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Modeling for combined effect of muffler geometry modification and blended fuel use on exhaust performance of a four stroke engine: A computational fluid dynamics approach

机译:消声器几何形状修改和混合燃料使用对四冲程发动机排气性能的综合影响建模:一种计算流体动力学方法

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A computational fluid dynamic model is developed to study the effect of muffler geometry modification on key exhaust parameters of an engine. Such engine is powered with blend of methanol and petrol. The muffler geometry such as: chambered straight (CS), chambered elliptic (CE), turbo straight (TS) and turbo elliptic (TE) are designed for analysis. The combined effect of muffler geometry modification and blended fuel use on back pressure, chamber temperature and velocity are discussed in detail. The result shows that the chambered elliptic muffler using B5 (5% methanol) developed least exhaust temperature. Whereas, the gas density is least in case of turbo elliptic muffler using B15 (15% methanol). Finally the velocity is highest in case of chambered elliptic muffler using B5 blend. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了计算流体动力学模型,以研究消声器几何形状修改对发动机关键排气参数的影响。这种发动机由甲醇和汽油的混合物驱动。消音器的几何形状例如:直室(CS),长室椭圆(CE),涡轮直管(TS)和涡轮椭圆(TE)设计用于分析。详细讨论了消声器几何形状修改和混合燃料使用对背压,燃烧室温度和速度的综合影响。结果表明,使用B5(5%甲醇)的带腔椭圆消声器的排气温度最低。而使用B15(15%甲醇)的涡轮椭圆消声器的气体密度最低。最后,在使用B5混合的椭圆形消声器的情况下,速度最高。 (C)2016 Elsevier Ltd.保留所有权利。

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