Krentowski Janusz R
Faculty of Civil Engineering and Environmental Sciences, Bialystok University of Technology, Wiejska 45E, 15-351 Bialystok, Poland.
Materials (Basel). 2021 Dec 29;15(1):225. doi: 10.3390/ma15010225.
The durability of concrete structure members is dependent on several factors that should be analyzed at each stage of the construction process. Omitting any of these factors might lead to the augmentation of harmful interactions and, as an effect, to safety hazards and the degradation of a structure or its parts. The article, based on several years of studies on exploited concrete structures, presents the effects of an incorrect analysis of selected factors resulting in the occurrence of faults significantly influencing the possibility of safe use of the objects. The described cases include, but are not limited to, the consequences of an improper assessment of building conditions after a biogas explosion in a fermentation chamber, the effect of a wood dust explosion, fire temperature and firefighting action on the prestressed girders, the stages of degradation of bearing structures supporting gas tanks exploited in an aggressive environment, and the consequences of omitting the temperature load in relation to the upper surface of a plate covering the fire pond. In each case, methods of restoration of the damaged elements were proposed, and their application to engineering practice was described. The practical aspects of the conducted research and implemented interventions were indicated.
混凝土结构构件的耐久性取决于多个因素,在施工过程的每个阶段都应对这些因素进行分析。忽略其中任何一个因素都可能导致有害相互作用的增加,进而导致安全隐患以及结构或其部件的退化。本文基于对已投入使用的混凝土结构多年的研究,介绍了对选定因素进行错误分析所产生的影响,这些错误分析导致出现了严重影响物体安全使用可能性的故障。所描述的案例包括但不限于以下情况:发酵室内沼气爆炸后对建筑条件评估不当的后果、木屑爆炸的影响、火灾温度和消防行动对预应力梁的影响、在侵蚀性环境中使用的支撑储气罐的承载结构的退化阶段,以及忽略与覆盖消防水池的板的上表面相关的温度荷载的后果。在每种情况下,都提出了修复受损构件的方法,并描述了这些方法在工程实践中的应用。指出了所进行研究和实施干预措施的实际方面。