基于HEC-HMS模型的帝汶岛Benanain流域降雨径流模拟

Wilhelmus Bunganaen, John H. Frans, Yustinus A. Seran, D. Legono, D. Krisnayanti
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引用次数: 6

摘要

流域洪水的发生是由于土地利用变化导致补给水量减少,水量增加所致。贝宁流域是一个有许多支流的广阔地区。流域形态计量学提供了有关这些地区洪水的水文行为和水文曲线形状的初步信息。此外,降雨径流模型作为一个单元来接近洪水过程的水文值。本研究基于曲线数(CN)值、土地覆盖、峰值流量和峰值时间确定了Benanain流域的物理特征。研究对象为贝宁流域29个子流域,面积3181.521 km2。收集了1996 - 2008年13年的降水数据,采用Log Pearson Type III方法进行分析,洪流量分析采用HEC HMS模型。HEC-HMS模型必须通过调整模型参数值进行校准,直到模型结果与初始抽象、滞后时间、衰退、基流值和曲线数等历史数据相匹配。结果表明:该曲线数值范围为56.55 ~ 73.90,包括次生旱地林和灌木;此外,Benanain流域的岩石岩性以鳞状粘土和其他岩石块体为主。这意味着该地区的渗透率很低甚至很低,这会影响径流量。千年一遇洪峰期峰值为5794.50 m3/s,峰值时间为±14 h。Temef流域集水区面积大,呈放射状分布,坡度平均,曲流,其形态特征影响了洪流量曲线的峰值和洪峰时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rainfall-Runoff Simulation Using HEC-HMS Model in the Benanain Watershed, Timor Island
Floods in a watershed area are caused by reduced water recharge due to changes in land use, increasing their discharge volume. Benanain watershed is an extensive area with many tributaries. Watershed morphometrics provides initial information about the hydrological behavior and the hydrograph shape of flooding in these areas. Furthermore, rainfall-runoff modeling uses as a unit to approach the hydrological values of the flooding process. This study determines the physical characteristics of the Benanain watershed based on curve number (CN) values, land cover, peak discharge, and peak time. It was conducted on the Benanain watershed with 29 sub-watersheds covering 3,181.521 km2. Data were collected on the rainfall experienced for 13 years from 1996 to 2008 and analyzed using the Log Pearson Type III method, while the HEC HMS model was used for flood discharge analysis. HEC-HMS model must calibrate by adjusting the model parameter values until the model results match historical data such as initial abstraction, lag time, recession, baseflow values, and curve number.  The results show that the curve number values range from 56.55 - 73.90, comprising secondary dryland forest and shrubs. Moreover, the rock lithology in the Benanain watershed is dominated by scaly clay and other rock blocks. This means the area has low to very low permeability, which affects the volume of runoff. The return period of a 1000-year flood discharge obtained a peak of 5,794.50 m3/s, with a peak time of ± 14 hours. Morphometry of the Temef watershed with large catchment, radial shape pattern, an average of steep slope river, and meandering affects the peak of flood discharge hydrograph and the peak time of the flood.
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