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FLOOD HAZARD MAPPING IN LOWER REACH OF KELANI RIVER, SRI LANKA

机译:Kelani River,斯里兰卡下游洪水危险映射

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Although floods are the most frequent natural disasters in Sri Lanka they had received little attention until the tsunami of December 2004. After the Tsunami, however, disaster management strategies underwent rapid changes and under this framework flood hazard mapping has, particularly, been realized as one of the foremost tasks to be accomplished in support of disaster management activities. As a pilot study, the lower reach of Kelani River which covers the suburbs of the island's capital, Colombo, was chosen for flood hazard mapping as it is frequently affected. The one dimensional steady flow component of HEC-RAS Software was utilized for the study. The requisite geo-spatial modeling of the flood plain was carried out by implementing HEC-GeoRAS utility in ArcView environment and using a TIN model. The land-use map of the study area was updated using the data remotely sensed by ALOS for attributing the study area with necessary hydraulic parameters. Peak flows associated with considerate return periods were obtained from a frequency analysis and the calibration run was executed simulating the 50 year return period flood event. Model results and field records corresponding to the above event of 1989 was compared and it was found that results are very satisfactory. Accordingly, the first ever set of flood hazard maps associated with 10 year, 20 year, and 50 year return period events to be adopted by the government of Sri Lanka were prepared successfully. Statistics show that the study area would be subjected to flood encroachments of 60, 77, and 94 square kilometers for events with return periods of 10 years, 20 years, and 50 years respectively. Modern day geospatial tools have also facilitated to identify with ease, flood encroachments on different land use types and the number of buildings they would affect.
机译:虽然洪水是斯里兰卡的最常见的自然灾害,但在2004年12月的海啸之前,他们已经收到了很少的关注。然而,在海啸之后,在海啸之后,灾害管理战略正在进行快速变化,特别是在这一框架下,造成的造型造型造成的洪水危险造型造成了诸如一个最重要的任务是为了支持灾害管理活动。作为试点研究,选择覆盖该岛首都Colombo的郊区的Kelani River的下游被选为洪水危害映射,因为它经常受到影响。 HEC-RAS软件的一维稳态流量分量用于研究。通过在ArcView环境中实施HEC-Georas Utility并使用TIN模型来执行洪泛平原的必要地质空间建模。使用ALOS远程感应的数据更新研究区域的土地使用地图,以便将研究区域归因于必要的液压参数。从频率分析中获得了与考虑返回周期相关联的峰值流程,并执行校准运行模拟50年返回期洪水事件。比较了与上述事件1989年的模型结果和现场记录,发现结果非常令人满意。因此,斯里兰卡政府的10年,20年和50年回报期事件的第一个与10年,20年和50年的回报期事件成功地编制了第一个。统计数据显示,该研究领域将受到60,77和94平方公里的洪水侵犯,以分别为10年,20岁和50年的返回期。现代的地理空间工具还有助于轻松地确定不同土地使用类型的洪水侵占和他们会影响的建筑物数量。

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