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Study on Similarity Laws of Model Experiments of Debris Flow Channels

机译:碎片流动通道模型实验的相似定律研究

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Model experiment of debris flow is one of the important methods for studying debris flow movement and prevention. The similarity laws between model and prototype are very important for the accuracy of experimental results. The geometry similarity, movement similarity and dynamic similarity were discussed first in this paper. Then, three similarity laws, including gravity similarity, resistance similarity and gravity and resistance similarity simultaneously were deduced under the assumption that debris flow was an incompressible fluid. At last, the methods based on triangle, trapezoid and rectangle process for simulating debris flow discharge in model experiments were discussed and compared. Results indicate that if debris flow movement dominated by gravity, the Froude number of model experiment and prototype must be equal. If debris flow movement dominated by viscous resistance, the Reynolds number must be homologous. If debris flow movement dominated by both formers simultaneously, the Froude number and the Reynolds number must be equal. After three discharge similarities between model experiment and debris flow prototype were compared, results indicated that the triangle method and the trapezoid method all have a certain degree of technical difficulty. For the rectangle method, debris flow is supplied based on the maximum discharge in the whole model experiment. Therefore, the experimental results are larger than actual conditions, but for model experiments, it aimed at researching mitigation measures of debris flow, the rectangle method is more appropriate.
机译:碎片流动模型实验是研究碎片流动运动和预防的重要方法之一。模型与原型之间的相似性规律对于实验结果的准确性非常重要。本文首先讨论了几何相似性,运动相似性和动态相似性。然后,在假设碎片流动是不可压缩的流体的假设下推导出同时推导出三个相似性规律,包括重力相似度,抗性相似性和重力和抗性相似性。最后,讨论了基于三角形,梯形和矩形过程的用于模拟模型实验中的碎片流量放电的方法。结果表明,如果由重力主导的碎屑流动,模型实验和原型的FRoude数量必须相等。如果通过粘性电阻支配的碎屑流动,则雷诺数必须是同源的。如果同时由两个卷轴主导的碎屑流动运动,则FRoude号码和雷诺数必须相等。在比较模型实验和碎屑流动原型之间的三个放电相似之后,结果表明三角形方法和梯形方法都具有一定程度的技术难度。对于矩形方法,基于整个模型实验中的最大放电提供碎片流量。因此,实验结果大于实际条件,但对于模型实验,它旨在研究碎屑流动的缓解措施,矩形方法更合适。

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