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季节性冻融区井渠结合灌域地下水动态预报 被引量:7
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作者 杨文元 郝培静 +3 位作者 朱焱 刘佳帅 于健 杨金忠 《农业工程学报》 EI CAS CSCD 北大核心 2017年第4期137-145,共9页
该文以河套灌区永济灌域为研究对象,建立考虑冻融影响的分段式水均衡模型,预报12种井渠结合节水情景的地下水动态响应。结果表明:冻融期间气温对地下水埋深的影响在时间上滞后46.5 d,两者相关关系明显;地下水开发利用越多、秋浇采用黄... 该文以河套灌区永济灌域为研究对象,建立考虑冻融影响的分段式水均衡模型,预报12种井渠结合节水情景的地下水动态响应。结果表明:冻融期间气温对地下水埋深的影响在时间上滞后46.5 d,两者相关关系明显;地下水开发利用越多、秋浇采用黄河水的比例越小,节水规模越大,同时地下水位下降越明显。12种节水情景中,节水规模占现状引水量的5.7%~15.5%,全灌域平均地下水埋深增加0.05~0.24 m,井渠结合区地下水埋深增加0.16~0.38 m;灌域引黄水量与地下水埋深关系用二次函数进行拟合,决定系数R^2达到0.88以上;灌溉水利用效率的提高以及地下水位下降引起潜水蒸发的减小是井渠结合节水的实质。分析结果表明,考虑冻融影响的水均衡模型简单实用,可为中国西北干旱半干旱地区开展井渠结合地下水响应预报提供参考。 展开更多
关键词 灌溉 节水 地下水 水均衡模型 动态 季节性冻融区
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北半球季节性冻融区与北半球夏季降水关系的研究 被引量:7
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作者 蒋靖海 王澄海 《冰川冻土》 CSCD 北大核心 2020年第1期53-61,共9页
针对冻融过程引起的土壤湿度异常与北半球夏季降水的关系,基于1981-2010年ERA5的月降水和土壤湿度资料,采用奇异值分解(SVD)方法,分析了北半球季节性冻融区春季土壤湿度和北半球夏季降水的年际变化特征以及它们之间的相关关系。结果表明... 针对冻融过程引起的土壤湿度异常与北半球夏季降水的关系,基于1981-2010年ERA5的月降水和土壤湿度资料,采用奇异值分解(SVD)方法,分析了北半球季节性冻融区春季土壤湿度和北半球夏季降水的年际变化特征以及它们之间的相关关系。结果表明:北半球季节性冻融区春季土壤湿度年际变化的大值区与北半球夏季降水年际变化的显著区之间存在较好的对应关系;季节性冻融区春季土壤湿度与夏季降水之间存在着指数函数变化关系,在北美西部、西亚以及东亚的大部分地区,春季土壤湿度与夏季降水呈显著的正相关,表明季节性冻融区春季土壤湿度的增加会引起该地区夏季降水的增加。 展开更多
关键词 季节性冻融区 土壤湿度 降水 SVD
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长春黑顶子河流域冻土融化期氢氧同位素特征及影响因素分析 被引量:1
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作者 赵强 常丹 +1 位作者 黄介生 王康 《中国农村水利水电》 北大核心 2017年第8期121-126,共6页
基于2016年冻土融化期黑顶子河流域地表水、土壤水和地下水中稳定氢(δD)氧(δ^(18)O)同位素观测数据,分析了该区域融雪产流阶段δD和δ^(18)O的时空变化特征及主要影响因素。结果表明:融化期积雪δD和δ^(18)O平均值最小,分别为-9.33%... 基于2016年冻土融化期黑顶子河流域地表水、土壤水和地下水中稳定氢(δD)氧(δ^(18)O)同位素观测数据,分析了该区域融雪产流阶段δD和δ^(18)O的时空变化特征及主要影响因素。结果表明:融化期积雪δD和δ^(18)O平均值最小,分别为-9.33%和-1.28%,且变异性最大。冻土层隔绝了地下水与融雪水的联系,因而地下水、土壤水主要来自冻结期前降雨,其δD和δ^(18)O变异性最小且均匀的分布在大气降水线附近。冻融过程控制了融雪水与土壤水的蒸发速率和混合作用,进而影响了河水δD和δ^(18)O随时间的变化特征。土地利用类型不同导致下垫面之间土壤水和地下水δD和δ^(18)O差异较大。玉米田土壤水主要来自降雨,经历了先入渗再蒸发的过程,呈现表层大深层小的变化趋势。水稻田深层土壤水和地下水主要来自作物生长期灌溉水,经历了先蒸发后入渗的过程,δD和δ^(18)O较大;表层土壤水主要来自冻结期降雨或融雪入渗,δD和δ^(18)O较小。受水稻田地下水补给、河道融冰补给以及蒸发作用的影响,主河道稳定同位素显著大于支流,这种差异的大小与流域水循环活跃程度密切相关。 展开更多
关键词 季节性冻融区 氢氧同位素 过程 土地利用类型 雪产流
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Effects of freeze-thaw cycle on engineering properties of loess used as road fills in seasonally frozen ground regions,North China 被引量:17
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作者 LI Guo-yu MA Wei +3 位作者 MU Yan-hu WANG Fei FAN Shan-zhi WU Ya-hu 《Journal of Mountain Science》 SCIE CSCD 2017年第2期356-368,共13页
Compacted loess is widely used as fills of road embankments in loess regions of northern China.Generally, densely-compacted loess can satisfy the requirements of embankment strength and postconstruction deformation. H... Compacted loess is widely used as fills of road embankments in loess regions of northern China.Generally, densely-compacted loess can satisfy the requirements of embankment strength and postconstruction deformation. However, uneven subsidence, pavement cracks and other related damages can affect the integrity of loess subgrade after several years of operation,and even cause some hazards, especially in North China, where the strong freeze-thaw erosion occurs. In this study, cyclic freeze-thaw tests for both densely and loosely compacted loess samples were performed to determine the variation in engineering properties such as volume, void ratio, collapsible settlement,microstructure, and the related mechanisms were addressed. The experimental results showed that an obvious water migration and redistribution occurred within the samples during freeze-thaw cycles. Ice lenses and fissures could be identified in the upper frozen layers of the samples. After freeze-thaw cycles,the dry densities of the upper layers of samples changed significantly due to strong freeze-thaw erosion. The dry densities decreased for the dense sample and increased for the loose sample. It can be found that dense samples become loose, while loose samples became dense with the increasing number of freeze-thaw cycles. Their related void ratios changed reversely. Both void ratios tended to fall into a certain range, which verified the concept of a residual void ratio proposed by Viklander. The loosening process of densely compacted samples involves the formation of large pores, volume increase and density reduction as well as the related changes in mechanical properties because freeze-thaw cycles may be important contribution to problems of loess road embankments.Adverse effects of freeze-thaw cycles, therefore,should be taken into account in selecting loess parameters for the stability evaluation of road embankment in seasonally frozen ground regions. 展开更多
关键词 LOESS Freeze-thaw cycle Frost heave Thaw settlement Road engineering
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Variation law of microscopic pore of loess-like soil after several freeze-thaw cycles in seasonal frozen soil region
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作者 CHEN Zongfang CHEN Hui'e ZHANG Ying 《Global Geology》 2013年第3期154-158,共5页
In seasonal frozen soil region,the engineering geological properties of loess-like soil will be deteriorated after freeze-thaw cycles.Through the freeze-thaw cycle experiment of remolded loess-like soil,under differen... In seasonal frozen soil region,the engineering geological properties of loess-like soil will be deteriorated after freeze-thaw cycles.Through the freeze-thaw cycle experiment of remolded loess-like soil,under different freezing temperatures,the authors carried out freeze-thaw cycle tests for 3 times and 20 times,respectively.With mercury intrusion porosimetry and granulometric analysis,from the micro-structure,the authors studied the law that freeze-thaw cycle times and frozen temperature effect on the variation of microscopic pore of loesslike soil.This result can provide theoretical basis for comprehensive treatment of problems in the construction of the project in seasonal frozen loess-like soil region. 展开更多
关键词 loess-like soil freeze-thaw cycles variation law of microscopic pore granulometric composition
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