点火(CI)的主要问题,增加燃料和空气的多样性可以提高内燃机的性能。有几种方法可以提高气缸内空气燃料的多样性。改变活塞碗的几何形状是改善空燃混合气的方法之一。本文提出了活塞碗几何形状对直喷柴油机性能和排放的影响,利用计算机辅助设计与绘制(CADD)工具设计了半球形燃烧室(HCC)、环形燃烧室(TCC)和浅深度燃烧室(SCC)的不同形状的活塞碗,并采用ANSYS workbench进行了分析。此外,Karanja油以不同的体积分数(如0.2%、0.3%和0.4%)与基础流体柴油混合,并计算其组合性能。此外,理论计算被用来确定纳米流体的性质,这些性质后来被用作分析的输入。最后对不同流体体积分数下的不同几何形状进行CFD分析,并对碳纤维、酰胺纤维等不同复合材料的活塞碗几何形状进行热分析。
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CFD Analysis of piston bowls geometry for CI direct injection engine using finite element analysis
Both NOx and soot emissions are major concerns in compression ignition (CI) engine with diesel fuel and the enhancement of variety of fuel and air can increase the performance of combustion engine. There are several methods to enhance the variety of air-fuel within the cylinder. Altering the geometry of piston bowl is one of the methods to improve the air-fuel mixture. This article proposes the effect of piston bowl geometry on the direct injection diesel engine performance and emissions, where various profiles of piston bowl referred as hemispherical combustion chamber (HCC), toroidal combustion chamber (TCC) and shallow depth combustion chamber (SCC) are designed using computer aided design and drafting (CADD) tool and ANSYS workbench is adopted for analysis. In addition, Karanja oil mixed with base fluid diesel at different volume fractions like0.2%, 0.3% and 0.4% and are calculated for their combination properties. Further, theoretical calculations are considered to determine the properties of Nano fluids which are later used as inputs for the analysis. Finally, CFD analysis is employed on different geometries at different fluid volume fractions and thermal analysis is done for piston bowl geometries with different composite materials like carbon fiber and armide fiber.
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