基于MATLAB的数字图像处理在测定团聚体和土壤性质中的应用——以实例为例

M. Bathula, Saisantosh Vamshi Harsha Madiraju
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引用次数: 1

摘要

文章历史:接收2021年2月16日接受2021年3月8日在线提供2021年4月4日用于工程和解释自然发生的沉积物成因的骨料的重要物理特性是岩石的形状和大小。岩石的矿物学和物理组成是必要的,以满足有限空间和测深的相互作用。有几个图像处理程序可用于测量各种类型物体的大小和形状。这些成像方法的结果的准确性和再现性都有较好的提高。本文旨在通过图像处理工具确定集合维度和体积对空间的行为。本研究是对粗骨料的形状性能,如面积、体积、重心、伸长率和片状指数的扩展研究。此外,本文还讨论了一种易于使用的图像处理工具的开发,以确定由于自然方法/人工方法缺乏水分而导致的土壤收缩。在印度希夫纳达尔大学(Shiv Nadar University, SNU)经营管理学院附近收集了两种不同类型的土壤样品,其中第一种样品靠近SNU湖,第二种样品靠近印度希夫纳达尔大学(SNU)经营管理学院。将样品烘干一段时间后,利用MATLAB通过数字图像处理(DIP)确定收缩率。结果与蜡水法(手工法)的收缩率结果进行了比较。DIP方法所发现的特性对于多个团聚体是相当一致的,并且土壤收缩结果的百分比差异很小。
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Application of Digital Image Processing to Determine the Properties of Aggregates and Soil using MATLAB: A Case Study
Article history: Received 16 February 2021 Accepted 08 March 2021 Available online 04 April 2021 The vital physical characteristics of aggregates used in engineering and for interpretation of the genesis of naturally occurring sediment are shape and size of rocks. The mineralogical and physical composition of the rock is necessary to cater to the interaction within bounded space and soundings. Several image processing programs are available to measure the size and shape of various types of objects. The accuracy and reproducibility of the results of these imaging methods could be bettered. This paper aims to determine the aggregate dimension and volume to space behaviors through image processing tools. This study is extended investigation of the coarse aggregate shape properties such as area, volume, center of gravity (CG), elongation and flakiness index. Also, this paper discuss the development of an easy to use image processing tool to determine the shrinkage of soils due to lack of moisture content either because of natural ways/artificial ways. Two different types of soils including first sample near the SNU lake and second sample near Business Management School at Shiv Nadar University (SNU), India were collected. The samples were oven-dried over a period and shrinkage values were determined by Digital Image Processing (DIP) using MATLAB. The results are compared to wax-water method (manual method) results of shrinkage. The properties found by DIP method are reasonably agreeable for multiple aggregates and minor percentage differences in the soil shrinkage results.
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