首页> 外文会议>International Geoscience and Remote Sensing Symposium >A CONVENIENT DESIGNATION FOR THE OPTIMAL HYDRAULIC CROSS-SECTION OF 'RECTANGLE-V' SHAPED DRAINAGE CANAL OF VISCOUS DEBRIS FLOW
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A CONVENIENT DESIGNATION FOR THE OPTIMAL HYDRAULIC CROSS-SECTION OF 'RECTANGLE-V' SHAPED DRAINAGE CANAL OF VISCOUS DEBRIS FLOW

机译:粘性碎片流动“矩形-V”形引流管的最佳液压横截面的方便设计

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The "Rectangle-V" shaped drainage canal is one of the most-widely used engineering measures in debris flow prevention in the west mountain area in China. The cross-section shape and size of the "Rectangle-V" shaped drainage canal are important parameters in the design. How to choose the shape and size to let the drainage canal have the optimal drainage capacity is rarely revolved before. This paper discusses the design of the optimal hydraulic cross-section. First, the parameter of cross-section size (F) and characteristic parameter of cross-section (S) are defined. Then, the calculation formulas of F and S are deduced. It indicates that F and S are only related to the transverse slope coefficient (I_C) under the optimal hydraulic condition. At last, the calculation formulas of the optimal hydraulic depth and width of the drainage canal are deduced. Taking Xinqiao gully, a first-order distributaries in the upper Min River after "5.12" earthquake as an example, this paper designs the optimal cross-section of the drainage canal of viscous debris flow. Compared to the other design methods, the method can confirm the shape and the sizes of "Rectangle-V" shaped drainage canal of viscous debris flow. And the calculated result is the only confirmed value, while the calculating method is convenient and efficient and can be adapted to the actual engineering.
机译:“矩形-V”形引流管是中国西山地区泥石流预防中使用的最广泛使用的工程措施之一。 “矩形-V”形引流管的横截面形状和尺寸是设计中的重要参数。如何选择形状和尺寸让排水管具有最佳排水能力以前很少旋转。本文讨论了最佳液压横截面的设计。首先,定义横截面尺寸(f)的参数和横截面的特征参数。然后,推导出F和S的计算公式。它表明F和S仅与最佳液压条件下的横向斜率系数(I_C)相关。最后,推导了排水管的最佳液压深度和宽度的计算公式。以鑫桥沟壑,在“5.12”地震之后,在初中河上的一流分布为例,这篇论文设计了粘性碎片流量的排水管的最佳横截面。与其他设计方法相比,该方法可以确认粘性碎片流动的“矩形-V”形引流管的形状和尺寸。计算结果是唯一的确认值,而计算方法方便且有效,可以适应实际工程。

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