AbstractGypseous soils are considered problematic when used as the foundation in civil engineering structures s'/> Changes in chemical composition and engineering properties of gypseous soils through leaching: an example from Mashhad, Iran
首页> 外文期刊>Bulletin of engineering geology and the environment >Changes in chemical composition and engineering properties of gypseous soils through leaching: an example from Mashhad, Iran
【24h】

Changes in chemical composition and engineering properties of gypseous soils through leaching: an example from Mashhad, Iran

机译:通过淋洗改变石膏状土壤化学成分和工程特性的例子:伊朗马什哈德的一个例子

获取原文
获取原文并翻译 | 示例
       

摘要

AbstractGypseous soils are considered problematic when used as the foundation in civil engineering structures such as roads, buildings and dams, due to their solubility. These soils are resistant and have good engineering properties in their dry state. However, when saturated by rainwater or a rising groundwater table, the soluble minerals are washed out, resulting in the subsidence of the structures built on them. In the recent decades, buildings constructed in the Southern Mashhad Metropolitan Area, Iran, have been widely faced with this problem. Since the changes in chemical composition and engineering properties of these soils are based on the amount of dissolved gypsum, the focus of this study is to characterize the soluble soils of this area and their changes throughout the leaching process. Thirty-eight samples were taken from different locations in the area. Chemical tests were conducted on the samples and the gypsum and sulfate concentration maps were produced based on these results, combined with the previously available data from 511 boreholes drilled in the area. Seven soil samples with different gypsum concentrations were selected for further analysis in four major groups of tests, including hydraulic tests (permeability and solubility), chemical tests (chemical analysis of soils samples and total dissolved solids, calcium hardness and chlorine of the leachate samples), physical tests (grain size analysis, Atterberg limits and specific gravity) and mechanical tests (consolidation and direct shear). Changes in the mentioned parameters were investigated through a 5-day leaching process. The results indicate that extensive dissolution of gypsum and removal of gypsum bonding between soil particles change soil chemical composition and decrease the soil compressibility and strength parameters. Therefore, the structures built in this area are in high risk of subsidence and foundation failure; proper measures should be taken to improve the soil quality before construction.
机译: Abstract 当用作土木工程结构的基础时,糖浆土被认为是有问题的道路,建筑物和水坝,因为它们具有溶解性。这些土壤具有抵抗力,在干燥状态下具有良好的工程特性。但是,当被雨水​​或地下水位上升饱和时,可溶性矿物质就会被冲洗掉,从而导致其上构造物的沉陷。在最近的几十年中,在伊朗南部马什哈德都会区建造的建筑物普遍面临着这个问题。由于这些土壤的化学成分和工程性质的变化是基于溶解的石膏的量,因此本研究的重点是表征该地区的可溶性土壤及其在整个浸出过程中的变化。从该地区的不同地点采集了38个样品。对样品进行了化学测试,并根据这些结果生成了石膏和硫酸盐浓度图,并结合了该地区511个钻孔的先前可用数据。在四个主要的测试组中选择了七个具有不同石膏浓度的土壤样品进行进一步分析,包括水力测试(渗透率和溶解度),化学测试(土壤样品和总溶解固体的化学分析,渗滤液样品的钙硬度和氯) ,物理测试(粒度分析,Atterberg极限和比重)和机械测试(固结和直接剪切)。通过5天的浸提过程研究了上述参数的变化。结果表明,石膏的广泛溶解和土壤颗粒之间的石膏键的去除改变了土壤的化学成分,降低了土壤的可压缩性和强度参数。因此,在该区域建造的结构有沉陷和基础破坏的高风险;施工前应采取适当措施改善土壤质量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号