...
首页> 外文期刊>Natural Hazards and Earth System Sciences Discussions >Experimental and numerical study on the design of a deposition basin outlet structure at a mountain debris cone
【24h】

Experimental and numerical study on the design of a deposition basin outlet structure at a mountain debris cone

机译:山地碎片锥形沉积盆地出口结构设计的实验与数值研究

获取原文

摘要

Mountain debris cones in the Alpine region often provide space for dense population and cultivation. Hence, a great number of buildings are exposed to torrential hazards. In order to protect the settlement areas against flooding and overbank sedimentation, torrent defence structures are implemented at various locations within catchments. Directly at the debris cones, these protection measures often include a deposition basin at the fan apex and/or a confined channel that passes through the settlement. The work presented within this paper deals with the effect of specific outlet structure layouts, situated at the lower end of a selected deposition basin, on bed-load transport processes and flood protection. A case study analysis was accomplished comprising a 3-D numerical model (FLOW-3D) and a physical scale model test (1 : 30). The subject of investigation was the deposition basin of the Larsennbach torrent in the Austrian Northern Limestone Alps. The basin is situated on a large debris cone and opens out into a paved channel. Since the basin is undersized and the accumulation of sediment in the outlet section reduces the available cross section during floods, adjoining settlements are considerably endangered of lateral overtopping of both clear water and sediment. Aiming for an upgrade in flood protection, certain layouts for a "closing-off structure" at the outlet were tested within this project. For the most efficient design layout, its effect on flood protection, a continuous bed-load output from the basin and the best possible use of the retention volume are pointed out. The simple design of the structure and the key aspects that have to be taken into consideration for implementation are highlighted.
机译:高山地区的山地碎片锥体通常为浓密的人口和培养提供空间。因此,大量建筑面临暴躁的危险。为了保护抗洪水和超银行沉降的沉降区域,洪流防御结构在集水区内的各个位置实施。直接在碎屑锥体处,这些保护措施通常包括在风扇顶点的沉积盆和/或穿过沉降的密闭通道。本文介绍的工作涉及特定出口结构布局的效果,位于选定的沉积盆地的下端,床载运输过程和防洪。完成了案例研究分析,包括3-D数模型(Flow-3D)和物理比例模型测试(1:30)。调查的主题是奥地利北石灰石阿尔卑斯山山脉的沉积盆地。该盆地位于大型碎片圆锥上,开放到铺砌的通道中。由于盆是尺寸的,并且出口部分中沉积物的积累减少了洪水期间可用的横截面,所以相邻的沉降在透明水和沉积物的横向熵显着危及。旨在升级洪水保护,在该项目中测试了出口处的“截止结构”的某些布局。为最有效的设计布局,指出了盆地的持续床上负载输出和最佳使用保留体积的影响。突出了结构的简单设计和必须考虑到实现的关键方面。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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