Perancangan Ulang Komponen Condensate Booster Pump pada System Re-Injeksi di PLTP X

Authors

  • Dzaky Fauzan Hilmy Adityawarman Politeknik Negeri Bandung
  • Alvera Apridalianti Melkias Politeknik Negeri Bandung
  • Sapto Prayogo Politeknik Negeri Bandung

DOI:

https://doi.org/10.37859/jst.v11i1.7288
Keywords: Geothermal, Centrifugal Pump, Condesate Pump, Energy Saving

Abstract

PLTP X is a power plant located in West Java, at this time PLTP X uses 2 condensate booster pumps that experience a discrepancy between the pump operation area specification and the actual condition. This problem causes vibration and decreased efficiency thus causing damage to the pump components. The purpose of this research itself is to design pump components in the form of impellers, shafts, pegs, & volutes. Another goal is to calculate the energy savings resulting from the design. This research has a quantitative and experimental nature. The data used is operational data of the PLTP X and other secondary data issued by the PLTP X. The required technical specifications are a head ±130 m, a capacity of 60 m3/h, a rotation of 2970 RPM & an efficiency > 60%.  Based on the results of this study, it was obtained that the pump is a type of low discharge high pressure centrifuge, then the design of this pump has a head of 128.4 m, a capacity of 60 m3/h, an efficiency of 67% and has succeeded in saving energy of 107586.16 kWh per year at its point of operation.

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Author Biographies

Dzaky Fauzan Hilmy Adityawarman, Politeknik Negeri Bandung

Jurusan Teknik Konversi Energi

Alvera Apridalianti Melkias, Politeknik Negeri Bandung

Jurusan Teknik Konversi Energi

Sapto Prayogo, Politeknik Negeri Bandung

Jurusan Teknik Konversi Energi

References

Efficiency B of E. Guide Book- Energy Efficiency in Electrical Utilities. New Delhi: Bureau of Energy Efficiency; 2015.

Sularso; Tahara H. Pompa dan Kompressor (Pemilihan, Pemakaian dan Pemeliharaan). 7th ed. Jakarta: Pradnya Paramita; 2000.

Srinivasan K. Rotodynamic Pumps (Centrifugal and Axial). New Delhi: New Age International (P) Limited Publishers; 2008.

Sularso; Suga K. Dasar Perencanaan dan Pemilihan Elemen Mesin. 11th ed. Jakarta: Pradnya Paramita; 2004.

Karassik, I.J.; Copper, J.P.; Copper, P.; Heald CC. Pump handbook. 3rd ed. New York: McGraw-Hill; 2001.

Lazarkiewicz, S; Troskolanski AT. Impeller Pumps. London: Pergamon Press; 1953.

American Society for Testing and Materials. ASTM A 743/A 743M Standard Specification for Castings, Iron-Chromium, Iron-Chromium-Nickel, Corrosion Resistant, for General Application 2000;01.

Materials AS for T and. ASTM A216/A216M − 12 Standard Specification for Steel Castings, Carbon, Suitable for Fusion Welding, for High-Temperature Service 2012. https://doi.org/10.1520/A0216.

Dietzel F. Turbinen, Pumpen Und Verdichter. 5th ed. Wurburg: Vogel-Verlag; 1980.

Engineers TAS of M. ASME B73.1-2001 Spesification For Horizontal End Suction Centrifugal Pump For Chemical Process 2001.

Aliyu, A.K; Bukar, A.L; Ringim, J.G; A M. An Approach to Energy Saving and Cost of Energy Reduction Using an Improved Efficient Technology. Open Journal of Energy Efficiency 2015;4:61–8.

Ainul G. Konsep Manajemen Energi. Bali: Universitas Udayana; 2016.

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Published

2024-06-26

How to Cite

[1]
D. F. H. Adityawarman, A. A. . Melkias, and S. Prayogo, “Perancangan Ulang Komponen Condensate Booster Pump pada System Re-Injeksi di PLTP X”, JST, vol. 11, no. 1, pp. 325–331, Jun. 2024.

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Section

Research Article