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ANALISIS KINERJA DAN EVALUASI TEKNO-EKONOMI RETROFITTING ENERGI SURYA UNTUK PEMBANGKIT LISTRIK BATUBARA DI PROVINSI KALIMANTAN TENGAH

ALI, Irfan and Hadiyanto, Hadiyanto and Wardaya, Asep Yoyo (2025) ANALISIS KINERJA DAN EVALUASI TEKNO-EKONOMI RETROFITTING ENERGI SURYA UNTUK PEMBANGKIT LISTRIK BATUBARA DI PROVINSI KALIMANTAN TENGAH. Masters thesis, UNIVERSITAS DIPONEGORO.

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Abstract

Sektor pembangkit listrik berkontribusi terhadap perubahan iklim, sehingga upaya mitigasi diperlukan untuk memastikan komitmen membatasi kenaikan suhu global di bawah 2°C tetap berjalan. Salah satu langkah strategis adalah mengintegrasikan energi terbarukan ke dalam pembangkit listrik yang sudah ada. Studi ini meneliti integrasi energi surya dalam operasional pembangkit listrik tenaga batu bara dengan menggantikan ekstraksi uap pada pemanas air umpan bertekanan tinggi No. 7. Analisis dilakukan terhadap kinerja sebelum dan sesudah retrofit dalam dua mode: peningkatan daya (PB) dan penghematan bahan bakar (FS), termasuk evaluasi pada berbagai tingkat beban. Hasil menunjukkan peningkatan efisiensi termal hingga 2% pada kedua mode. Konsumsi bahan bakar spesifik menurun signifikan, dengan penurunan sebesar 15,05 g/kWh pada mode PB dan 15,75 g/kWh pada mode FS. Pengurangan konsumsi batubara berkontribusi pada penurunan emisi CO2 masing-masing sebesar 4,69% (FS) dan 4,94% (PB). Efisiensi konversi tenaga surya ke listrik meningkat seiring penurunan beban. Dalam mode FS, kontribusi listrik tenaga surya pada beban VWO, 100%, 75%, dan 50% masing-masing sebesar 5,23%, 5,53%, 7,76%, dan 11,92%. LCOE listrik tenaga surya untuk kedua mode tercatat sebesar Rp 431,82/kWh, dengan estimasi pengembalian investasi dalam 5,87 tahun.
Kata kunci: pembangkit listrik tenaga batu bara, emisi CO2, energi surya, skenario retrofit, peningkatan daya (PB), penghematan bahan bakar (FS)

The power generation sector contributes to climate change, making mitigation efforts essential to ensuring the commitment to limiting global temperature rise below 2°C remains on track. One strategic approach is integrating renewable energy into existing power plants. This study examines the integration of solar energy into coal-fired power plant operations by replacing steam extraction in high-pressure feedwater heater No. 7. Performance analysis was conducted before and after the retrofit under two modes: power boost (PB) and fuel saving (FS), including evaluations at various load levels. Results show an increase in thermal efficiency of up to 2% in both modes. Specific fuel consumption decreased significantly, with reductions of 15.05 g/kWh in PB mode and 15.75 g/kWh in FS mode. Lower coal consumption contributed to CO2 emission reductions of 4.69% (FS) and 4.94% (PB), respectively. Solar-to-electricity conversion efficiency improved as load decreased. In FS mode, solar power contributions at VWO, 100%, 75%, and 50% load levels were 5.23%, 5.53%, 7.76%, and 11.92%, respectively. The levelized cost of electricity (LCOE) for solar power in both modes was recorded at 431.82 Rupiah/kWh, with an estimated investment payback period of 5.87 years
Kata kunci: coal-fired power plant, CO2 emission, solar energy, retrofit scenario, power-boost (PB), fuel-save (FS)

Item Type: Thesis (Masters)
Uncontrolled Keywords: pembangkit listrik tenaga batu bara, emisi CO2, energi surya, skenario retrofit, peningkatan daya (PB), penghematan bahan bakar (FS)
Subjects: Engineering
Divisions: Postgraduate Program > Master Program in Energy
Depositing User: ekana listianawati
Date Deposited: 17 Jul 2025 08:21
Last Modified: 17 Jul 2025 08:21
URI: https://eprints2.undip.ac.id/id/eprint/35078

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