Analysis of Air Flow, Air and Fuel Induction for Internal Combustion Engine

M. Arshad, Muhammad Faris Ahmad, A. Khalid, I. A. Ishak, S. F. Zainal Abidin, M. Razali
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引用次数: 1

Abstract

In an internal combustion engine, performance, efficiency and emission formation depends on the formation of air-fuel mixture inside the engine cylinder. The fluid flow dynamics plays an important role for air-fuel mixture preparation to obtain the better engine combustion, performance and efficiency. This review article discuss the rotating flow (swirl and tumble) in premixed spark-ignition engine and its effect on turbulence generation and flame propagation. Rotating flow can substantially increase turbulence intensity for the duration of the combustion period. This review paper discusses the in-cylinder swirl and tumble flow that affects air induction during the combustion process in internal combustion engine. Alternatively, this study using computer simulation (Computational Fluid Dynamic, CFD) which offer the opportunity to carry out repetitive parameter studies. An integration-type flowmeter (IFM) also has been used which consists of ultrasonic flowmeter, that integrates the flowrate during the intake process, gives accurate measurements regardless of sampling time and frequency. Research parameter in this study was swirl and tumble that represents the fluid flow behavior occurred inside combustion chamber. Fuel injection and air mass also were the important parameters that have been discussed about in air induction process. The results obtain from the numerical analysis can be employed to examine the homogeneity of air-fuel mixture structure for better combustion process and engine performance.
内燃机气流、空气和燃油诱导分析
在内燃机中,性能、效率和排放的形成取决于发动机气缸内空气-燃料混合物的形成。流体流动动力学对空气-燃料混合气制备具有重要作用,以获得更好的发动机燃烧性能和效率。本文综述了预混式火花点火发动机的旋转流动(旋流和翻滚)及其对湍流产生和火焰传播的影响。在燃烧过程中,旋转流动可以大大增加湍流强度。本文讨论了内燃机燃烧过程中影响空气诱导的缸内旋流和翻滚流。另外,本研究使用计算机模拟(计算流体动力学,CFD),它提供了进行重复参数研究的机会。集成式流量计(IFM)由超声波流量计组成,它集成了进气过程中的流量,无论采样时间和频率如何,都能精确测量。本研究的研究参数为代表燃烧室内流体流动特性的旋流和翻滚。喷油量和空气质量也是空气诱导过程中讨论的重要参数。数值分析的结果可用于检测空气-燃料混合结构的均匀性,以改善燃烧过程和发动机性能。
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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