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Real-time online individualized heat-exchanging intelligent temperature control system and method of mass concretes

A large-volume concrete and intelligent control technology, which is applied in the fields of temperature control, construction, and infrastructure engineering using electric methods, can solve problems such as low efficiency, poor precision, difficulty in refining concrete temperature control, and personalized temperature control.

Active Publication Date: 2014-11-26
上海高千软件科技有限公司 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] (2) The existing water system has poor precision, low efficiency, low data reliability, long collection time interval, and slow information feedback, which often lead to unsatisfactory concrete temperature control
[0007] (3) The existing temperature control does not have an automatic temperature control acquisition system for concrete dams under construction, and there is no specific control strategy
[0008] (4) In the existing technology, when the temperature of concrete dams is manually controlled, it is also difficult to achieve coordinated control of the overall temperature of multiple dam sections of the dam, and it is difficult to refine and individualize the temperature control of concrete in different dam sections
[0009] (5) In the existing temperature control technology, the control method is single, the interface between the detection equipment and the control equipment is single, and the equipment is basically not interconnected, which brings difficulties and inconveniences to control the temperature of the dam concrete
[0010] Due to the above-mentioned deficiencies in the prior art, in order to overcome the above-mentioned problems, in order to simply realize the temperature control of the pouring block, it is necessary to get rid of the dependence of the control system on a large number of personnel and on a large number of materials, and realize the fine temperature control of automatic water flow; theory Based on the establishment of a knowledge expert database of mass concrete structures, the hardware construction has solved the water supply end and the durability of the control end equipment, and the early warning system has established early warning analysis and decision-making services, so as to achieve the purpose of forming a seamless large-volume concrete structure. There is no systematic research work in this area at home and abroad

Method used

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  • Real-time online individualized heat-exchanging intelligent temperature control system and method of mass concretes
  • Real-time online individualized heat-exchanging intelligent temperature control system and method of mass concretes
  • Real-time online individualized heat-exchanging intelligent temperature control system and method of mass concretes

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Embodiment Construction

[0047] Real-time, online personalized control is realized by water control in concrete water cooling, and the specific implementation plan is as follows:

[0048] (1) The interpolation numerical temperature measuring device 1 installed on the outlet pipe of each group of cooling water pipes;

[0049] (2) The digital temperature sensor 2 pre-embedded in each point of the concrete block during pouring, the sensor embedding method see figure 2 ;

[0050] (3) The integrated flow temperature control device 7 for real-time collection and control of the water temperature and flow rate of the water pipes is installed on the water inlet pipe of each group of cooling water pipes. A control device that integrates the meter 5 and the interpolation value temperature measuring device 1 together.

[0051] (4) Intelligent control box 3, the control box equipment includes PLC and multi-channel temperature acquisition instrument, and uploads the real-time collected data to the server 4 throu...

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Abstract

The invention discloses a real-time online individualized heat-exchanging intelligent temperature control system of mass concretes, and relates to the control on concrete water cooling in a high concrete dam casting procedure, wherein significance is provided for constructions of seamless dams. The system is characterized by comprising 1) installing a sensor in a newly casted mass concrete for measuring the temperature of the concrete in real time; 2) installing an interpolating digital temperature measuring device on water inlet / output pipes to measure the temperature of inlet and outlet water, and determining the average decreasing amplitude of the concrete temperature in real time according to a temperature difference of the inlet and outlet water; 3) determining a real-time flow according to the concrete temperature decreasing amplitude obtained in step 2); 4) installing an integrated flow and temperature control device integrated with temperature, flow and aperture controls on a water through pipe so as to realize real-time and online automatic collecting and feedback controls; 5) realizing the intelligent and individualized control on the mass concrete according to the temperature control information acquisition analysis of a temperature control acquisition instrument and the integrated flow and temperature control device and based on a temperature control gradient curve on time and space, so that an aim of casting the seamless dam is achieved.

Description

technical field [0001] The invention relates to a real-time on-line personalized heat transfer intelligent control system for mass concrete, in particular to the control of concrete heat transfer during the pouring process of a high concrete dam. Background technique [0002] For extra-high arch dams, the focus of anti-cracking during the construction period is concrete temperature control. The temperature problem of arch dam concrete should be solved mainly from two aspects: controlling temperature and improving restraint. From the perspective of temperature control, the concrete pouring temperature, the maximum concrete temperature and the final stable temperature are three characteristic temperatures, and the maximum temperature is equal to the pouring temperature plus the temperature rise of the heat of hydration. The final stable temperature depends on the local climate conditions and the structural form of the dam body, so the main control in engineering is the pourin...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E02D15/00G05D23/19
Inventor 李庆斌林鹏胡昱周绍武汪志林洪文浩王仁坤李炳峰
Owner 上海高千软件科技有限公司
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