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Determination of monitoring systems and installation location to prevent debris flow through web-based database and AHP

机译:确定监控系统和安装位置,以防止通过基于Web的数据库和AHP的碎片流量

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摘要

Various monitoring systems have been applied to warn regarding debris flow; however, the information regarding the selection sensors and determination of the installation area is deficient. The objective of this paper is to propose an appropriate monitoring system to prevent debris flow and a method for determining the installation location. A web-based database is used to find the applied frequency of sensors, and the sensors are grouped into eight parts with consideration of the performance, including rainfall, debris flow velocity, displacement, fluid pore pressure, ground vibration, image processing, impact force, and peak flow depth. Through the statistical technique, the rain gage and geophone sensors are revealed as hugely selected sensors among various systems to provide an alarm. The analytic hierarchical process (AHP) is also used to analyze experts' opinion through pairwise comparison with consideration of eight geotechnical parameters, including the fine content, void ratio, shear strength, elastic modulus, hydraulic conductivity, saturation, soil thickness, and water content. The weighting factors of every parameter are deduced through AHP and the installation area is chosen with calculated values using the weighting factor. The suggested analyses are helpful to select appropriate sensors and determine the installation location of a monitoring system.
机译:已经应用了各种监测系统对碎片流动的警告;然而,有关选择传感器的信息和安装区域的确定是缺陷的。本文的目的是提出适当的监测系统,以防止碎屑流动和用于确定安装位置的方法。基于Web的数据库用于查找传感器的施加频率,并且通过考虑性能,传感器分为八个部分,包括降雨,碎片流速,位移,流体孔隙压力,接地振动,图像处理,冲击力和峰流量深度。通过统计技术,雨量计和地震检波器传感器被揭示为各种系统中的各种传感器,以提供警报。分析层次过程(AHP)还用于通过考虑八个岩土工程参数,包括细含量,空隙率,剪切强度,弹性模量,液压导电,饱和度,土壤厚度和含水量来分析专家意见。 。通过AHP推导出每个参数的加权因子,并且使用加权因子使用计算值选择安装区域。建议的分析有助于选择合适的传感器并确定监控系统的安装位置。

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