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ISSN

2424-8460(Online)

2251-2608(Print)

Article Processing Charges (APCs)

US$800

Publication Frequency

Quarterly

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Published

2024-02-19

Issue

Vol 10 No 4 (2023): Published

Section

Articles

Design of fl uid pipeline leakage signal acquisition system

Tianqi Wu

Xu Guo

Qinglong Meng


DOI: https://doi.org/10.59429/esta.v10i4.1657


Keywords: fluid; Leakage detection; Communication networks


Abstract

Fluid, namely liquid and gas, is a necessary resource in national production and life, so fl uid plays a pivotal role in the progress of the whole society and the development of human civilization. If the fl uid leaks, and is not found and treated in time, it will cause huge material losses and waste of resources, what is more, it will cause irreversible environmental damage. This paper takes fl uid pipeline leakage detection as the main research object, the main research is as follows: According to the steady-state pipeline as the main analysis goal, C8051F040 single chip microcomputer as the main processor, DS18B20 temperature sensor, CEMPX221 pressure sensor, LWGY-C model turbine fl owmeter for data acquisition, and the collected data through the CAN interface, RS485 interface to the host computer.


References

[1] Yachao Liu,Shaopeng Li,Hongxiang Zhao. Computational Fluid dynamics simulation of leakage in high pressure hydrogen storage facilities [J]. Journal of

Xiamen University (Natural Science Edition), 2023.62 (01) :103-110.

[2] Pengcheng Guo,Xianwen Wang,Shuaihui Sun,Zhe Song. Unsteady Numerical Simulation and Leakage Flow Analysis of Vortex Fluid Machinery [J].

Research and Progress in Hydrodynamics (Series A).20,35(01) :43-46.

[3] Xianming Lang,Ying Guo,Wenshuai Gao,Jiazheng Wang etal. A Method for locating leakage point in Fluid Pipeline based on Ultrasonic Velocity [J].

Information and Control. 2020,49(05): 546-551+559.



ISSN: 2424-8460
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