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BIM-based mass concrete temperature monitoring and control method and system

A large-volume concrete and control method technology, applied in the direction of temperature control, control/regulation system, non-electric variable control, etc., can solve the problems of slow cooling speed, poor cooling effect, and inability to quickly locate the position of the warning point, etc., to achieve Effects that improve speed and effectiveness

Inactive Publication Date: 2020-01-14
安徽贝慕信息科技有限公司
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Problems solved by technology

[0006] The purpose of the present invention is to overcome the deficiencies of the prior art and provide a BIM-based mass concrete temperature monitoring and control method and system to solve the problem of the inability to quickly locate early warning points when monitoring and controlling the mass concrete temperature in the prior art The position of the cooling facility cannot be automatically controlled, the cooling speed is slow, the cooling effect is poor, and the remote viewing and monitoring of data cannot be realized. The cooling speed is fast, the cooling effect is good, and the advantages of remote viewing and monitoring of data are realized.

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  • BIM-based mass concrete temperature monitoring and control method and system

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Embodiment 1

[0032] Embodiment 1 discloses a BIM-based mass concrete temperature monitoring and control method, comprising the following steps:

[0033] Step 1: Calculate, according to the shape and size of the concrete pouring to be poured and the layout requirements of the temperature sensor and the cooling water pipe in the concrete pouring, accurately calculate the layout position information of the temperature sensor and the cooling water pipe in the concrete pouring, and lay out The requirements include the number of temperature sensors, the number of columns, the number of rows, the spacing, and the layout of important points;

[0034] Step 2: On-site installation and layout, complete the on-site installation and layout of the temperature sensor and cooling water pipe according to the layout location information. The specific steps of on-site installation and layout are: first build the steel skeleton of the concrete pouring material, and then install the temperature sensor and cooli...

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Abstract

The invention discloses a BIM-based mass concrete temperature monitoring and control method. The method comprises the following steps: step 1, performing calculation; step 2, carrying out field installation and arrangement; step 3, carrying out BIM live-action modeling; step 4, carrying out monitoring in real time; step 5, carrying out early warning determination; step 6, sending an instruction; and step 7, carrying out automatic cooling. In addition, the invention also discloses a BIM-based mass concrete temperature monitoring and control system comprising a temperature acquisition module, anon-site monitoring system, a cooling module, a cloud storage module and a remote monitoring terminal. The temperature acquisition module includes a temperature sensor; and the on-site monitoring system includes a receiving module, a real-time monitoring module, a calculation module, an early warning module, an instruction sending module and a data transient module. According to the invention, problems that an early warning point cannot be rapidly located and cooling facilities can not controlled automatically in the prior art are solved. The BIM-based mass concrete temperature monitoring andcontrol method and system have advantages of locating an early warning point rapidly and controlling cooling facilities automatically and the like.

Description

technical field [0001] The invention relates to the technical field of mass concrete construction, in particular to a method and system for monitoring and controlling the temperature of mass concrete based on BIM. Background technique [0002] Mass concrete structures are widely used in industrial and civil buildings. After the mass concrete is poured, the hydration of cement will generate a lot of heat inside, and the heat is not easy to dissipate, so that the internal temperature of the concrete rises, and the exposed surface heat If it is easy to disperse, it will inevitably cause the temperature difference between the inside and the surface of the concrete to be too large, resulting in cracks. In the past, construction units mainly used thermometers to measure temperature, requiring on-site management personnel to record data at regular intervals. The workload is heavy and the accuracy is not high. Therefore, an intelligent monitoring system is urgently needed in buildin...

Claims

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Application Information

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IPC IPC(8): G05D23/20
CPCG05D23/20
Inventor 吴晓奋魏立冬陈超凡符辉王婷婷吴文军
Owner 安徽贝慕信息科技有限公司