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水的形态对土体收缩性及贯入强度的影响 被引量:1
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作者 罗稳 曾召田 +2 位作者 刘华贵 莫红艳 肖锋 《桂林理工大学学报》 CAS 北大核心 2019年第1期114-119,共6页
土中水是土体的重要组成部分,其与土颗粒的结合形态也是影响土体物理力学性质的重要因素。通过不同含水率下土体的收缩试验和袖珍贯入试验,研究了土中水的形态对土体收缩性及贯入强度的影响规律。结果表明:土中水的结合形态对土体收缩... 土中水是土体的重要组成部分,其与土颗粒的结合形态也是影响土体物理力学性质的重要因素。通过不同含水率下土体的收缩试验和袖珍贯入试验,研究了土中水的形态对土体收缩性及贯入强度的影响规律。结果表明:土中水的结合形态对土体收缩性及贯入强度有显著影响,最大吸着水含量是一个临界点。土体初始含水量高于临界值时,随含水量的增加,土体收缩变形急剧递增,贯入强度递减;土体初始含水量低于临界值时,随含水量的减少,土体收缩变形变化微小,贯入强度递减。 展开更多
关键词 土中水形态 力学性质 收缩试验 袖珍贯入试验
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两种高液限黏土的热导率 被引量:2
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作者 徐云山 赵艳林 +1 位作者 刘华贵 吕海波 《地下空间与工程学报》 CSCD 北大核心 2018年第3期657-663,共7页
通过对膨胀土、红黏土两种高液限黏性土进行热导率试验,结合砂土、粉质黏土等普通土进行对比分析后,选择经验公式法、边界法及理论模型法模拟其体积含水率-热导率的变化规律。研究发现:高液限黏土同普通土有很大的差异,反应含水率-热导... 通过对膨胀土、红黏土两种高液限黏性土进行热导率试验,结合砂土、粉质黏土等普通土进行对比分析后,选择经验公式法、边界法及理论模型法模拟其体积含水率-热导率的变化规律。研究发现:高液限黏土同普通土有很大的差异,反应含水率-热导率关系的θw-k曲线增长速率比普通土慢,模型拟合表明高液限黏土实测的θw-k曲线位于Wiener边界以内,由于土水作用较强,Kersten公式和Johansen模型的预测效果均不理想;EMT模型在低于某个临界含水率时的预测值与试验值偏差小,但超过临界含水率时,预测值就偏高;DEM模型的预测结果整体有较大的偏低。在此基础上,通过对Johansen模型中饱和度相关函数的分析,发现饱和度相关函数采用线性函数时比原模型的对数函数具有更高的精度。 展开更多
关键词 热导率 高液限黏 体积含水率 土中水形态
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Simulation of Morphological Development of Soil Cracks in Yuanmou Dry-hot Valley Region, Southwest China 被引量:8
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作者 XIONG Donghong YAN Dongchun +4 位作者 LONG Yi LU Xiaoning HAN Jianning HAN Xueqin SHI Liangtao 《Chinese Geographical Science》 SCIE CSCD 2010年第2期112-122,共11页
Soil cracking is an important process influencing water and solutes transport in the Yuanmou Dry-hot Valley region of Southwest China. Studying the morphological development of soil cracks helps to further reveal the ... Soil cracking is an important process influencing water and solutes transport in the Yuanmou Dry-hot Valley region of Southwest China. Studying the morphological development of soil cracks helps to further reveal the close relationship between the soil cracking process and water movement in such semi-arid regions. Here we report regular changes on surface morphology of soil cracks with decreasing water in four different soils (Typ-Ustic Ferrisols,Ver-Ustic Ferrisols,Tru-Ustic Vertisols and Typ-Ustic Vertisols) through simulation experiments. Our results indicate the following: 1) Different soils ultimately have different development degrees of soil cracks,according to their various values of crack area density. Soil cracks in Typ-Ustic Ferrisols can only develop to the feeble degree,while those in the other three soils are capable of developing into the intensive degree,and even into the extremely intensive degree. 2) Soil crack complexity,as expressed by the value of the area-weighted mean of crack fractal dimension (AWMFRAC),is found to continuously decrease as a whole through the whole cracking process in all the studied soils. 3) Soil crack connectivity shows a uniform trend in the studied soils,that is to say,connectivity gradually increases with soil crack development. 展开更多
关键词 soil cracks morphological development simulation experiment Yuanmou Dry-hot Valley region Southwest China
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