Skip to content

Author

Nirmawana Simarmata

1 paper indexed here

We haven’t gathered this author’s papers yet. Follow them and we’ll fetch their work.

Not the right person? Other researchers publish under this name.

Review Aug 2026

Flood Hazard Assessment using Rainfall Data (1995-2025) with a Hydrograph Approach and an Eco-Geomorphic Overview in Padang City, Indonesia.

Padang City experiences recurrent flooding because intense rainfall, rapid runoff from eastern catchments, low-lying floodplains, and coastal-estuarine backwater effects interact across a developed watershed continuum. Existing assessments often examine rainfall, runoff response, spatial hazard, and ecological functions separately, limiting integrated flood-risk reduction and land-use planning. This study aims to 1) analyze areal rainfall frequency for 1995-2025 using the Annual Maximum Series of 24-hour Rainfall (R24/AMS), the Log-Pearson Type III (LP-III) distribution, and the Kolmogorov-Smirnov (K-S) goodness-of-fit test; 2) generate a preliminary regional-scale runoff hydrograph using the Nakayasu Synthetic Unit Hydrograph (SUH) to characterize event magnitude and response timing under design rainfall; and 3) map flood-hazard zones using GIS-based weighted overlay scoring that integrates hydrological, geomorphological, and ecological parameters. Rainfall records indicate interannual variability and repeated ≥150 mm/24 h events, including 447 mm on 07/03/2024 and 261 mm on 25/11/2025. Design 24-hour rainfall increases from 160.87 to 334.14 mm across 2-50-year return periods, producing 4-hour intensities of 22.13-45.97 mm/h. The preliminary Nakayasu scenario yields peak discharges of approximately 135-250 m³/s with short times to peak and should be interpreted as screening evidence rather than basin-specific engineering estimates. The flood-hazard map classifies 537.97 km² (77.41%) as Safe, 96.74 km² (13.92%) as Low, 36.76 km² (5.29%) as Moderate, and 23.49 km² (3.38%) as High. Moderate- and high-hazard areas cluster in fluvial-marine lowlands such as floodplains, backswamps, coastal alluvium, river corridors, and estuaries. These findings provide a basis for Ecosystem-based Disaster Risk Reduction (Eco-DRR) through retention-space protection, river setbacks, wetland restoration, upland recharge conservation, and erosion-sediment control.

Aprizon Putra, Triyatno, Sari Nova et al. · 0 citations