基于物联网的设备,用于实时识别土壤特性

Bhukya Pavan Kumar, A. D. Prasad
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引用次数: 1

摘要

有必要进行岩土调查,以启动土木工程项目。它们为现有土壤的安全设计提供了设计参数。在实验室中寻找土壤的设计参数是一个耗时的过程。地球物理学有助于非破坏性地了解下面的土壤地层。电阻率法是较好的地球物理方法之一。土壤电阻率是监测土壤性质(孔隙度、容重、饱和度)变化的关键。它有助于有效地了解土壤。建立电混合模型进行土壤参数识别是一种较好的方法。最简单的电混合模型,阿奇定律用来寻找地球表面下更深的碳氢化合物孔隙度。本研究通过对土体电阻率的估计,将修正的阿奇定律应用于土体。一种基于物联网的设备,用于测量土体的电阻率。观察表明,基于物联网的设备的使用可以实时变化土壤电阻率以及土壤的设计参数。基于物联网的设备是一种简单、紧凑、便携的设备。它有助于在实时模式下比较土壤特性。制造的设备提高了岩土工程师的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IoT based equipment for real-time identification of soil properties
There is a need for geotechnical investigations to start a civil engineering project. They provide the design parameters for a safe design on the existing soil. Finding the design parameters of soil in a laboratory is a time-consuming process. Geophysics helps in understanding the soil strata underneath non destructively. Electrical resistivity method is one of the better geophysical methods. Electrical resistivity of soil is a key to monitor the variation of soil properties (i.e. porosity, bulk density, degree of saturation). It helps in understanding the soil efficiently. Creating electrical mixing models for soil parameters identification is a better approach. The simplest electrical mixing model Archie's law used to find porosity of hydrocarbons at deeper locations beneath the earth surface. In this study, Modified Archie's law applied to the soil mass by estimating the resistivity of soil. An IoT based equipment fabricated to measure the resistivity of the soil mass. Observations indicate the usage of IoT based equipment's gives the real-time variation of soil resistivity as well as the design parameters of soil. IoT based equipment is a simple, compact and portable equipment. It assists to compare the soil properties in a real-time mode. The fabricated equipment improves the understanding of geotechnical engineers.
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