Effect Of Electric Load On Steam Flow Rate At Steam Turbine As Generator

Authors

  • Dedi Wardianto Institut Teknologi Padang
  • Marfizal Sekolah Tinggi Teknologi Nasional Jambi
  • Sufiyanto Sekolah Tinggi Teknologi Nasional Jambi

DOI:

https://doi.org/10.21063/jtm.2022.v12.i2.104-109

Keywords:

Steam, Turbine generator, power, efficiency

Abstract

PT. Kurnia Batang Hari is a palm oil processing factory into palm oil. At PT KBHB there is a tool called “Steam Turbine Generator Type RB5” which functions as a power generator. This study aims to determine the effect of the load on the mass flow rate, turbine generator power, and determine the efficiency of the steam turbine generator. The research method is to take boiler and turbine data directly for 1 week. Get the enthalpy value from the steam table and can calculate based on the research objective. Based on the research conducted, it was found that the highest average flow rate on Wednesday was 3.48 kg/s. The highest generator power yield on Sunday is 1661 KW. The results of the calculation of the highest average generator efficiency on Sundays are 57.11%. Conclusion It can be seen that if the load on the turbine is getting bigger, then the mass flow rate of the steam will be even bigger and it also depends on the pressure of the steam entering and leaving the turbine. The average load of 1 week borne by the generator is 885 KW and the mass flow rate is 3.81 kg/s. The generator power produced during processing is an average of 1 week, which is 1600 KW. The average efficiency of the generator in 1 week is 55.52% on Sunday.

References

Pitrandjalisari, V., & Putra, T. D. (2013). Analisis kapasitas produksi uap terhadap stabilitas putaran mesin turbin. Widya Teknika ISSN 1411 – 0660, 21(1), 42– 48.

Mulyani, D., & Hartono, D. (2018). Pengaruh Efisiensi Energi Listrik pada Sektor Industri dan Komersial terhadap Permintaan Listrik di Indonesia. Jurnal Ekonomi Kuantitatif Terapan, 11(1), 1–7.

Hetharia, M., & Lewerissa, Y. . (2018). Analisis Energi Pada Perencanaan Pembangkit Listrik Tenaga Uap (Pltu) Dengan Cycle Tempo. Jurnal Voering, 3(1), 23. https://doi.org/10.32531/jvoe.v3i1.85

Kurniawan, I., & Jamaludin. (2017). ANALISIS PERHITUNGAN DAYA TURBIN YANG DIHASILKAN DAN EFISIENSI TURBIN UAP PADA UNIT 1 DAN UNIT 2 DI PT. INDONESIA POWER UBOH UJP BANTEN 3 LONTAR. Jurnal Teknik Mesin (ISSN: 2549-5038 e-ISSN: 2580- 4979), 1(2), 1–8.

Moran, M. J., & Shapiro, H. N. (2004). THERMODINAMIKA JILID 2. In W. HANDAYANI & I. W. SANTIKA (Eds.), THERMODINAMIKA JILID 2 (4th ed., p. 2004). ERLANGGA J. U. Duncombe, “Infrared navigation—Part I: An assessment of feasibility,” IEEE Trans. Electron Devices, vol. ED-11, pp. 34–39, Jan. 1959.

Onwuamaeze, P. I. (2018). IMPROVING STEAM TURBINE EFFICIENCY : AN APPRAISAL. RESEARCH JOURNAL OF MECHANICAL OPERATIONS, 1(1), 24–30

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Published

2022-10-31

How to Cite

Wardianto, D., Marfizal, & Sufiyanto. (2022). Effect Of Electric Load On Steam Flow Rate At Steam Turbine As Generator. Jurnal Teknik Mesin, 12(2), 104–109. https://doi.org/10.21063/jtm.2022.v12.i2.104-109