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Flow of supersonic jets across flat plates: Implications for ground-level flow from volcanic blasts

机译:超音速射流在平板上的流动:对火山爆发的地平面流动的影响

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摘要

We report on laboratory experiments examining the interaction of a jet from an overpressurized reservoir with a canonical ground surface to simulate lateral blasts at volcanoes such as the 1980 blast at Mount St. Helens. These benchmark experiments test the application of supersonic jet models to simulate the flow of volcanic jets over a lateral topography. The internal shock structure of the free jet is modified such that the Mach disk shock is elevated above the surface. In elevation view, the width of the shock is reduced in comparison with a free jet, while in map view the dimensions are comparable. The distance of the Mach disk shock from the vent is in good agreement with free jet data and can be predicted with existing theory. The internal shock structures can interact with and penetrate the boundary layer. In the shock-boundary layer interaction, an oblique shock foot is present in the schlieren images and a distinctive ground signature is evident in surface measurements. The location of the oblique shock foot and the surface demarcation are closely correlated with the Mach disk shock location during reservoir depletion, and therefore, estimates of a ground signature in a zone devastated by a blast can be based on the calculated shock location from free jet theory. These experiments, combined with scaling arguments, suggest that the imprint of the Mach disk shock on the ground should be within the range of 4–9 km at Mount St. Helens depending on assumed reservoir pressure and vent dimensions.
机译:我们报告了实验室实验,该实验研究了超压储层射流与规范地面之间的相互作用,以模拟火山的侧向爆炸,例如1980年圣海伦斯山的爆炸。这些基准实验测试了超音速喷射模型在模拟横向地形上的火山喷流的应用。改变了自由射流的内部冲击结构,以使马赫盘冲击在表面上方升高。在立面视图中,与自由射流相比,冲击的宽度减小了,而在地图视图中,尺寸是可比的。马赫盘冲击波到通风口的距离与自由射流数据非常吻合,可以用现有理论进行预测。内部冲击结构可以与边界层相互作用并穿透边界层。在激波边界层相互作用中,斜纹图像中存在倾斜的激波脚,并且在表面测量中明显的地面特征明显。倾斜震脚的位置和地表分界与储层枯竭过程中的马赫盘震荡位置密切相关,因此,可以根据自由射流计算得出的震荡位置来估算爆炸破坏区域的地面特征理论。这些实验结合比例论证表明,根据假定的储层压力和出气口尺寸,圣马伦山的马赫盘震动在地面上的印记应在4–9 km范围内。

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