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In-cylinder temperature field measurement with laser shearing interferometry for spark ignition engines

机译:火花点火发动机的激光剪切干涉法测量缸内温度场

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The temperature field in combustion chamber of spark ignition engine is measured using laser shearing interferometry and high-speed photography in this paper. A set of experimental facility is set up. The relationship equation between the interference fringe image and temperature distribution is deduced. Changing the shearing interferometry quantity, the two-dimensional temperature field of engine combustion chamber and flame propagation can be measured quantitatively by image processing. The test results indicate that the shearing interferometric method has a strong vibration resistance, and a simple and reliable optical path. The temperature distribution and the temperature gradient are different in different zones. The temperature is highest in the burning zone and the temperature gradient is large. The temperature is lower in the burned zone and the temperature gradient is smaller. The temperature is lowest in the unburned zone but the temperature gradient is large. At the initial period of combustion, the flame propagation velocity is low. In the combustion process, the flame front in the approximate spherical shape pushes toward the unburned zone, and the flame propagation velocity starts to decrease. It rapidly increases until it reaches the maximum value as the combustion process going on, and then it gradually decreases until it has burned in the entire combustion chamber. (C) 2006 Elsevier Ltd. All rights reserved.
机译:本文利用激光剪切干涉法和高速摄影技术测量了火花点火发动机燃烧室的温度场。建立了一套实验设备。推导了干涉条纹图像与温度分布之间的关系方程。改变剪切干涉量,可以通过图像处理定量地测量发动机燃烧室的二维温度场和火焰传播。测试结果表明,剪切干涉法具有较强的抗振能力,光路简单可靠。不同区域的温度分布和温度梯度不同。燃烧区的温度最高,温度梯度大。燃烧区的温度较低,温度梯度较小。在未燃烧区,温度最低,但温度梯度大。在燃烧的初始阶段,火焰传播速度较低。在燃烧过程中,近似球形的火焰锋向未燃烧区域推动,火焰传播速度开始降低。随着燃烧过程的进行,它迅速增加直到达到最大值,然后逐渐减小直到在整个燃烧室中燃烧为止。 (C)2006 Elsevier Ltd.保留所有权利。

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