Developing a digital twin of centrifugal pump for performance evaluation

被引:5
|
作者
Kasat P. [1 ]
Kulkarni M. [1 ]
Gundeti K. [1 ]
Kangale K. [1 ]
Deshmukh B.B. [1 ]
Mistry R.D. [1 ]
机构
[1] Mechanical Engineering Department, Walchand Institute of Technology, Maharashtra, Solapur
来源
关键词
Centrifugal Pump; Digital Twin; Performance Evaluation; ThingSpeak;
D O I
10.1016/j.matpr.2022.09.574
中图分类号
学科分类号
摘要
Performance Evaluation of a physical asset can be made effortless with a headway to its virtual replica “A Digital Twin”. This article focuses on a thorough review of a digital twin of a centrifugal pump for performance evaluation. An exception to conventional performance evaluation method of a centrifugal pump can be made by its digital twin. This also proves beneficial for higher capacity pumps with appropriate scaling of the twin as the variant changes. A digital twin system may be useful to eliminate the setup and installation time, and the capital cost to develop product specific test bench. A twin which can be simulated and evaluated using MATLAB can be developed. The process that was used for creating a digital twin of centrifugal pump involves steps like selection of parameters to be measured, selection of microcontroller for data acquisition, IOT cloud interfacing using ThingSpeak, simulation of MATLAB model of centrifugal pump in ideal environment for flow rate measurement using Simscape. For obtaining the real-time data for flow rate of the centrifugal pump, a water flow sensor was attached to the pump and the sensor data was obtained and uploaded to ThingSpeak using ESP32 WiFi module. The ideal data for the flow rate of the centrifugal pump was obtained by creating a SimScape model of the centrifugal pump and flow sensor arrangement and simulating it in ideal environment. This will include, receiving sensor data to and during the operation of the pump and monitored on ThingSpeak IOT platform. The result of this entire process will be a statistical twin of a centrifugal pump for its performance evaluation based on the performance parameter- flow rate. © 2023
引用
收藏
页码:1798 / 1802
页数:4
相关论文
共 50 条
  • [21] Comparative evaluation of the pump mode and turbine mode performance of a large vaned-voluted centrifugal pump
    Yang, Shijie
    Li, Puxi
    Lu, Zhaoheng
    Xiao, Ruofu
    Zhu, Di
    Lin, Kun
    Tao, Ran
    FRONTIERS IN ENERGY RESEARCH, 2022, 10
  • [22] Developing a Virtual Actuator as a Digital Twin
    Aydemirl, Hakan
    Zengin, Ugur
    Kruschinski, Denis
    Hartmann, Sven
    Durak, Umut
    AIAA AVIATION 2022 FORUM, 2022,
  • [23] Developing and Evolving a Digital Twin of the Organization
    Edrisi, Farid
    Perez-Palacin, Diego
    Caporuscio, Mauro
    Giussani, Samuele
    IEEE ACCESS, 2024, 12 : 45475 - 45494
  • [24] A digital twin system for centrifugal pump fault diagnosis driven by transfer learning based on graph convolutional neural networks
    Xu, Zifeng
    Wang, Zhe
    Gao, Chaojia
    Zhang, Keqi
    Lv, Jie
    Wang, Jie
    Liu, Lilan
    COMPUTERS IN INDUSTRY, 2024, 163
  • [25] ENERGY EVALUATION IN CENTRIFUGAL PUMP SELECTION.
    Anon
    Plant Engineering (Barrington, Illinois), 1979, 33 (07): : 71 - 76
  • [26] Developing Digital Twin Data Structure and Integrated Cloud Digital Twin Architecture for Roads
    Chen, Weiwei
    Brilakis, Ioannis
    COMPUTING IN CIVIL ENGINEERING 2023-VISUALIZATION, INFORMATION MODELING, AND SIMULATION, 2024, : 424 - 432
  • [27] ANALYZING CENTRIFUGAL PUMP PERFORMANCE WITH A MICROCOMPUTER.
    Reinhardt, John E.
    1600, (39):
  • [28] Effect of stacking conditions on performance of a centrifugal pump
    Peng Yan
    Shiyang Li
    Shuai Yang
    Peng Wu
    Dazhuan Wu
    Journal of Mechanical Science and Technology, 2017, 31 : 689 - 696
  • [29] In vitro evaluation of the TandemHeart pediatric centrifugal pump
    Svitek, Robert G.
    Smith, Douglas E.
    Magovern, James A.
    ASAIO JOURNAL, 2007, 53 (06) : 747 - 753
  • [30] CENTRIFUGAL PUMP PERFORMANCE CALCULATION FOR HOMOGENEOUS SUSPENSIONS
    Graham, L. J. W.
    Pullum, L.
    Slatter, P.
    Sery, G.
    Rudman, M.
    CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 2009, 87 (04): : 526 - 533