大体积混凝土全过程的温度信息智能监测装置以及方法

By using an intelligent monitoring system with simulated aggregate temperature acquisition devices and autonomous acquisition base stations during concrete construction, the problem of inaccurate temperature control in concrete construction has been solved, achieving precise temperature measurement and source control throughout the entire process, and ensuring the accuracy of temperature control measures.

CN121409451BActive Publication Date: 2026-07-17CHINA INST OF WATER RESOURCES & HYDROPOWER RES

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHINA INST OF WATER RESOURCES & HYDROPOWER RES
Filing Date
2025-09-22
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing technologies, the control of concrete inlet temperature, temperature change rate during transportation, and pouring temperature relies on average temperature assessment, which leads to inaccurate temperature control measures, especially making it difficult to achieve precise control at different extreme temperature stages.

Method used

An intelligent monitoring system consisting of multiple aggregate-simulated temperature acquisition devices and autonomous acquisition base stations wirelessly collects and transmits temperature information in real time during the concrete mixing, transportation and pouring process. The system utilizes monitoring terminals for simultaneous acquisition and recording, achieving full-process temperature monitoring.

Benefits of technology

It enables precise measurement of concrete temperature throughout the entire process, provides accurate temperature control data for reference, ensures source control of concrete construction, and avoids misleading temperature control measures caused by average temperature assessment in traditional methods.

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Abstract

一种大体积混凝土全过程的温度信息智能监测装置以及方法,装置包括:多个仿骨料温度采集器,用于在混凝土拌合阶段作为骨料投入混凝土中并采集混凝土的温度信息;多个自主采集基站,布设于拌合出机口、运输路径和混凝土仓附近,用于无线接收温度信息;监控终端用于根据温度信息及对应的采集位置和混凝土仓号,以形成拌合出机口、运输路径、入仓温度以及浇筑温度的全过程混凝土温度同源采集并记录。本发明能够实现混凝土拌合‑运输‑浇筑全过程中同源测温,从而可以为混凝土的温控施工提供准确的数据参考,实现混凝土温控施工的源头控制。
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