Development and Application of Intelligent Temperature Control System for Large Aqueduct

When the temperature rise and fall rates of a large-scale aqueduct with traditional water-cooling technology exceeds the standard, it is difficult to avoid the temperature change of aqueduct concrete deviating from its control curve in the process of temperature rise and fall by adjusting the water...

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Main Authors: Yanke Shi, Zhangyao Wang, Shuo Zhang, Duoxin Zhang, Kai Sun
Format: Article
Language:English
Published: MDPI AG 2022-11-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/12/23/12138
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author Yanke Shi
Zhangyao Wang
Shuo Zhang
Duoxin Zhang
Kai Sun
author_facet Yanke Shi
Zhangyao Wang
Shuo Zhang
Duoxin Zhang
Kai Sun
author_sort Yanke Shi
collection DOAJ
description When the temperature rise and fall rates of a large-scale aqueduct with traditional water-cooling technology exceeds the standard, it is difficult to avoid the temperature change of aqueduct concrete deviating from its control curve in the process of temperature rise and fall by adjusting the water flow rate or cooling the water temperature of a water pipe only by manual experience. Aiming at such problems, an intelligent temperature control system for a large aqueduct body is developed and applied, which is composed of an information processing and decision-making module, simulation calculation module and information collection and control module, with real-time interactive information and real-time update of the temperature change control curve. The system is applied to the 1:30 Dongjia Village Aqueduct model experiment. The model experiment results show that the system can automatically adjust the water flow velocity of concrete according to the temperature variation control curve, and update the temperature variation control curve according to the changes of environmental parameters and cooling water parameters.
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spelling doaj.art-066e0b392f0943da8b61ebf55e7b95db2023-11-24T10:31:36ZengMDPI AGApplied Sciences2076-34172022-11-0112231213810.3390/app122312138Development and Application of Intelligent Temperature Control System for Large AqueductYanke Shi0Zhangyao Wang1Shuo Zhang2Duoxin Zhang3Kai Sun4School of Civil Engineering and Communications, North China University of Water Resources and Electric Power, Zhengzhou 450045, ChinaSchool of Civil Engineering and Communications, North China University of Water Resources and Electric Power, Zhengzhou 450045, ChinaSchool of Civil Engineering and Communications, North China University of Water Resources and Electric Power, Zhengzhou 450045, ChinaSchool of Civil Engineering and Communications, North China University of Water Resources and Electric Power, Zhengzhou 450045, ChinaSchool of Civil Engineering and Communications, North China University of Water Resources and Electric Power, Zhengzhou 450045, ChinaWhen the temperature rise and fall rates of a large-scale aqueduct with traditional water-cooling technology exceeds the standard, it is difficult to avoid the temperature change of aqueduct concrete deviating from its control curve in the process of temperature rise and fall by adjusting the water flow rate or cooling the water temperature of a water pipe only by manual experience. Aiming at such problems, an intelligent temperature control system for a large aqueduct body is developed and applied, which is composed of an information processing and decision-making module, simulation calculation module and information collection and control module, with real-time interactive information and real-time update of the temperature change control curve. The system is applied to the 1:30 Dongjia Village Aqueduct model experiment. The model experiment results show that the system can automatically adjust the water flow velocity of concrete according to the temperature variation control curve, and update the temperature variation control curve according to the changes of environmental parameters and cooling water parameters.https://www.mdpi.com/2076-3417/12/23/12138aqueductintelligent temperature controlinformation interactionfinite element simulationmodel experiment
spellingShingle Yanke Shi
Zhangyao Wang
Shuo Zhang
Duoxin Zhang
Kai Sun
Development and Application of Intelligent Temperature Control System for Large Aqueduct
Applied Sciences
aqueduct
intelligent temperature control
information interaction
finite element simulation
model experiment
title Development and Application of Intelligent Temperature Control System for Large Aqueduct
title_full Development and Application of Intelligent Temperature Control System for Large Aqueduct
title_fullStr Development and Application of Intelligent Temperature Control System for Large Aqueduct
title_full_unstemmed Development and Application of Intelligent Temperature Control System for Large Aqueduct
title_short Development and Application of Intelligent Temperature Control System for Large Aqueduct
title_sort development and application of intelligent temperature control system for large aqueduct
topic aqueduct
intelligent temperature control
information interaction
finite element simulation
model experiment
url https://www.mdpi.com/2076-3417/12/23/12138
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AT zhangyaowang developmentandapplicationofintelligenttemperaturecontrolsystemforlargeaqueduct
AT shuozhang developmentandapplicationofintelligenttemperaturecontrolsystemforlargeaqueduct
AT duoxinzhang developmentandapplicationofintelligenttemperaturecontrolsystemforlargeaqueduct
AT kaisun developmentandapplicationofintelligenttemperaturecontrolsystemforlargeaqueduct