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Estimation of in-cylinder laminar flame speed from experimental data using two-zone combustion simulation of a spark ignition engine

机译:使用火花点火发动机的两区燃烧模拟从实验数据估算缸内层流火焰速度

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摘要

An important intrinsic property of a combustible fuel, air, and burned gas mixture is its laminar burning velocity. The effect of laminar burning velocity on combustion is difficult to assess experimentally due to the difficulty in the measurement. In this study, an approach which uses the incylinder pressure traces, temperature and other in-cylinder variables for estimating the laminar burning velocity of a spark ignition engine is developed. In this model the flame velocity is calculated by quasi dimensional two zone thermodynamic combustion simulation. Laminar flame speed over a range of engine loads and at rated speed on a Royal Enfield single cylinder 350cc port fuel injected spark ignition engine are estimated and evaluated using available data given in the literature. For simulation, a code has been developed in MATLAB for computational speed and acceptable accuracy.
机译:可燃燃料,空气和已燃气体混合物的重要内在属性是其层流燃烧速度。由于测量的困难,层流燃烧速度对燃烧的影响难以通过实验来评估。在这项研究中,开发了一种方法,该方法利用气缸压力迹线,温度和其他气缸内变量来估算火花点火发动机的层流燃烧速度。在该模型中,通过准二维两区热力学燃烧模拟计算火焰速度。使用文献中提供的可用数据估算和评估在一定范围的发动机负载下以及在皇家恩菲尔德(Royal Enfield)单缸350cc端口燃油喷射式火花点火发动机上的层流火焰速度。为了进行仿真,已经在MATLAB中开发了代码,以提高计算速度和可接受的精度。

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