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本文引用的文献

1
Recent Advances in Pipeline Monitoring and Oil Leakage Detection Technologies: Principles and Approaches.管道监测与漏油检测技术的最新进展:原理与方法
Sensors (Basel). 2019 Jun 4;19(11):2548. doi: 10.3390/s19112548.
2
A Paper-Based Piezoelectric Accelerometer.一种基于纸张的压电加速度计。
Micromachines (Basel). 2018 Jan 2;9(1):19. doi: 10.3390/mi9010019.
3
Leak Detection and Location of Water Pipes Using Vibration Sensors and Modified ML Prefilter.利用振动传感器和改进的机器学习预滤波器进行水管泄漏检测与定位
Sensors (Basel). 2017 Sep 13;17(9):2104. doi: 10.3390/s17092104.
4
An Energy Aware Adaptive Sampling Algorithm for Energy Harvesting WSN with Energy Hungry Sensors.一种用于带有高能耗传感器的能量收集无线传感器网络的能量感知自适应采样算法
Sensors (Basel). 2016 Mar 28;16(4):448. doi: 10.3390/s16040448.

基于压电贴片的水管振动泄漏检测与监测实验设计的数值模型。

A Numerical Model for Experimental Designs of Vibration-Based Leak Detection and Monitoring of Water Pipes Using Piezoelectric Patches.

机构信息

Dynamical Systems and Risk Laboratory, School of Mechanical and Materials Engineering, University College Dublin, D04 Dublin, Ireland.

Science Foundation Ireland (SFI) MaREI Centre, University College Dublin, D04 Dublin, Ireland.

出版信息

Sensors (Basel). 2020 Nov 24;20(23):6708. doi: 10.3390/s20236708.

DOI:10.3390/s20236708
PMID:33255221
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7727671/
Abstract

While the potential use of energy harvesters as structural health monitors show promise, numerical models related to the design, deployment and performance of such monitors often present significant challenges. One such challenge lies in the problem of leak detection in fluid-carrying pipes. Recent advances in experimental studies on energy harvesters for such monitoring has been promising but there is a paucity in existing literature in linking relevant fluid-structure interaction models around such applications. This paper addresses the abovementioned issue by developing a numerical model with Computational Fluid Dynamics (CFD) and Finite Element (FE) tools and carries out extensive analyses to compare it with existing experiments under controlled laboratory conditions. Conventional Polyvinylidene Fluoride (PVDF) films for leak detection and monitoring of water pipes were considered in this regard. The work provides guidelines on parameter selection and modeling for experimental design and repeatability of results for these types of experiments in future, around the demands of leak monitoring. The usefulness of such models is also demonstrated through the ability to estimate the optimum distribution frequency of these sensors that will enable the detection of the smallest leak of consequence under a known or established flow condition.

摘要

虽然能量收集器作为结构健康监测器的潜在用途前景广阔,但与设计、部署和此类监测器性能相关的数值模型往往存在重大挑战。其中一个挑战在于在输送流体的管道中检测泄漏的问题。最近在针对此类监测的能量收集器的实验研究方面取得了一些进展,但在将相关流固交互模型应用于此类应用方面,相关文献却很少。本文通过开发带有计算流体动力学 (CFD) 和有限元 (FE) 工具的数值模型来解决上述问题,并在受控的实验室条件下进行了广泛的分析,以将其与现有的实验进行比较。在这方面,考虑了用于检测和监测水管泄漏的常规聚偏二氟乙烯 (PVDF) 薄膜。这项工作为未来此类实验的实验设计和结果重复性提供了有关参数选择和建模的指导,以满足泄漏监测的需求。通过这些传感器的最佳分布频率估算能力,也展示了此类模型的实用性,这种估算能力可以在已知或既定的流动条件下,检测到最小的有影响的泄漏。