Similar simulation experimental model and laying method thereof

A technology of similar simulation experiments and experimental models, applied in the field of similar simulation experiment models and their laying, can solve the problems of wasting precious time of scientific researchers, affecting the progress of experiments, environmental pollution, etc.

Active Publication Date: 2021-09-14
XIAN UNIV OF SCI & TECH +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004]Similar simulation experiments need to make test benches, observation devices, similar simulation materials, etc., and the most important thing is to make similar simulation experiment models. Most of the current indoor physical similar simulation experiments All use similar simulation experimental models for one-time use, that is, similar models are made by mixing sand, lime, etc. according to a certain ratio, but this traditional similar simulation model has considerable limitations:
[0005]First of all, the preparation process of traditional similar simulation materials is relatively complicated, and traditional similar materials are prone to lateral collapse during the experiment process, which will affect the progress of the experiment. At the same time, the production Similar simulation materials will take up a lot of time and will waste the precious time of a large numbe

Method used

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  • Similar simulation experimental model and laying method thereof
  • Similar simulation experimental model and laying method thereof
  • Similar simulation experimental model and laying method thereof

Examples

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Effect test

example 1

[0082] Example 1: Take the indoor physical similarity simulation experiment on the bottom plate of a mine in North China as an example. This experiment is based on the bottom plate of the deep confined water mining face of the mine as the research object. Relevant original rock cores are obtained on site and then the mechanical parameters of the rock formation are obtained through indoor experiments. The influence of the rock formation, the frame size of the test bench used is 1.0m×0.2m×0.8m (length×width×height).

[0083] 1) The basic situation of the simulated floor rock formation:

[0084] The simulated depth of the floor strata is 30m, and the basic situation is: from top to bottom, layer a-5m thick sandstone, b layer-3m thick siltstone, c layer-4m thick mudstone, d layer-5m Thick sandstone, layer e - 5m thick mudstone, f layer - 8m thick limestone. The simulated lithological parameters are: layers a and d - the elastic modulus of sandstone is 1.35×10 4 Mpa; layer b - t...

example 2

[0102] Example 2: Take the indoor physical similarity simulation experiment on the prevention and control of the roof of a mine in southwest China as an example. In this experiment, the stability of the roof of the mine was taken as the research object. The relevant original rock cores were obtained on site, and then the mechanical parameters of the rock formation were obtained through laboratory experiments. Then, the stability of the roof strata on the site was simulated by the indoor physical simulation experiment. The frame size of the test bench is 0.8m×0.2m×0.6m (length×width×height).

[0103] 1) The basic situation of the simulated roof strata:

[0104] The simulated thickness of the roof is 20m, and the basic situation is: from top to bottom, layer a-4m thick fine sandstone, b layer-6m thick sandstone, c layer-2m thick mudstone, d layer-5m thick Sandy mudstone, layer e-3m thick medium-fine sandstone. The simulated lithological parameters are: layer a - the elastic mo...

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Abstract

The invention relates to a similar simulation experimental model and a laying method thereof. The experimental model comprises an experimental model body, the experimental model body is composed of a plurality of combined block layers sequentially arranged in the longitudinal direction and a filling material, and each combined block layer is composed of a plurality of combined block bodies which are sequentially arranged in the left-right direction. The filling material fills gaps among all the combined block bodies in the experimental model body. Each combined block body is composed of an anti-tensioning pull rod located in the middle, a front framework block fixedly connected to the front end of the anti-tensioning pull rod and a rear framework block fixedly connected to the rear end of the anti-tensioning pull rod. The method comprises the following steps of: preparing enough combined block bodies; laying a bottom similar material on an experimental table; sequentially laying layers of similar material from bottom to top; carrying out a similar simulation experiment; and recovering the combined block bodies. The model can be prefabricated in advance and can be effectively used in similar simulation experiments for many times. According to the method, the laying method is simple, the construction steps are few, and the problem of lateral collapse in the laying and experiment period is thoroughly solved.

Description

technical field [0001] The invention belongs to the technical field of indoor physical similar simulation experiments, and in particular relates to a similar simulation experiment model and a laying method thereof. Background technique [0002] As an important discipline in the field of civil engineering, geotechnical engineering involves increasingly complex problems. It is difficult to solve the problems encountered in engineering practice only through theoretical analysis, so corresponding experiments must be carried out to verify the analysis. A better simulation effect can be achieved through similar simulation experiments. [0003] Similarity simulation experiment is an inevitable product of social development. Similarity simulation experiment makes a model of a certain size according to the corresponding similarity principle by comparing the on-site stratum, etc., and then imitates the actual operation on the site to excavate and pressurize the model to observe the mo...

Claims

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Application Information

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IPC IPC(8): G01L1/26G09B23/06E02D33/00
CPCG01L1/26G09B23/06E02D33/00
Inventor 李昂王毅周永根樊刚马强马政和刘洋崔岩波丁学松纪丙楠杨宇轩高帅李远谋张壮吕伟王伟东
Owner XIAN UNIV OF SCI & TECH
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