首页> 外文会议>International conference on river basin management >The effects of soil properties on floods in the Agri basin (southern Italy)
【24h】

The effects of soil properties on floods in the Agri basin (southern Italy)

机译:土壤特性对农业盆地洪水的影响(意大利南部)

获取原文

摘要

The spatial distribution of soil properties is directly involved in the fluctuation of soil moisture conditions and in the runoff generation mechanisms. In this work, the influences of the physical characteristics of the contributing area to the peak flow were widely investigated with the aim of understanding the influences of each physical parameter. The study was conducted by means of a hydrological distributed model (Manfreda et al.), applied on the study area of the Agri river basin at Tarangelo (507 km~2), in the region of Basilicata, Italy. Two different time scales were used: the first with higher temporal resolution (1-hour) dedicated to the superficial routing, the latter at daily scale used for local water balances and subsurface flow evaluation. Using the model at daily scale, daily soil moisture maps and the river discharge at the outlet are obtained. These results were used as input for the model at the hourly scale in order to describe the initial conditions in the watershed for event simulations. The simulation was carried on by using a synthetic hourly rainfall series generated by using the IRP model proposed by Veneziano & lacobellis. By using the rainfall-runoff model it was possible to simulate a large number of extreme events and consequently evaluate the relative contributing area to the peak flow. Specifically, every cell of these areas was classified for its vegetational, pedological and morphological characteristics with the aim of interpreting the relationship between physical properties and potential contribute to flow peaks.
机译:土壤性质的空间分布直接参与土壤湿度条件的波动和径流发电机制。在这项工作中,旨在了解每个物理参数对每个物理参数的影响,广泛研究了贡献区域对峰流量的物理特征的影响。该研究是通过水文分布模型(Manfreda等)进行的,应用于Tarangelo(507 km〜2)的Agri River盆地的研究区,意大利大教堂区域。使用了两种不同的时间尺度:第一个具有较高的时间分辨率(1小时),专用于浅表路由,后者在日常水平上用于局部水平和地下流量评估。在日常规模下使用模型,获得日常土壤湿度图和出口处的河流排放。这些结果用作每小时规模的模型的输入,以便描述流域中的初始条件进行事件模拟。通过使用通过使用Veneziano&Lacobellis提出的IRP模型产生的合成小时降雨系列进行了模拟。通过使用降雨径流模型,可以模拟大量极限事件,从而将相对贡献区域评估到峰值流。具体而言,这些区域的每个细胞都被归类为其植被,粪便和形态特征,目的是解释物理性质与潜力之间的关系,促进流动峰。

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