Water Pipe Condition Assessment Using Submersible Quasi-distributed Optical Fibre based Pressure Transducers

IF 0.8 Q4 ENGINEERING, CIVIL
L. Wong, R. Deo, S. Rathnayaka, B. Shannon, C. S. Zhang, J. Kodikara, W. K. Chiu, H. Widyastuti
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引用次数: 2

Abstract

Transient based technique is known as one of the most economical ways for pipeline condition assessment. This technique involves monitoring and analysing pressure transient profiles at multiple points in a distributed system. Its application is restricted due to its low spatial resolution (10 m). It is hypothesised that by increasing the number of pressure transducers and reducing the gauge length (distance between the transducers), the spatial resolution of the measurements would highly be improved. However, the deployment of pressure transducers is restricted to the location of the hydrants. In this paper, a submersible quasi-distributed optical fibre based pressure sensors were proposed, constructed and tested in laboratory to verify this concept. For this context, this paper describes the proposed optical device and presents some preliminary analysis and results obtained from a set of experiments. The experimental results show that using the quasi-distributed optical fibre based pressure transducers for pressure transient analysis can potentially detect small anomalies (200 mm) and measure the growth of the anomalies along a water pipe.
基于水下准分布式光纤压力传感器的水管状态评估
基于瞬态的技术被认为是评估管道状态最经济的方法之一。该技术涉及监测和分析分布式系统中多个点的压力瞬态剖面。由于其低空间分辨率(10m),其应用受到限制。假设通过增加压力传感器的数量和减少标距(传感器之间的距离),测量的空间分辨率将大大提高。然而,压力传感器的部署仅限于消防栓的位置。本文提出了一种基于准分布式光纤的潜水式压力传感器,并进行了实验室测试,以验证这一概念。在这种情况下,本文描述了所提出的光学器件,并给出了一些初步分析和从一组实验中获得的结果。实验结果表明,使用基于准分布式光纤的压力传感器进行压力瞬态分析,可以潜在地检测小的异常(200mm),并测量异常沿水管的增长。
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
Electronic Journal of Structural Engineering
Electronic Journal of Structural Engineering Engineering-Civil and Structural Engineering
CiteScore
1.10
自引率
16.70%
发文量
0
期刊介绍: The Electronic Journal of Structural Engineering (EJSE) is an international forum for the dissemination and discussion of leading edge research and practical applications in Structural Engineering. It comprises peer-reviewed technical papers, discussions and comments, and also news about conferences, workshops etc. in Structural Engineering. Original papers are invited from individuals involved in the field of structural engineering and construction. The areas of special interests include the following, but are not limited to: Analytical and design methods Bridges and High-rise Buildings Case studies and failure investigation Innovations in design and new technology New Construction Materials Performance of Structures Prefabrication Technology Repairs, Strengthening, and Maintenance Stability and Scaffolding Engineering Soil-structure interaction Standards and Codes of Practice Structural and solid mechanics Structural Safety and Reliability Testing Technologies Vibration, impact and structural dynamics Wind and earthquake engineering. EJSE is seeking original papers (research or state-of the art reviews) of the highest quality for consideration for publication. The papers will be published within 3 to 6 months. The papers are expected to make a significant contribution to the research and development activities of the academic and professional engineering community.
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