Calculation method of debris flow impact force
A calculation method and technology of debris flow, which are applied in the fields of hydraulic engineering and debris flow prevention and control engineering, can solve problems such as dimension disharmony error and complex calculation, and achieve the effect of high disaster prevention applicability.
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Embodiment 1
[0024] On July 9, 1982, the huge rocks in the debris flow cut off the bridge pier in the middle of the Lizi Yidagou Bridge on Chengdu-Kunming Railway. The plane angle of the impacting object is 90°, and the modulus of elasticity is 49×10 9 Pa, the modulus of elasticity of the impacted object 26×10 9 Pa.
[0025] Through data query, it is found that the debris flow in Liziyidagou is a viscous debris flow, and its bulk density is 2350kg / m 3 , the yield stress is 8000Pa, and the suspended particle size is 0.5m. According to the formula (1), the impact force of the debris flow is 2909 tons, and the data shows that the breaking force of the bridge pier is 1200 tons, so such a large impact force destroys the The bridge piers are no surprise either.
Embodiment 2
[0027] In June 1983, in Dadegou, Dongchuan City, Yunnan Province, two steel pipes welded together by rocks in a debris flow were bent but not broken. The breaking strength of the steel pipe was 2860 tons. According to the site survey, it was estimated separately. The relevant parameters are: the mass of the impacting object is 23060kg, the moving speed is 12m / s, the angle between the moving direction and the plane of the impacted object is 90°, and the elastic modulus is 42×10 9 Pa, the modulus of elasticity of the impacted object 21×10 9 Pa.
[0028] According to the data, it is found that the debris flow in Dade Valley is a viscous debris flow, and its bulk density is 2000kg / m 3 , the yield stress is 8000Pa, and the suspended particle size is 0.3m. According to the formula (3), the impact force of the debris flow is 2647 tons, which is less than the breaking strength of the steel pipe, so it is only bent and not broken.
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