Pramoedya, Erlangga Candra Pramoedya (2025) Pemetaan Potensi Energi Laut di Laut Sekitar Pulau Halmahera Menggunakan Pemodelan Hidrodinamika. Other thesis, Institut Teknologi Sepuluh Nopember.
![]() |
Text
5016211042-Undergraduate_Thesis.pdf - Accepted Version Restricted to Repository staff only Download (8MB) | Request a copy |
Abstract
Kebutuhan energi listrik di Indonesia terus meningkat, namun pasokannya masih didominasi oleh Pembangkit Listrik Tenaga Uap (PLTU) berbasis batu bara yang menghambat target net zero emission (NZE) 2060. Pemanfaatan energi laut menjadi solusi potensial, sejalan dengan tujuan SDG 7 (Energi Bersih dan Terjangkau). Penelitian ini bertujuan untuk memetakan dan menganalisis potensi tiga jenis energi laut tersebut di perairan sekitar Pulau Halmahera menggunakan metode pemodelan hidrodinamika dengan perangkat lunak Delft3D. Model disimulasikan selama satu tahun penuh (Januari-Desember 2024) menggunakan data batimetri, garis pantai, angin, gelombang, dan pasang surut, kemudian divalidasi menggunakan data dari 9 stasiun pasang surut BIG. Hasil penelitian menunjukkan bahwa model memiliki akurasi yang baik (rata-rata RMSE 0,096 m) dalam mereplikasi kondisi oseanografi. Analisis potensi menunjukkan bahwa energi pasang surut (berbasis rentang ketinggian) memiliki potensi paling dominan, terkonsentrasi di pesisir utara dan Teluk Kao dengan rentang pasut mencapai lebih dari 2,6 m akibat amplifikasi geografis. Kemudian energi arus laut terbukti potensial namun sangat spesifik lokasi, terbatas pada selat-selat sempit di Halmahera Tengah dan Selatan dengan kecepatan arus melebihi 0,5 m/s. Sementara itu, Energi gelombang dinilai tidak layak dikembangkan karena tidak ada lokasi yang memenuhi ambang batas tinggi gelombang minimal 1,6 m akibat posisi Halmahera yang terlindung. Penelitian ini berhasil memetakan zona-zona yang berbeda untuk setiap jenis energi, memberikan dasar ilmiah untuk perencanaan dan studi kelayakan pengembangan energi laut di Indonesia Timur.
=====================================================================================================================================
The demand for electrical energy in Indonesia continues to increase, yet its supply remains dominated by coal-fired Steam Power Plants (PLTU), which impedes the net-zero emission (NZE) target for 2060. The utilization of ocean energy emerges as a potential solution, aligning with SDG 7 (Affordable and Clean Energy). This research aims to map and analyze the potential of these three types of ocean energy in the waters around Halmahera Island using hydrodynamic modeling with Delft3D software. The model was simulated for a full year (January-December 2024) using bathymetry, coastline, wind, wave, and tidal data, and was subsequently validated using data from 9 BIG tidal gauge stations.The research results indicate that the model has good accuracy (average RMSE of 0.096 m) in replicating the oceanographic conditions. The potential analysis reveals that tidal range energy has the most dominant potential, concentrated along the northern coasts and in Kao Bay, with tidal ranges exceeding 2.6 m due to geographical amplification. Subsequently, tidal stream energy is proven to be potential but is highly site-specific, limited to narrow straits in Central and South Halmahera with current speeds exceeding 0.5 m/s. Meanwhile, wave energy is deemed not feasible for development, as no location meets the minimum wave height threshold of 1.6 m due to Halmahera's sheltered position. This study successfully maps distinct "hotspot" zones for each energy type, providing a scientific basis for the planning and feasibility studies of ocean energy development in Eastern Indonesia.
Item Type: | Thesis (Other) |
---|---|
Uncontrolled Keywords: | Emisi Nol Bersih, Energi Bersih, Energi Terbarukan Net Zero Emissions, Clean Energy, Renewable energy |
Subjects: | Q Science > QA Mathematics > QA911 Fluid dynamics. Hydrodynamics T Technology > TC Hydraulic engineering. Ocean engineering > TC147 Ocean wave power. |
Divisions: | Faculty of Civil, Planning, and Geo Engineering (CIVPLAN) > Geomatics Engineering > 29202-(S1) Undergraduate Thesis |
Depositing User: | Erlangga Candra Pramoedya |
Date Deposited: | 25 Jul 2025 04:35 |
Last Modified: | 25 Jul 2025 04:35 |
URI: | http://repository.its.ac.id/id/eprint/121476 |
Actions (login required)
![]() |
View Item |