Perbandingan Efisiensi Turbin Uap Kondisi Aktual Berbasis Data Komissioning Sesuai Standard ASME PTC 6

Main Article Content

Agus Noor Sidiq
Muhammad Anwar

Abstract

The performance of steam turbine is very important to know and analyze to understand the actual condition compared to conditions of commissioning. The purpose of this paper is to understand the performance by comparing the efficiency of the steam turbine in actual conditions based on  commissioning data in accordance with ASME PTC 6 rules. By doing this, it can be known the actual performance experienced by the steam turbine, the actual condition is what will be compared with the commissioning data so that later will be obtained performance differences that will be a concern in the continuous improvement of the steam turbine. The observations were made at Tarahan Power Plant Unit 3 regarding the condition of steam entering the turbine in this case the pressure and temperature, the condition of the extraction steam, and the condition of the exhaust side that will affect the performance analysis of the steam turbine.

Downloads

Download data is not yet available.

Article Details

How to Cite
Sidiq, A. N., & Anwar, M. (2021). Perbandingan Efisiensi Turbin Uap Kondisi Aktual Berbasis Data Komissioning Sesuai Standard ASME PTC 6. KILAT, 10(1), 190–199. https://doi.org/10.33322/kilat.v10i1.1188
Section
Articles

References

[1] A. S. Karakurt and Ü. Güne?, “Performance analysis of a steam turbine power plant at part load conditions,” J. Therm. Eng., vol. 3, no. 2, pp. 1121–1128, 2017, doi: 10.18186/thermal.298611.
[2] T. M. Anggraini, A. S. Sanjaya, and R. A. Wikanswasto, “Perhitungan Asr dan Efisiensi Internal Steam Turbine (Back Pressure),” J. Chemurg., 2019, doi: 10.30872/cmg.v2i2.2231.
[3] E. Yohana and R. Romadhon, “Analisa Efisiensi Isentropik dan Exergy Destruction Pada Turbin Uap Sistem Pembangkit Listrik Tenaga Gas dan Uap,” ROTASI, 2017, doi: 10.14710/rotasi.19.3.134-138.
[4] S. Satiti, “Analisis Performa PLTU Versus Variasi Beban pada Turbin Uap Menggunakan Software Cycle Tempo,” 2015.
[5] T. Tanuma, Advances in steam turbines for modern power plants. 2016.
[6] Y. R. Febriansyah, “Analisis Termodinamika pada PLTU (Pembangkit Listrik Tenaga Uap) Terhadap Pembebanan Operasi di PT. X,” Jur. Tek. Mesin, Inst. Sains Teknol. AKPRIND Yogyakarta, 2018.
[7] H. Abbas, J. Jamaluddin, M. Arif, and A. Amiruddin, “ANALISA PEMBANGKIT TENAGA LISTRIK DENGAN TENAGA UAP DI PLTU,” ILTEK J. Teknol., 2019, doi: 10.47398/iltek.v14i01.362.
[8] “ASME PTC 6-2004 Steam Turbine Performance Test Code.pdf.” .
[9] Sunarwo and Supriyo, “Analisa Heat Rate Pada Turbin Uap Berdasarkan Performance Test Pltu Tanjung Jati B Unit 3,” Tek. Energi, 2015.
[10] R. Apriandi and A. Mursadin, “ANALISIS KINERJA TURBIN UAP BERDASARKAN PERFORMANCE TEST PLTU PT. INDOCEMENT P-12 TARJUN,” Sci. J. Mech. Eng. Kinemat., 2016, doi: 10.20527/sjmekinematika.v1i1.26.
[11] M. Sagaf and S. Alim, “PREDIKSI KENAIKAN HEAT RATE TURBIN UAP PADA PEMBANGKIT LISTRIK BERKAPASITAS 660 MW,” J. Ilm. MOMENTUM, 2019, doi: 10.36499/jim.v15i2.3075.
[12] E. Yohana, B. Farizki, N. Sinaga, M. E. Julianto, and I. Hartati, “Analisis Pengaruh Temperatur dan Laju Aliran Massa Cooling Water Terhadap Efektivitas Kondensor di PT. Geo Dipa Energi Unit Dieng,” ROTASI, 2019, doi: 10.14710/rotasi.21.3.155-159.
[13] V. Apriyanti, A. D. Pasek, Abdurrachim, W. Adriansyah, and R. Abdurrahman, “Perancangan Perangkat Eksperimen Kondensasi Kontak Langsung dengan Keberadaan Non Condensable Gas,” Proceeding Semin. Nas. Tah. Tek. Mesin XIV (SNTTM XIV), 2015.
[14] S. Dykas, M. Majkut, M. Strozik, and K. Smo?ka, “Experimental study of condensing steam flow in nozzles and linear blade cascade,” Int. J. Heat Mass Transf., 2015, doi: 10.1016/j.ijheatmasstransfer.2014.09.010.
[15] A. Rosyada, A. R. Anhar, and I. Silanegara, “Analisis Kinerja Kondensor Unit Iv Sebelum Dan Sesudah Overhaul,” POLITEKNOLOGI. 2017.