Optimizing pipeline systems with surge tanks using a dimensionless transient model

被引:0
|
作者
Kim, Sanghyun [1 ]
机构
[1] Pusan Natl Univ, Dept Environm Engn, 2 Busandaehak Ro 63beon Gil, Busan 46241, South Korea
关键词
dimensionless frequency response; hydraulic transient; optimization; pipeline systems; pump; surge tank;
D O I
10.2166/hydro.2024.007
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The design factor of surge tank installation is a practical issue in the management of pressurized pipeline systems. To determine the general criteria for surge tank design in pipeline systems, dimensionless governing equations for unsteady flow and their solutions were developed for two widely used pipeline systems equipped with surge tanks. One is the reservoir pipeline surge tank valve and the other is the pipeline system with a pumping station and check valve protected by the surge tank. Two distinct time-domain responses, point- and line-integrated pressure, can be used as objective functions to optimize the surge tank area. The developed formulations were integrated into a metaheuristic engine, particle swarm optimization, to explore a general solution for a wide range of dimensionless resistances that comprehensively address various flow features into one dimensionless parameter. Depending on the dimensionless location of the surge tank, the optimum dimensionless surge tank areas were delineated for a range of dimensionless resistances for the two pipeline systems with and without a pumping station protected by a surge tank.
引用
收藏
页码:1385 / 1395
页数:11
相关论文
共 50 条
  • [1] Dimensionless Impedance Method for General Design of Surge Tank in Simple Pipeline Systems
    Kim, Sanghyun
    Choi, Dooyong
    ENERGIES, 2022, 15 (10)
  • [2] Surge analysis in a centrifugal compressor using a dimensionless surge number
    Yoon, Ju-Woung
    Wilailak, Supaporn
    Bae, Ju-Eon
    Lee, Chul-Jin
    Kim, In-Won
    CHEMICAL ENGINEERING RESEARCH & DESIGN, 2020, 164 : 240 - 247
  • [4] A SIMPLIFIED TRANSIENT MODEL FOR PIPELINE-RISER SYSTEMS
    SARICA, C
    SHOHAM, O
    CHEMICAL ENGINEERING SCIENCE, 1991, 46 (09) : 2167 - 2179
  • [5] Simulation of Wind Speed in the Ventilation Tunnel for Surge Tanks in Transient Processes
    Yang, Jiandong
    Wang, Huang
    Guo, Wencheng
    Yang, Weijia
    Zeng, Wei
    ENERGIES, 2016, 9 (02):
  • [6] CLEANING LARGE BULK TANKS AND PIPELINE SYSTEMS
    PARSONS, PW
    JOURNAL OF FOOD PROTECTION, 1983, 46 (10) : 932 - 932
  • [7] Surge wave characteristics for hydropower station with upstream series double surge tanks in load rejection transient
    Guo, Wencheng
    Yang, Jiandong
    Teng, Yi
    RENEWABLE ENERGY, 2017, 108 : 488 - 501
  • [8] Numerical analysis of the hydraulic transient response in the presence of surge tanks and relief valves
    Riasi, Alireza
    Tazraei, Pedram
    RENEWABLE ENERGY, 2017, 107 : 138 - 146
  • [9] Flow throttling in surge tanks using porous structures
    Asiaban, Puria
    Fathi-Moghadam, Manoochehr
    INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING, 2018, 168 : 301 - 309
  • [10] A transient 2-D water quality model for pipeline systems
    Naser, Gholamreza
    Karney, Bryan W.
    JOURNAL OF HYDRAULIC RESEARCH, 2008, 46 (04) : 516 - 525