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Crater formation in soils by raindrop impact

机译:雨滴在土壤中形成火山口

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摘要

The process of crater formation by the impact of water drops on soil, sand and various other target material was studied. Craters of various shapes and sizes were observed on different target materials or conditions, ranging from circumferential depression to completely hemispherical shape. Crater shape was dependent upon target material, its flow stress or shear strength and the presence and thickness of water on the surface. Between 5 and 22 per cent of impact energy was spent on cratering, but the relationship between crater volume and kinetic energy of a raindrop was curvilinear, indicating a lower efficiency of impact energy in removing target material as the energy increases. Impact impulse, on the other hand, showed a more linear relationship with crater volume, and the ratio of impulse over crater volume (I/V) remained constant for the entire range of drop sizes, impact velocities, and surface conditions used in this study. Surface shear strength, represented by the penetration depth of fall-cone penetrometer, appeared to be a key factor involved in this process. An equation was developed which related crater volume to cone penetration depth and impact impulse. Crater volume, which appeared to be a better indicator of the total amount of material dislodged by a raindrop than splash amount, can thus be predicted using this equation.
机译:研究了水滴对土壤,沙子和其他各种目标物质的影响而形成的火山口的过程。在不同的目标材料或条件下,观察到各种形状和大小的火山口,范围从圆周凹陷到完全半球形。火山口的形状取决于目标材料,其流动应力或剪切强度以及表面上水的存在和厚度。陨石坑的撞击能量占5%至22%,但陨石坑体积与雨滴动能之间的关系呈曲线关系,表明随着能量的增加,撞击能量在去除目标材料方面的效率较低。另一方面,冲击冲量与弹坑容积显示出更线性的关系,并且在整个研究中使用的液滴尺寸,冲击速度和表面条件的整个范围内,冲击弹与弹坑容积的比率(I / V)保持恒定。用落锥针入度计的穿透深度表示的表面剪切强度似乎是该过程涉及的关键因素。建立了一个方程式,将火山口的体积与圆锥体的穿透深度和冲击冲量相关联。因此,可以使用此方程式来预测火山口的体积,该火山口的体积似乎是雨滴排出的物料总量的指标,而不是飞溅量。

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