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Yudho Hartanto
Abstrak :
Untuk mendapatkan skema terbaik dalam manajemen BOG dan pemanfaatan potensi eksergi LNG di fasilitas terminal regasifikasi Arun sebagai pembangkit energi listrik, maka dilakukan penelitian untuk membandingkan secara teknis dan komersial skema terbaik  pemanfaatan potensi exergi LNG dari proses regasifikasi.  Manajemen pemanfaatan BOG dengan laju  9.8 ton/jam dan pemanfaatan potensi exergi LNG dengan laju 150 ton/jam dengan teknologi Rankine Cycle (RC), Direct Expansion (DE)  atau kombinasi RC+DE untuk  pembangkit listrik diteliti dalam tesis ini.  Energi listrik yang dihasilkan dijual kepada PLN dengan skema jual beli listrik dengan harga maksimal 90% dari BPP sebesar Rp 1,673/kWh untuk Aceh dan Sumatera Utara. Data dari hasil penelitian dan simulasi sistem, didapatkan bahwa pemanfaatan potensi exergi LNG skema DE menghasilkan daya bersih listrik sebesar 2,703 kW, skema RC menghasilkan 3,916 kW, dan  skema DE+ RC menghasilkan 5,849 kW. Pendapatan dari penjualan daya listrik yang dihasilkan akan meningkatkan pendapatan operasional perusahaan. ......To get the best scheme in BOG management and utilization of LNG exergy potential in the Arun LNG regasification facility to generate electricity, this research is conducted to compare the best technical and commercial schemes for utilization of LNG potential exergy from the regasification process. The management system is required to manage  BOG  flow rate 9.8 ton / hour and LNG cold energy utilization with flowrate 150 ton/hour during  regasification process to generate electricity using Direct Expansion (DE), Rankine Cycle (RC) or combined Direct Expansion + Rankine Cycle (DE+RC)  technologies are studied in this thesis. The electricity produced is sold to PLN under a power purchase scheme at a maximum price  90% from the BPP tariff Rp 1,673/kWh for Aceh dan Sumatera Utara.  Data from the results of research and system simulations, it is found that the utilization of the LNG exergy  in the DE scheme produces a net electric power of 2,703 kW, the RC scheme produces 3,916 kW, and the DE + RC scheme produces 5,849 kW.  The income from the sale of the electric power generated will increase Company's income.
Depok: Fakultas Teknik Universitas Indonesia, 2021
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UI - Tesis Membership  Universitas Indonesia Library
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Bakhrul Ulum
Abstrak :
Excellence in skilled operation is vital for the efficiency of geothermal power plants. Mount Salak geothermal power plant unit 1-2-3 has consistently produced no less than 180 MWe to the Java-Bali grid since its first commercial operation in 1994, with an equivalent availability factor (EAF) average of 96%. Owing to this long operation period, power plant efficiency must be improved for the sustainable production of electricity. In this study, energy and exergy analysis has been undertaken to ascertain the amount of energy that is used in the power plant’s current condition, and to determine the plant’s overall system losses. Research was carried out by collecting data relating to temperature, pressure, and mass flow rate. Data were analyzed using the control volume to assess the thermal and mass balance and ascertain the value of exergy. Analysis was conducted theoretically and compared with results calculated by Engineering Equation Solver (EES) software. The results showed that from 1069.90 MWe in steam energy entering the system, the total amount of exergy was 302.42 MWe. Mount Salak geothermal power plant unit 1-2-3 had an overall first law efficiency of 16.75% and an overall second law efficiency of 59.27%. The greatest losses - 27.84% of the total exergy - were in the condensers. This was caused by the quality of cooling water entering condensers, which was in turn a result of cooling tower performance. Results suggest that turbine unit 1 should be investigated further to determine causes of decreased capacity.
Depok: Faculty of Engineering, Universitas Indonesia, 2017
UI-IJTECH 8:7 (2017)
Artikel Jurnal  Universitas Indonesia Library