The study fluid analysis of a new blowdown pump sealing line

Authors

DOI:

https://doi.org/10.22219/jemmme.v8i1.25408

Keywords:

blowdown pump, desalination plant, fluid system

Abstract

The sealing system is used on the pump as a sealing medium between a stationary object (the pump casing) and a rotating object (shaft), maintains the shaft temperature, and keeps the fluid not in or out of the system. The blowdown pump in Priok Combined Cycle Power Plant (CCPP) used service water as a medium for the sealing system because potential seawater will contaminate the pumped water. In this case, the authors observe a blowdown pump, one of the pumps in the desalination system that pumps the seawater. There is no potential for contaminating fluid systems by sealing water because the fluid contains many salts and is thrown directly into the ocean. This project is to replace the water sealing using seawater as a sealing system on the blowdown pump will not harm the system because the fluid system is carried out. This research can reduce the use of water service by as much as 1142 liters per day for 2 desalination plants because the discharge water used sealing each desalination unit is 23,79 liters / hour / desalination.

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References

Mohammed Ali SW, Vahedi N, Romero C, Oztekin A. An optimization for water requirement in natural gas combined cycle power plants equipped with once-through and hybrid cooling systems and carbon capture unit. Water-Energy Nexus. 2020;3:117–34. doi: https://doi.org/10.1016/j.wen.2020.08.001

Li LJ, Qiu GY, Yan CH. Relationship between Water Use and Energy Generation from Different Power Generation Types in a Megacity Facing Water Shortages: A Case Study in Shenzhen. Water (Switzerland). 2022 Oct 1;14(20). doi: https://doi.org/10.3390/w14203226

Roy Melky AARMASHADCAEO. PRIOK POMU SUSTAINABLE POWER PLANT Pengelolaan Lingkungan Berkelanjutan PT Indonesia Power Priok POMU. 2022.

Wang Z. Water Treatment Equipment and System. Design of Solar Thermal Power Plants. 2019 Jan 1;437–8. doi: https://doi.org/10.1016/C2017-0-03007-0

Liu Jie HLXi. A CENTRIFUGAL PUMP SEALING METHOD BASED ON THE TRANSVERSE PRESSURE CONTROL. Int J Res Eng Technol. 2018 Sep 25;07(09):15–9. doi: https://doi.org/10.15623/ijret.2018.0709002

Sudirman. Major and Minor Head Losses Analysis on The Piping System in Pondok Pesantren Tahfizhul Qur’an Ibnu Abbas Tarakan. Journal of Applied Electrical & Science Technology. 2021;03(1):11–6. doi: https://doi.org/10.36456/best.vol3.no1.3535

Seroor Atalah Khaleefa Ali. Study of Pressure Losses in Piping System. International Journal of Science and Research. 2019;8(6):1816–9.

Mufarrih A, Silalahi SK, Setyowidodo I. Analysis of Head Losses Consequent Section Diameter, Pipe Material and Flow Debit Using Contrast Test (Scheffe’s Method) at 900 Elbow Joint. Journal of Engineering. 2017;3(3):9–14. doi: http://dx.doi.org/10.12962/j23378557.v3i3.a3081

Greeff I. Piping System Design. 2000 Feb. Available from: University of Pretoria

Bruce R. Munson DFYTHOWWH. Fundamentals of Fluid Mechanics. 6th ed. Owens Mark, editor. United States of America; 2009.

Shashi Menon E. Fluid Flow in Pipes. Transmission Pipeline Calculations and Simulations Manual. 2015 Jan 1;149–234. doi: https://doi.org/10.1016/C2009-0-60912-0

Madeira AA. Major and minor head losses in a hydraulic flow circuit: Experimental measurements and a Moody’s diagram application. Ecletica Quimica. 2020;45(3):47–56. doi: https://doi.org/10.26850/1678-4618eqj.v45.3.2020.p47-56

Nurnawaty S. ANALISIS PERUBAHAN TINGGI TEKANAN AKIBAT SUDUT BELOKAN 90 DAN 450 DENGAN MENGGUNAKAN FLUID FRICTION APPARATUS. Jurnal Teknik Hidro. 2020;13(1):28–37. doi: https://doi.org/10.26618/th.v13i1.3980

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Published

2023-07-24

How to Cite

Muhammad, R. (2023). The study fluid analysis of a new blowdown pump sealing line . Journal of Energy, Mechanical, Material, and Manufacturing Engineering, 8(1), 15–22. https://doi.org/10.22219/jemmme.v8i1.25408

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