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Peerformance Analysis Of Centrifugal Pump To Supply The Clean Water Needs Of Bumn Buildings In Surabaya

Analisa Kinerja Pompa Sentrifugal Untuk Menyuplai Kebutuhan Air Bersih Gedung Bumn Di Surabaya

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DOI:

https://doi.org/10.21070/ups.8840

Keywords:

centrifugal pump, distribution of clean water, head loss, pipe

Abstract

This research discusses the performance analysis of centrifugal pumps used to meet clean water needs in BUMN buildings in Surabaya. Clean water supply is very important for various daily needs, such as sinks, ablution faucets and toilets.. This research uses 3 CDX/I 120/20 IE3 type pump units which are operated automatically with PLC control and a pressure switch to regulate the minimum pressure so that the pump can operate optimally. The analysis results show that the pump can supply 160 l/min of water per unit, and if the three pumps operate simultaneously, the total water supply reaches 480 l/min. In addition, the maximum head of the pump reaches 40 meters, which is sufficient to meet the needs of a building with a height of 9 meters. Headloss analysis shows that when all the taps are opened simultaneously, the headloss that occurs is 15.192.358,99 cm 

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References

E. Widodo and R. Dwi Jayanto, “The Manufacturing Planning of Installation Series-Parallel Combination Centrifugal Pump Testing Equipment,” R.E.M. (Rekayasa Energi Manufaktur) Jurnal, vol. 6, no. 1, pp. 33–40, 2021.

R. Candra, “Perancangan Pompa Sentrifugal Dan Diameter Luar Impeller Untuk Kebutuhan Air Kapasitas 60 Lpm Di Gedung F Dan D Universitas Muhammadiyah Tangerang,” Jurnal Teknik, vol. 7, no. 1, pp. 15–25, 2018..

D. S. Permana, “Analisa Jenis Dan Spesifikasi Pompa Air Bersih Gedung Pabrik Perakitan Pt. Adm,” Sinergi, vol. 21, no. 2, pp. 91, 2017.

R. D. Jayanto, R. Firdaus, and A. Akbar, “The Manufacturing Planning of Installation Series-Parallel Combination Centrifugal Pump Testing Equipment Perencanaan Manufaktur Instalasi Pompa Sentrifugal Laboratorium Teknik Mesin Dengan Kombinasi Rangkaian Seri dan Paralel,” REM (Rekayasa Energi Manufaktur), vol. 6, no. 1, 2021.

P. Studi, E. Industri, J. T. Elektro, and P. N. Jakarta, “Program studi elektronika industri jurusan teknik elektro politeknik negeri jakarta 2021,” 2021.

D. Ermadi and Darmanto, “Perancangan Alat Praktikum Pengujian Headloss Aliran Fluida Tak Termampatkan,” J. Ilm. Cendekia Eksakta, vol. 2, no. 2, pp. 1–7, 2017.

Sularso and H. Tahara, Pompa dan Kompresor, Jakarta: PT. Pradnya, 2004.

Y. Iskandar, N. Nazaruddin, and Z. Arif, “Pengaruh Jumlah Sudu Impeller Terhadap Debit Air Yang Dihasilkan Pompa Centrifugal,” Journal of Mechanical Engineering Manufactures Materials and Energy, vol. 5, no. 1, pp. 78–90, 2021.

Y. C. Narding, D. Kusuma, N. Saidatin, and Z. Lillahulha, “Pengaruh Variasi Ukuran Pipa terhadap Head loss pada Instalasi Perpipaan di Desa Sumbermanggis,” Semin. Nas. Teknol. Ind. Berkelanjutan I (SENASTITAN I), pp. 365–369, 2021.

R. Subagyo, “Analisis Koefisien Kerugian Pada Percabangan Pipa,” INFO-TEKNIK, vol. 10, no. 1, pp. 56–60, 2009.

C. F. Colebrook, “Turbulent flow in pipes with particular reference to the transition region between the smooth and rough pipe laws,” Journal of the Institution of Civil Engineers, vol. 11, no. 4, pp. 133–156, 1939.

Made Whidi, “Cara Menghitung Head Loss atau Kehilangan Tekanan Air di dalam Pipa,” 2021.

M. IHSAN, Perancangan Pompa Sentrifugal Multi Stage Dengan Kapasitas 100 M³/Jam dan Head Total 300 Meter, Doctoral dissertation, Institut Teknologi Dirgantara Adisutjipto, 2018.

Posted

2025-08-11