Pemodelan Banjir Pada Sungai Poleang Kabupaten Bombana Provinsi Sulawesi Tenggara

Authors

  • Vickky Anggara Ilham Program Studi Teknik Sipil, Universitas Sulawesi Tenggara Author
  • Andi Adillah Firstania Azis Program Studi Teknik Sipil, Fakultas Teknik, Universitas Muslim Indonesia Author
  • Andi Setyawan Program Studi Teknik Sipil, Universitas Sulawesi Tenggara Author

DOI:

https://doi.org/10.33096/bgnpe564

Keywords:

Banjir, HEC-RAS 2D, HSS Nakayasu, Pemodelan, Sungai Poleang

Abstract

Banjir Sungai Poleang di Kabupaten Bombana merupakan permasalahan hidrometeorologi yang berpotensi berdampak pada permukiman, lahan pertanian, dan aktivitas masyarakat. Penelitian ini bertujuan menganalisis debit banjir rencana serta memodelkan luas dan kedalaman genangan banjir Sungai Poleang. Analisis hidrologi menggunakan Hidrograf Satuan Sintetik (HSS) Nakayasu, sedangkan pemodelan hidraulika dilakukan menggunakan HEC-RAS 2D untuk periode ulang 5, 10, dan 25 tahun. Hasil analisis menunjukkan debit banjir rencana masing-masing sebesar 408,61 m³/det, 437,68 m³/det, dan 468,73 m³/det. Hasil simulasi menghasilkan luas genangan maksimum sebesar 1.009,61 ha pada Q5, 1.040,97 ha pada Q10, dan 1.071,79 ha pada Q25. Validasi terhadap kedalaman banjir aktual sebesar 1,50 m menghasilkan nilai MAPE 19,3%, yang menunjukkan hasil pemodelan cukup mendekati kondisi lapangan. Hasil penelitian menunjukkan bahwa peningkatan periode ulang menyebabkan peningkatan debit serta luas genangan, sehingga pemodelan ini dapat menjadi dasar dalam mendukung mitigasi dan pengendalian banjir di Sungai Poleang.

References

Alipour, A., Jafarzadegan, K., & Moradkhani, H. (2022). Global sensitivity analysis in hydrodynamic modeling and flood inundation mapping. Environmental Modelling & Software, 152, 105398. https://doi.org/10.1016/j.envsoft.2022.105398

Asdak, C. (2001). Hidrologi dan pengelolaan daerah aliran sungai. Gadjah Mada University Press.

Azis, A. A. F., & Sofyan, S. A. A. (2023). Model hidrograf satuan sintetis di Daerah Aliran Sungai Baliase Kabupaten Luwu. Jurnal Teknik Sipil MACCA, 8(2), 191–196. https://doi.org/10.33096/4xbk6226

Azis, A. A. F., & Sofyan, S. A. A. (2024). Pemilihan debit rencana dengan metode analisis pada DAS Lamasi. Jurnal Teknik Sipil MACCA, 9(2), 138–146. https://doi.org/10.33096/j32cq182

Badan Pusat Statistik Kabupaten Bombana. (2024). Kecamatan Poleang dalam angka 2024. BPS Kabupaten Bombana.

Doyle, J. D., Reynolds, C. A., Flatau, M., & Latos, B. (2023). Sensitivity and predictability of an extreme rainfall event in Sulawesi, Indonesia. SOLA, 19A, 17–26. https://doi.org/10.2151/sola.19A-003

Halman, & Ashad, H. (2020). Kajian pengaliran banjir sungai terhadap koefisien kekasaran Manning pada Sungai Larompong Kabupaten Luwu Provinsi Sulawesi Selatan. Jurnal Teknik Sipil MACCA, 5(2), 133–146. https://doi.org/10.33096/zkedzx88

Ilham, V. A., Makkawaru, A., Sudardjat, C., & Rahmadhani Asana, A. (2024). Pemodelan 2D daerah rawan banjir Sungai Lepo–Lepo Kota Kendari. Sultra Civil Engineering Journal (SCiEJ), 5(1), 173–185. https://doi.org/10.54297/sciej.v5i1.551

Iqbal, A., Mondal, M. S., Veerbeek, W., Khan, M. S. A., & Hakvoort, H. (2023). Effectiveness of UAV-based DTM and satellite-based DEMs for local-level flood modeling in Jamuna floodplain. Journal of Flood Risk Management, 16(4), e12937. https://doi.org/10.1111/jfr3.12937

Kirana, P. H., Farid, M., Adityawan, M. B., Kuntoro, A. A., & Widyaningtyas, W. (2023). Study of flood risk assessment on Banyumas and Cilacap District in downstream Serayu River Basin, Indonesia. Jurnal Teknik Sipil, 30(2), 149–156. https://doi.org/10.5614/jts.2023.30.2.2

Mustamin, M. R., Maricar, F., Lopa, R. T., & Karamma, R. (2024). Integration of UH SUH, HEC-RAS, and GIS in flood mitigation with flood forecasting and early warning system for Gilireng Watershed, Indonesia. Earth, 5(3), 274–292. https://doi.org/10.3390/earth5030015

Neal, J., Villanueva, I., Wright, N., Willis, T., Fewtrell, T., & Bates, P. (2012). How much physical complexity is needed to model flood inundation? Hydrological Processes, 26(15), 2264–2282. https://doi.org/10.1002/hyp.8339

Pemerintah Provinsi Sulawesi Tenggara. (2025). Jumlah kejadian bencana alam kabupaten/kota di Sulawesi Tenggara tahun 2024. Data Sulawesi Tenggara.

Pinos, J., & Timbe, L. (2019). Performance assessment of two-dimensional hydraulic models for generation of flood inundation maps in mountain river basins. Water Science and Engineering, 12(1), 11–18. https://doi.org/10.1016/j.wse.2019.03.001

Rusmawati, Musa, R., & Mallombasi, A. (2022). Kajian penanggulangan banjir dengan menggunakan tanggul pada Sungai Mata Allo Kabupaten Enrekang. Jurnal Teknik Sipil MACCA, 7(1), 1–7. https://doi.org/10.33096/89507v83

Shustikova, I., Domeneghetti, A., Neal, J. C., Bates, P., & Castellarin, A. (2019). Comparing 2D capabilities of HEC-RAS and LISFLOOD-FP on complex topography. Hydrological Sciences Journal, 64(14), 1769–1782. https://doi.org/10.1080/02626667.2019.1671982

Sideng, U., Upu, H., Haris, N. A., & Rahmayana, D. (2023). 2D simulation of design discharge in flood hazard spatial analysis using HEC-RAS (Case study Mata Allo Sub-Watershed, Enrekang, Indonesia). Geographia Technica, 18(2), 1–13. https://doi.org/10.21163/GT_2023.182.01

U.S. Army Corps of Engineers. (2025a). HEC-RAS river analysis system: RAS Mapper user’s manual. Hydrologic Engineering Center.

U.S. Army Corps of Engineers. (2025b). HEC-RAS river analysis system: Hydraulic reference manual. Hydrologic Engineering Center.

U.S. Army Corps of Engineers. (2025c). HEC-RAS river analysis system: 2D modeling user’s manual. Hydrologic Engineering Center.

Vashist, K., & Singh, K. K. (2023). HEC-RAS 2D modeling for flood inundation mapping: A case study of the Krishna River Basin. Water Practice & Technology, 18(4), 831–844. https://doi.org/10.2166/wpt.2023.048

Yalcin, E. (2020). Assessing the impact of topography and land cover data resolutions on two-dimensional HEC-RAS hydrodynamic model simulations for urban flood hazard analysis. Natural Hazards, 101(3), 995–1017. https://doi.org/10.1007/s11069-020-03906-z

Zainal, Musa, R., & Ashad, H. (2021). Kajian pengaruh kapasitas alur sungai terhadap debit banjir dan air pasang (Studi kasus: Sungai Oba di ibu kota Provinsi Maluku Utara). Jurnal Teknik Sipil MACCA, 6(3), 243–253. https://doi.org/10.33096/za9qzt18

Zhang, X., Long, W., Xie, H., Zhu, J., & Wang, J. (2007). Numerical simulation of flood inundation processes by 2D shallow water equations. Frontiers of Architecture and Civil Engineering in China, 1(1), 107–113. https://doi.org/10.1007/s11709-007-0011-5

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Published

2026-06-19

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