Modular digital system for monitoring, assessing and forecasting the condition of concrete for monolithic works based on Internet of Things technology

IF 0.1 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
L. Averbukh, A. Nenishev, M. Zheleznov, David Koyadinovich, Yann Straub
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引用次数: 0

Abstract

This article explores the strength characteristics of concrete structures in relation to their production technology, as well as investigates the potential for improving quality control methods in concrete casting through the integration of modern IIoT technologies. During the construction process, there is a frequent necessity to conduct rapid assessments of the condition of concrete and concrete structures directly at the construction site. This need arises from the logical reasoning that upon detecting any structural defects, such as cracks or sinks, it is essential to obtain initial information about the concrete's condition to facilitate subsequent analysis and decision-making without conducting complex laboratory studies. In this study, we made an analysis of existing temperature control systems employed to monitor concreting concrete structures during winter conditions. Additionally, detailed insights and practical experience are presented regarding the utilization of a state-of-the-art monitoring system at construction sites, enabling real-time temperature monitoring both on the surface and within the structure.
基于物联网技术的单体工程混凝土状态监测、评估与预测模块化数字系统
本文探讨了与其生产技术相关的混凝土结构的强度特性,并研究了通过集成现代工业物联网技术改善混凝土浇筑质量控制方法的潜力。在施工过程中,经常需要直接在施工现场对混凝土和混凝土结构的状况进行快速评估。这种需求源于一种逻辑推理,即在检测到任何结构缺陷(如裂缝或下沉)后,必须获得有关混凝土状况的初步信息,以便于后续分析和决策,而无需进行复杂的实验室研究。在这项研究中,我们分析了现有的温度控制系统,用于监测冬季条件下的混凝土结构。此外,还介绍了在施工现场使用最先进的监测系统的详细见解和实践经验,实现了对表面和结构内部的实时温度监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Russian Journal of Building Construction and Architecture
Russian Journal of Building Construction and Architecture CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
50.00%
发文量
28
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