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An intelligent test device and simulation method for simulating rock and soil degradation

A test device and rock-soil technology, applied in the field of degradation test simulation, can solve the problems of single light source, inability to reflect humidity changes, and high cost of test chambers

Active Publication Date: 2019-06-18
LANZHOU UNIVERSITY
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] The temperature control in the existing test chamber, whether it is the temperature control of the electric heating furnace wire and the blower motor or the temperature control of the air compressor, the temperature set by the two temperature control systems can only reflect the artificially set temperature in the test chamber, not It can simulate the temperature change caused by the change of sunlight intensity in the natural environment. The sunlight intensity is mainly reflected by the index of total sunlight radiation; the humidity control is mainly carried out by atomizing liquid water in the form of a humidifier. , the device cannot reflect the change of humidity on the surface of rock and soil in nature due to the change of humidity before and after rainfall. During the rainfall, water is directly sprayed on the surface of rock and soil, and the atomized water vapor generated by the humidifier can only reflect the change of humidity in the environment, but cannot reflect the humidity of the water. The process of spraying on the surface of rock and soil, in addition, there is a kind of splashing effect of rainwater on the surface of rock and soil during rainfall, which cannot be simulated by the existing technology;
[0007] The light source provided in the existing test box is relatively simple, the mold incubator can only provide ultraviolet light source, and the upgraded version of the incubator can only provide incandescent light source, and the cost of the test box is often very high. The light source cannot be switched, the light source is relatively single, and the above two existing light sources cannot simulate the impact of changes in the intensity of sunlight in nature on the degradation of rock and soil

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  • An intelligent test device and simulation method for simulating rock and soil degradation
  • An intelligent test device and simulation method for simulating rock and soil degradation
  • An intelligent test device and simulation method for simulating rock and soil degradation

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Embodiment Construction

[0045] The present invention will be described in further detail below in conjunction with the accompanying drawings and embodiments, so that those skilled in the art can implement it with reference to the description.

[0046] It should be understood that terms such as "having", "comprising" and "including" used herein do not exclude the presence or addition of one or more other elements or combinations thereof.

[0047] like figure 1 As shown, the present invention provides a kind of test device for intelligently simulating the deterioration of rock and soil mass, comprising:

[0048] Remote central computer 1; inner box 2; outer box 3; intelligent controller 4; data collector 5; four rainwater nozzles 6, two water atomization nozzles 7, and one sunlight simulation lamp arranged in the inner box 2 8. Three total solar radiation sensors 9, five temperature sensors 10 and five humidity sensors 11; power supply 13; wherein, the intelligent controller 4 and the data collector 5...

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Abstract

The invention discloses an intelligent testing apparatus for simulating the degradation of a rock-soil mass. The testing apparatus comprises a far-end central computer, a testing box, an environment simulation component and an environment detection component, wherein the far-end central computer is connected with a weather collector in a communication manner; the weather collector outputs the collected data of an external environment to the far-end central computer; the testing box comprises an inner box and an outer box; a holding cavity of the inner box is separated into upper and lower layers for holding to-be-detected rock-soil masses by a support; the outer side wall of the outer box is provided with a data collector and an intelligent controller which are connected with the far-end central computer respectively in the communication manner; the environment simulation component is connected with the intelligent controller in the communication manner; the environment detection component is connected with the data collector in the communication manner. The invention also discloses a simulation method for carrying out a degradation test by using the intelligent testing apparatus for simulating the degradation of the rock-soil mass. By using the testing apparatus provided by the invention, the external environment can be accurately simulated in the process of the degradation simulation test of the rock-soil mass; the degree of automation is high.

Description

technical field [0001] The invention relates to the technical field of degradation test simulation, and more specifically, the invention relates to an intelligent test device for simulating degradation of rock and soil mass and a simulation method thereof. Background technique [0002] At present, with the development of new technologies and the continuous development of interdisciplinary subjects, laboratory test chambers have also been vigorously developed. At present, the test chambers commonly used in laboratories include drying ovens, biochemical incubators, mold incubators, etc. The drying ovens are mainly used for drying test samples. The dehydration process is carried out under certain temperature conditions. The internal structure is mainly composed of heating furnace wire, intelligent switch and blower motor, etc., which has a wide range of applications in geotechnical engineering tests. [0003] The main function of the biochemical incubator in geotechnical engi...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N17/00
CPCG01N17/00G01N17/002
Inventor 谌文武刘伟郭志谦毕骏孙冠平
Owner LANZHOU UNIVERSITY
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