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Spatial Development and Temperature of Spark Kernels Exiting into Quiescent Air

机译:进入静止空气的火花核的空间发展和温度

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摘要

Measurements of the spatial development and temperature of spark kernels are useful for understanding the ignition process in spark ignition and gas turbine engines. Motivated by this, an infrared camera was used to make narrowband radiation intensity measurements of spark kernels exiting into quiescent air. An inverse deconvolution technique was developed to estimate the sensible energy and the path-integrated temperature of the kernels. This technique was evaluated using a sensitivity analysis, comparing results to temperature data obtained using background-oriented schlieren, and using a well-characterized hydrogen flame. Infrared images show that the kernels develop into a toroidal shape after exiting the igniter. The average spatial distribution where radiation from kernels is detected is symmetric. Buoyancy forces are negligible. Regions of high and low radiation intensity are observed in the kernels, indicating temperature gradients within the gases. The radiation intensity emitted by the kernels decreases by more than an order of magnitude after the kernels exit the igniter. The average temperature values decrease by 30 %, and the sensible energy decreases by 80 %, over 2 cm of the spark kernel movement downstream.
机译:火花核的空间发展和温度的测量对于理解火花点火和燃气涡轮发动机的点火过程是有用的。以此为动力,使用红外热像仪对进入静止空气的火花核进行窄带辐射强度测量。开发了一种逆反卷积技术来估计感官能量和内核的路径积分温度。使用敏感性分析对该技术进行了评估,将结果与使用背景定向的纹影笔和特征明确的氢火焰获得的温度数据进行了比较。红外图像显示,核仁在离开点火器后发展成环形形状。检测到来自内核的辐射的平均空间分布是对称的。浮力可以忽略不计。在籽粒中观察到高辐射强度和低辐射强度的区域,表明气体中的温度梯度。玉米粒离开点火器后,玉米粒发出的辐射强度降低了一个数量级以上。在火花核向下游移动2厘米以上时,平均温度值降低了30%,显能降低了80%。

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  • 来源
    《Journal of propulsion and power》 |2012年第3期|p.458-465|共8页
  • 作者单位

    Propulsion Directorate, Building 490, 1950 Fifth Street U.S. Air Force Research Laboratory, Wright-Patterson Air Force Base, Ohio 45433;

    Senior Mechanical Engineer, Propulsion Directorate, Building 490,1950 Fifth Street U.S. Air Force Research Laboratory, Wright-Patterson Air Force Base, Ohio 45433;

    2766 Indian Ripple Road Innovative Scientific Solutions Inc., Dayton, Ohio 45440;

    Propulsion Directorate, Building 490, 1950 Fifth Street U.S. Air Force Research Laboratory, Wright-Patterson Air Force Base, Ohio 45433;

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