Analysis of Faults in Sewage Systems with Geographical Information Systems

S. Gök, M. Firat
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Abstract

Wastewater systems are one of the most important infrastructure elements in terms of human and environmental health. In such systems, failures are observed depending on various factors. These failures increase operating and maintenance-repair costs and create threats to human and environmental health. For this reason, these systems should be monitored regularly and the factors causing malfunction should be analyzed. In this study, it is aimed to evaluate and analyze failures occurring in sewerage systems with geographical information systems. For this, the failures in the sewage system of Malatya province between year 2015-2019 were taken into account. It has been determined that the most common types of failure are misuse, in-line sag and deformation, and in-line lubrication. In addition, the highest failure rate occurred in pipes with a diameter of 100-200 mm. In the spatial analysis of faults, inline collapse is generally observed in the central regions, while misuse faults are found to be in the system. It has been observed that factors such as pipe diameter and length, season, traffic load, ground feature, and improper use are effective in the increase in fault density.
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基于地理信息系统的污水系统故障分析
废水处理系统是人类和环境健康方面最重要的基础设施之一。在这样的系统中,观察到的故障取决于各种因素。这些故障增加了操作和维护维修成本,并对人类和环境健康造成威胁。因此,应定期对这些系统进行监测,并分析引起故障的因素。本研究旨在利用地理资讯系统来评估及分析污水处理系统的故障。为此,考虑了2015-2019年马拉提亚省污水系统的故障。已经确定,最常见的故障类型是误操作、在线凹陷和变形以及在线润滑。此外,在直径为100- 200mm的管道中,故障率最高。在断层的空间分析中,在中心区域普遍观察到线内塌陷,而在系统中发现误用断层。观察到管径和管长、季节、交通负荷、地物、使用不当等因素对故障密度的增加是有效的。
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