由实验得到的包封 火焰厚度 ( flame thickness )与火焰跳距距离(stand-off distance)发现低于数值模拟,至于由实验得到的尾焰方位角(attached angle)是高于数值模拟。
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The result shows that the barriers and plastic film used in the experiment have a great influence on the flame thickness.
通过运用自行设计的火焰加速系统,文章研究了立体结构障碍物对预混甲烷火焰传播过程中火焰传播速度和超压的影响。
In the test, the measured flame thickness and the range of variation are both larger than that calculated by static flame model. The results obtained are of great advantage for fu...
在本实验条件下所测得的实际火焰厚度较厚,而且变化范围较大,其厚度比按传统的静态火焰模型计算出的结果大得多。
For the three-zone model, a set of coupled correlations has been derived to describe the effect of pressure and temperature on the laminar burning velocity and the laminar flame thickness.
对于三区模型,加上相关的衍生了一套描述的压力和温度的层流燃烧速度和火焰层厚度的影响。
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