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首页> 外文期刊>Journal of applied mathematics and mechanics >Cylindrically and spherically symmetrical rapid intense compression of an ideal perfect gas with adiabatic exponents from 1.001 to 3
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Cylindrically and spherically symmetrical rapid intense compression of an ideal perfect gas with adiabatic exponents from 1.001 to 3

机译:绝热指数为1.001至3的理想完美气体的圆柱和球形对称快速强烈压缩

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The problem of the rapid intense cylindrically or spherically symmetrical compression of an ideal (non-viscous and non-heat-conducting) perfect gas with different adiabatic exponents is considered. We mean by rapid and intense a compression in a time much less than the time taken for the sound wave to propagate through the uncompressed target up to temperatures and densities as high as desired. It is found that the solution previously obtained with a focused non-self-similar compression wave at the point where the shock wave is reflected from the axis or centre of symmetry (henceforth the centre of symmetry) holds for adiabatic exponents not exceeding 1.9092 and 1.8698 respectively in the cylindrical and spherical cases. It was not possible to construct a complete solution with focusing at the centre of symmetry for gases with higher adiabatic exponents. On the other hand, one can focus the compression waves into a cylinder or sphere of as small, but finite, radius as desired at the instant of arrival on them, for example, of a special characteristic or reflected shock wave of the Guderley problem. It is shown that for high degrees of compression, the time dependences of the coordinates of the pistons which produce such focusing, and of the gas density on them are close to power laws.
机译:考虑了具有不同绝热指数的理想气体(非粘性和非导热性)的理想气体快速强烈的圆柱形或球形对称压缩的问题。我们指的是快速而强烈的压缩,其压缩时间要比声波通过未压缩目标传播到所需温度和密度所需的时间少得多。可以发现,先前用聚焦非自相似压缩波在冲击波从对称轴或对称中心(以下称对称中心)反射的点处获得的解适用于绝热指数不超过1.9092和1.8698的情况分别在圆柱和球形情况下。对于绝热指数较高的气体,不可能以对称中心为中心来构建完整的解决方案。另一方面,人们可以将压缩波聚焦到圆柱体或球体上,该圆柱体或球体在到达它们的瞬间即具有所需的小半径,但是半径有限,例如,具有古德利问题的特殊特征或反射冲击波。结果表明,对于高度压缩,产生这种聚焦的活塞的坐标与气体密度在时间上的相关性接近幂律。

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