Rediansyah, Widy Rahmat Tanjung (2014) Analisis Effisiensi Pembangkit Listrik Di Pt. Pjb Up Paiton Unit 1. Undergraduate thesis, Institut Teknologi Sepuluh Nopember Surabaya.
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Abstract
Telah dilakukan penelitian pada pembangkit listrik tentang penurunan performansi. Penurunan performansi disebabkan oleh beberapa faktor yang mempengaruhi. Sebelum mendapatkan faktor-faktor yang mempengarui terjadinya performansi, maka perlu dilakukan analisis. Analisis ini dilakukan untuk melihat trend penurunan performansi dari komponen-komponen yang ada pada pembangkit listrik. Yang berpengaruh besar dalam penelitian ini adalah boiler, turbin, dan HE. Hasil dari rata-rata penurunan performansi boiler yaitu terletak pada nilaioverall heat transfer coefficient economizer, superheater, dan reheat. Jika di tinjau dari nilaioverall heat transfer coefficient maka penurunan performansi economizer sebesar -2.663 (W/m2.°C) per jam. Penurunan performansipada Reheat A sebesar -0.059 (W/m2.°C)perjam. Nilai penurunan performansi pada Reheat B sebesar -0.043 (W/m2.°C)perjam. Nilai penurunan performansi pada Superheat A sebesar -10.116 (W/m2.°C) per jam. Nilai penurunan performansi pada Superheat B sebesar -12.4268 (W/m2.°C)perjam. Nilai penurunan performansi pada HPH 1 sebesar -0.98 (W/m2.°C)perjam. Nilai penurunan performansi pada HPH 2 sebesar -0.6802 (W/m2.°C)perjam. Nilai penurunan performansi pada HPH 3 sebesar -0.625 (W/m2.°C)perjam. Nilai penurunan performansi pada LPH 1 sebesar -0.0968 (W/m2.°C)perjam. Nilai penurunan performansi pada LPH 2 sebesar -0.001 (W/m2.°C) perjam. Nilai penurunan performansi pada LPH 3 sebesar -0.0702 (W/m2.°C)perjam. Nilai penurunan performansi pada condenser sebesar -0.255 (W/m2.°C)perjam.Untuk turbin penurunan efficiency sebesar-0.00084% perjam
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Has been conducted research on electric power plant about performance decline. Performance decline. Performance decline is caused by some factors. Before getting the factors that affect performance decline, the analysis should be done. This analysis was carried out to look at the trend of decline in the performance of existing components in the power plant. The component that affect in this research is boiler, turbine, and HE. Value of the average performance decline is located at overall value of heat transfer coefficient economizer, super heater, and reheat. If viewed from overall value of heat transfer coefficient, the performance decline at economizer is -2.66 (W/m2.°C) per Hour. The value of performance decline at Reheat A is -0.059 (W/m2.°C)per hour. The value of performance decline at Reheat B is -0.043(W/m2.°C)per hour. The value of performance decline at Superheat A is –10.116 (W/m2.°C)per hour. The value of performance decline at Superheat B is -12.4268 (W/m2.°C)per hour. The value of performance decline at HPH 1 is -0.98 (W/m2.°C)per hour. The value of performance decline at HPH 2 is -0.6802 (W/m2.°C)per hour. The value of performance decline at HPH 3 is –o.625 (W/m2.°C)per hour. The value of performance decline at LPH 1 is -0.0968 (W/m2.°C)per hour. The value of performance decline at LPH 2 is -0.001 (W/m2.°C)per hour. The value of performance decline at LPH 3 is -0.0702 (W/m2.°C)per hour. The value of performance decline at condenser is -0.255 (W/m2.°C)per hour. The value of efficiency decline at turbine is 0.00084% per hour
Item Type: | Thesis (Undergraduate) |
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Additional Information: | RSF 621.312 Red a |
Uncontrolled Keywords: | Turbin, Boiler, HPH, LPH, Condenser, Penurunan Performansi, efficiency |
Subjects: | T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK1087 Photovoltaic power generation |
Divisions: | Faculty of Industrial Technology > Physics Engineering > 30201-(S1) Undergraduate Thesis |
Depositing User: | EKO BUDI RAHARJO |
Date Deposited: | 07 Jan 2021 03:23 |
Last Modified: | 07 Jan 2021 03:23 |
URI: | http://repository.its.ac.id/id/eprint/82374 |
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