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Passing volume calculation system (PVCS): computer software for managing data on watersheds that produce mud flows and the case of Quebrada La Cadena, Antofagasta, Chile.

机译:通过量计算系统(PVCS):用于管理产生泥浆流的流域数据的计算机软件,以及智利安托法加斯塔的Quebrada La Cadena案例。

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Severe storms in desert regions, especially along the coastal area of the Chilean desert, produce very destructive mud flows that last a few hours and constitute the only surface run-off in these events. To date, there is no simple or practical methodology for assessing such mud flows. Given the settlement of mining fields and creation of desert campgrounds, it is increasingly necessary to understand how these water and/or mud flows behave in order to develop structural and non-structural mitigation plans. Thus, herein, we present software known as PVCS, which provides a system for calculating mud volumes after a strong storm. This hydrological and computer tool allows us to calculate the structure and volume of mud passing through the mouth of a hydrographic watershed after a desert rainstorm. To use this software, it is necessary to know the hydrological, meteorological, and morphometric parameters of the watershed under study. These data are entered into a model that estimates the amount of mud that will pass through the mouth with each hour of rain. Simulations can be done with historical data or data designed for future events, thereby allowing the preparation of measures to protect people and property. We use the watershed Quebrada La Cadena to exemplify the use of this software. This drainage basin is located on the western slope of the Chilean Coastal Range in Antofagasta, a city in northern Chile. Here, rain in June 1991 produced a destructive flood that killed nearly one hundred people living at the main mouth of the watershed and caused huge economic losses. Data from this catastrophe have significantly improved the understanding of such flows, and this has been incorporated into the software. The principal value of PVCS lies in its ability to forecast the volume of mud that will result from a storm and hourly outflows that will pass through a specific populated area, mining camp, or industrial plant located in the mouth of a watershed of any size. This information is used to determine the most critical moment, i.e., the time of the largest outflows, which can then be used to organize timely evacuations to safe places for people, animals, and machines. Moreover, the program is methodologically valuable since, in order to implement PVCS, the user must structure information in a hydrological way. In summary, this program simulates different rain scenarios, thereby allowing us to design structural mitigation projects and contingency plans.
机译:沙漠地区,特别是智利沙漠沿海地区的强风暴,产生了破坏性很强的泥浆流,持续了几个小时,构成了这些事件中唯一的地表径流。迄今为止,还没有简单或实用的方法来评估这种泥浆流量。考虑到矿区的定居和沙漠露营地的建立,越来越有必要了解这些水和/或泥浆的流动行为,以制定结构性和非结构性的缓解计划。因此,在本文中,我们介绍了称为PVCS的软件,该软件提供了用于在强风暴后计算泥浆体积的系统。这种水文和计算机工具使我们能够计算沙漠暴雨后流经水文分水岭口的泥浆的结构和体积。要使用此软件,有必要了解正在研究的流域的水文,气象和形态参数。这些数据被输入到一个模型中,该模型估计每隔一小时的降雨将通过河口的泥浆量。可以使用历史数据或为将来事件设计的数据进行模拟,从而可以准备保护人员和财产的措施。我们使用分水岭Quebrada La Cadena来举例说明此软件的使用。该流域位于智利北部城市安托法加斯塔(Antofagasta)的智利沿海山脉的西坡上。 1991年6月的雨水在这里造成了破坏性的洪灾,杀死了近百人居住在流域主河口,造成了巨大的经济损失。来自这场灾难的数据极大地改善了对此类流的理解,并且已将其合并到软件中。 PVCS的主要价值在于它能够预测暴风雨和每小时流出的泥浆量的能力,每小时流出的泥浆流经特定人口稠密地区,采矿营地或大小分水岭口的工业厂房。该信息用于确定最关键的时刻,即最大流出的时间,然后可以用于组织及时疏散到人员,动物和机器的安全场所。此外,该程序在方法上很有价值,因为为了实施PVCS,用户必须以水文方式构造信息。总而言之,该程序模拟了不同的降雨情况,从而使我们能够设计结构性减灾项目和应急计划。

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