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An image-based method for quick measurement of the soil shrinkage characteristics curve of soil slurry

机译:一种基于图像的快速测量土壤浆料土壤收缩特性曲线的方法

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This paper presents a new method for determining the shrinkage curve. In this method, a 10 mm high, 80 mm diameter cylindrical dish with smooth interior is filled completely with soil slurry and placed on an electronic balance and then subjected to drying. Images of the soil surface are taken periodically from a fixed location, from which the surface area of the shrinking soil mass is determined by converting the images to binary images. The decreasing bulk volume of the soil is determined from the surface area and the varying thickness of the soil, which is determined from the known initial and measured final thickness (measured with calipers) and assuming that the change in specimen thickness is proportional to the change in its radius at any stage of drying. This method compares favorably with results of the balloon method using the same slurry sample material. Data from this method also fits very well to an existing shrinkage curve equation. This method is effortless, less time consuming than existing methods, and data acquisition can be automated. In addition, the shrinkage curve can be obtained in a relatively short period of 48 h as compared to existing methods that take days or even weeks. The limitation of measuring the shrinkage curve on soil slurry as presented in this work is that it does not represent the structural shrinkage zone.
机译:本文提出了一种确定收缩曲线的新方法。在这种方法中,具有光滑内部的10毫米高,80毫米直径的圆柱形盘,与土壤浆料完全填充,并放置在电子平衡上,然后进行干燥。通过固定位置周期性地拍摄土壤表面的图像,通过将图像转换为二进制图像来确定收缩土壤质量的表面积。从表面积和土壤的变化厚度确定土壤的减小的块状体积,其由已知的初始和测量的最终厚度(用卡钳测量)确定并假设样品厚度的变化与变化成比例在任何干燥的阶段的半径。该方法使用相同的浆料样品材料对球囊方法的结果有利地进行比较。来自该方法的数据也非常适合现有的收缩曲线方程。该方法毫不费力,比现有方法少消耗,数据采集可以自动化。另外,与需要几天甚至周数的现有方法相比,可以在48小时的相对短的时间内获得收缩曲线。在本工作中提到的土壤浆料中测量收缩曲线的限制是它不代表结构收缩区。

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