Water-Hammer Control in Pressurized-Pipe Flow Using a Branched Polymeric Penstock

被引:43
|
作者
Triki, Ali [1 ]
机构
[1] Univ Sfax, Natl Engn Sch Sfax, Dept Mech, ISSAT Gabes, BP 1173, Sfax 3038, Tunisia
关键词
Water hammer; Surge control strategies; Viscoelasticity; Cavitating flow; High-density polyethylene/low-density polyethylene (HDPE/LDPE) polymeric material; Vitkovsky formulation; Fixed-grid method of characteristics; Branched junction; Kelvin-Voigt formulation; WALL VISCOELASTICITY; HYDRAULIC TRANSIENTS; VAPOROUS CAVITATION; COLUMN SEPARATION; UNSTEADY-FLOW; MODEL;
D O I
10.1061/(ASCE)PS.1949-1204.0000277
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This paper investigates the redesigning of existing steel piping hydraulic systems to control severe water hammer positive and negative surges. The applied control strategy is based on adding a branched polymeric short penstock at the transient sensitive regions of the existing system. Two types of polymeric materials used for the short penstock, high-density and low-density polyethylene (HDPE and LDPE), are investigated. The one-dimensional unconventional water-hammer model, based on the Vitkovsky and the Kelvin-Voigt formulations, is used for hydraulic transient analysis, along with the fixed-grid method of characteristics implemented for numerical computations. The numerical model is validated using comparison with experimental measurements available in the literature. The results demonstrate that such a strategy can significantly mitigate the pressure increase and decrease induced by water hammer waves. Moreover, it is found that the short penstock volume and material represent the key factors affecting the damping rate of the positive and negative pressure peaks. The branching strategy used herein induces a smaller increase of the period than does the inline strategy and produces a similar pressure-head damping. (C) 2017 American Society of Civil Engineers.
引用
收藏
页数:9
相关论文
共 50 条
  • [21] VALVE STROKING TO CONTROL WATER-HAMMER TRANSIENTS USING DYNAMIC-PROGRAMMING
    CONTRACTOR, DN
    JOURNAL OF PRESSURE VESSEL TECHNOLOGY-TRANSACTIONS OF THE ASME, 1987, 109 (01): : 94 - 100
  • [22] CONTROL ROD DRIVE WATER-HAMMER IN BOILING WATER-REACTORS
    STRONG, BR
    LEUNG, JH
    TAN, LB
    TRANSACTIONS OF THE AMERICAN NUCLEAR SOCIETY, 1983, 44 : 621 - 622
  • [23] Compound technique-based inline design strategy for water-hammer control in steel pressurized-piping systems
    Triki, Ali
    Chaker, Mohamed Amir
    INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING, 2019, 169 : 188 - 203
  • [24] An Artificial Compressibility Method for 1D Simulation of Open-Channel and Pressurized-Pipe Flow
    Hodges, Ben R.
    WATER, 2020, 12 (06)
  • [25] Further investigation on water-hammer control inline strategy in water-supply systems
    Triki, Ali
    JOURNAL OF WATER SUPPLY RESEARCH AND TECHNOLOGY-AQUA, 2018, 67 (01): : 30 - 43
  • [26] Water hammer and other pipe transient flow problems
    Patterson, Ross
    Covey, Geoff
    APPITA, 2014, 67 (04): : 283 - 287
  • [27] Numerical Simulation of Turbulent Pipe Flow for Water Hammer
    Shamloo, Hamid
    Mousavifard, Maryam
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 2015, 137 (11):
  • [28] On the in-series and branching dual-technique - based water-hammer control strategy
    Triki, Ali
    Trabelsi, Mounir
    URBAN WATER JOURNAL, 2021, 18 (08) : 631 - 639
  • [29] WATER-HAMMER PHENOMENA IN A ONE-COMPONENT 2-PHASE BUBBLY FLOW
    FUJII, T
    AKAGAWA, K
    NUCLEAR ENGINEERING AND DESIGN, 1993, 141 (1-2) : 101 - 110
  • [30] 2-PHASE FLOW AND WATER-HAMMER LOADS IN VESSELS, PIPING AND STRUCTURAL SYSTEMS
    MOODY, FJ
    SHIN, YW
    JOURNAL OF PRESSURE VESSEL TECHNOLOGY-TRANSACTIONS OF THE ASME, 1984, 106 (03): : 303 - 303