首页> 外文期刊>Natural Hazards >Flood-prone area delimitation using UAV technology, in the areas hard-to-reach for classic aircrafts: case study in the north-east of Apuseni Mountains, Transylvania
【24h】

Flood-prone area delimitation using UAV technology, in the areas hard-to-reach for classic aircrafts: case study in the north-east of Apuseni Mountains, Transylvania

机译:在传统飞机难以到达的地区,使用无人机技术划定易发洪水区域:特兰西瓦尼亚阿普塞尼山脉东北部的案例研究

获取原文
获取原文并翻译 | 示例
       

摘要

In the delimitation of flood-prone areas, particularly in areas that are difficult to access using traditional flight equipment, the most critical problem is the generation of a high-quality DEM of the major and minor riverbed, in order to obtain several hydraulic parameters (e.g., the surface of the drainage section, average water velocity) with equivalent accuracy. The chosen area for the case study represents one with the greatest history of hydrological risk factors in the SomeAYul Mic basin, given the extreme previous hydrological events that have taken place (e.g., in the year 1995) as well as the limited capacity of the river for upstream river flow, and to handle the volume of the flash floods. In this study, the use of UAV technology coupled with Leica MultiStation for validation made it possible to achieve this performance. Another advantage was the existence of the hydrometric station situated in the middle of the study area, the information from which was used for statistics, calibration of the measurements and validation of the results obtained (roughness of the riverbed, the debit with an overflow possibility). The hydraulic calculations performed on the 11 transverse profiles, conducted using the GIS terrain model, led to the high accuracy defining of the flood-prone areas corresponding to the flows in the major riverbed with probabilities of 1 and 5 %. Also highlighted on the 2D and 3D images were several civilian areas at risk in the case of extreme hydrological events, related to maximum flow.
机译:在易发洪灾地区的划定中,尤其是在使用传统飞行设备难以进入的地区,最关键的问题是主要和次要河床的高质量DEM的生成,以便获得多个水力参数( (例如排水段的表面,平均水速)具有相同的精度。鉴于先前发生的极端水文事件(例如1995年)以及河流的能力有限,本案例研究的选定区域代表了SomeAYul米克盆地中水文危险因素历史最悠久的地区。用于上游河流流量,并处理山洪暴发。在这项研究中,结合使用无人机技术和Leica MultiStation进行验证使实现这一性能成为可能。另一个优势是位于研究区域中部的水文站,该信息被用于统计,测量的校准和所获得结果的验证(河床的粗糙度,有溢出可能性的借方) 。使用GIS地形模型在11个横向剖面上进行的水力计算导致对高洪水区域的高精度定义,其对应于主要河床中流量的概率为1%和5%。在2D和3D图像上还突出显示了一些极端水文事件中与最大流量有关的平民区。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号