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基于数字图像技术的土冻胀试验系统研究   总被引:3,自引:3,他引:0  
开展土冻胀过程的研究对于认识土冻胀机理具有重要的意义,以往学者多采用建立模型进行数值分析的方法,但是在试验中却不能对模型预测的冷生构造、冰分凝、水分迁移等实时过程进行验证。通过建立包括实时图像采集系统、图像预处理系统以及图像数字化系统为一体的基于数字图像技术的土冻胀试验系统,对青藏粉土的冻胀发展过程和冰分凝过程进行了研究分析。结果显示:试样冻胀后已冻区纵剖面的冷生构造可以分为微薄层状构造区、薄层状构造区以及最暖端厚层状构造区三个部分,其中薄层状构造区下部的冰透镜体的分凝作用是冻胀的主要贡献部分,最暖端厚层状构造区中冰透镜体的分凝作用导致了试样未冻区的固结,试样中冰透镜体的分凝过程与试样的冻胀过程和试后含水率的结果能够相互验证。建立的试验系统可以对土冻胀过程中包括冷生构造发育、冻胀变形、冰分凝等过程进行实时采集和定量分析,为冻胀模型的建立和验证提供了试验方法和技术支撑。  相似文献   
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Water accumulation associated with water migration is closely related with the ice segregation,but their coupling relationship is still unclear. To decoupling the relationship of water accumulation and ice segrega⁃ tion,herein,the dynamics of water migration and ice segregation during the freezing and thawing of different soil types under different water supplying conditions have been investigated based on pore water pressure mea⁃ surement and layer-scanning technique. Results showed that apparent water accumulation near the freezing front during the freezing of silty clay and loess tested here,but there exist differences in modes. During loess freezing under closed system,no ice segregation was observed,the pore water pressure increased,and there existed ap⁃ parent liquid water accumulation during the early stage of freezing;while during the freezing of silty clay,there existed ice segregation,the pore water pressure decreased,and no apparent liquid water accumulation occurred during the early stage of freezing. The results implied that there exist two modes of water accumulation near the freezing front during soil freezing:one is the water accumulation induced by water pressure gradient induced by pore ice which results in water flowing from the frozen zone and unfrozen zone to the location near the freezing front;the other is the water accumulation induced by cryo-suction of segregation ice which results in the water flowing from the unfrozen zone to the location near the freezing front. Notably,the contribution from each mode associated with water accumulation of soil freezing depends on whether the ice segregation exists. As no ice seg⁃ regation forms,water accumulation induced water pressure gradient predominates during the early stage of freez⁃ ing. As there exists ice segregation during freezing,water accumulation induced cryo-suction predominates dur⁃ ing the later stage of freezing. Investigating on different modes of water accumulations will be helpful for the ex⁃ ploring the mechanisms of freeze-thaw diseases and the ground ice in the cold regions. © 2023 Chinese Journal of General Practitioners. All rights reserved.  相似文献   
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利用图像数字化技术分析冻结缘特征   总被引:13,自引:6,他引:7  
李萍  徐学祖 《冰川冻土》1999,21(2):175-180
以开放系统饱水正冻土为研究对象,作不同土质和不同初始条件下的单向冻结实验。实验结束后立刻对试样做复形膜。随后将复形膜进行图像数字化处理,可反演分析冻结缘和冰分凝形成的时间、厚度、位置及冻结缘导湿系数。结果表明,图像数字化技术具有较高的分析精度和准确性,是一种实用的创新研究方法;在给定的试验条件下,冰分凝速度随试验持续时间呈幂函数形式减小。冰分凝温度在试验初期随冻深快速推移而降低,随后由于冻土段长度  相似文献   
4.
青藏粉土单向冻结冻胀率变化特性研究   总被引:6,自引:1,他引:5  
开展了饱和青藏粉土在开放系统不同温度梯度条件下的单向冻结试验,对冻结过程中冻结深度和冻胀速率的发展变化过程进行了研究.结果表明:不同顶板温度下,土样均在25 h左右达到冻结稳定状态,之后冻结深度基本不再发生变化.土样冻结过程中,冻胀速率表现为快速减小、较小值保持稳定、快速增大、较大值保持稳定四个阶段.基于以上试验结果,对土样冻结过程中冻胀率的变化过程进行了研究,发现冻胀率随冻结深度的增加先减小后增加,冻胀率从减小变为增大的时刻就是冻结深度趋于稳定的时刻,而冻胀率快速增大的时刻为冻胀速率进入较大值保持阶段的时刻.冻胀率变化的内在机理为土样冻结过程中由冰透镜体分凝所导致的未冻区固结和已冻区冻胀共同作用的结果.  相似文献   
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