INVESTIGATION OF THE TECHNICAL CONDITION OF WATER DISCHARGE DEVICES OF HYDRAULIC STRUCTURES

B. Makovetskyi, О. Diachenko, М. Troshyn
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Abstract

Problem statement. Hydrotechnical structures undergo a process of inspection for their technical condition. This is necessary to maintain the durability of the structure. In the process of operation, structural defects occur, which are difficult to examine and investigate, due to the impossibility of access for visual inspection. Such defects include those formed in the body of gravity-type earth dams. This applies, first of all, to structures and devices that are located in the body of dams during their construction. They include, in particular, spillways and pipelines. Defects in these structures lead to leakage of water into the body of the dam, which eventually collapses from the inside. Timely detection of defects prevents the destruction of dams due to urgent repairs, and this extends the durability of the structure. The purpose of the article is to develop an analytical-instrumental method of finding, without destroying the body of the dam, erosional, loosened areas in leakage zones, and determining their volumes. Method. A modern method of geophysics, which is electrotomography, is used. As a theoretical justification, the method of the Earth's natural pulsed electromagnetic field (MENPEF) was taken as a basis. The result of the research is the development of a methodology using the methods of engineering geophysics: the method of the Earth's natural pulsed electromagnetic field (MENPEF) and geoelectric tomography. Scientific novelty lies in the fact that the method was developed for the first time for the examination of earth dambs spillways. Practical value. With the help of the developed method, in the future it will be possible to conduct surveys for earth dams of hydrotechnical structures for all organizations that are engaged in such work and have the necessary tools. Conclusions. An analytical-instrumental method of researching the sections of earth dams that cross the structures of ponds spillways and reservoirs has been developed. The location of the loosened soil halo around the spillway pipes inside the body of the earth dam was identified, and the volume of such soil was determined.
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水工建筑物排水装置技术条件的探讨
问题陈述。水工建筑物的技术状况要经过一个检验的过程。这对于保持结构的耐久性是必要的。在运行过程中,由于无法进入目视检查,出现结构缺陷,难以检查和调查。这种缺陷包括在重力型土坝体中形成的缺陷。这首先适用于大坝施工期间位于坝体内的结构和设备。它们特别包括溢洪道和管道。这些结构的缺陷导致水渗漏到坝体中,最终从内部坍塌。及时发现缺陷可以防止大坝因紧急维修而遭到破坏,从而延长了结构的耐久性。本文的目的是开发一种分析仪器方法,在不破坏坝体的情况下,发现渗漏区的侵蚀、松动区域,并确定其体积。方法。使用了一种现代的地球物理学方法,即电断层扫描。作为理论证明,以地球自然脉冲电磁场(MENPEF)方法为基础。研究的结果是开发了一种使用工程地球物理方法的方法:地球自然脉冲电磁场(MENPEF)和地电层析成像方法。该方法首次用于土坝溢洪道的检测,具有科学的新颖性。实用价值。在开发的方法的帮助下,未来将有可能为从事此类工作并具有必要工具的所有组织进行水工结构土坝的调查。结论。提出了一种研究跨越池塘、溢洪道和水库结构的土坝断面的分析仪器方法。确定了土坝体内溢洪管周围松动土晕的位置,并确定了松动土晕的体积。
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