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浸水入渗条件下压实黄土水-气运移规律试验研究 被引量:8
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作者 刘德仁 徐硕昌 +3 位作者 肖洋 王旭 李建东 张严 《岩土力学》 EI CAS CSCD 北大核心 2021年第12期3260-3270,共11页
压实黄土的干密度和初始含水率对水分入渗过程有显著的影响。以兰州黄土为研究对象,在室内填筑模型开展浸水入渗试验,测试入渗过程中不同深度处的土体体积含水率和孔隙气压力,分析水分入渗时湿润锋和孔隙气压力的变化规律。试验结果表明... 压实黄土的干密度和初始含水率对水分入渗过程有显著的影响。以兰州黄土为研究对象,在室内填筑模型开展浸水入渗试验,测试入渗过程中不同深度处的土体体积含水率和孔隙气压力,分析水分入渗时湿润锋和孔隙气压力的变化规律。试验结果表明:土体压实度增大时,入渗率减小,湿润锋面到达测点时间延长,压实度从0.83增大到0.93,不同深度入渗率降幅最高可达21.7%。初始含水率增加时,孔隙水连通性增强,入渗率增大。与初始含水率相比,干密度对水分入渗的影响更为显著;水分入渗过程中孔隙气压力变化呈现连续状态,可以划分为快速变化和缓慢变化两个阶段,浸水过程中最大峰值气压和稳定气压与土体初始含水率和干密度呈正相关关系;入渗率随入渗深度增加而大幅降低,且干密度越大或体积含水率越低,入渗率越小;考虑干密度和初始含水率对孔隙气压力的影响,对Green-Ampt模型进行修正,将入渗深度实测值与计算值进行对比分析,发现修正模型计算值与试验实测值吻合更好。 展开更多
关键词 非饱和黄土 入渗 湿润锋面 水-气运移规律 模型试验
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重塑非饱和黄土中水-气两相运移规律研究 被引量:3
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作者 余娅婷 王大浩 +1 位作者 董洁 王玮 《水资源与水工程学报》 CSCD 2020年第3期228-232,共5页
黄土区水分入渗的实质是水、气两相运移共同作用。长时间强降水影响下,水分入渗更易在远离边坡的土层底部形成封闭条件,而在靠近边坡区域形成开放条件。为深入剖析黄土中水-气运移规律,分别在封闭和开放条件下进行了重塑土柱试验,并统... 黄土区水分入渗的实质是水、气两相运移共同作用。长时间强降水影响下,水分入渗更易在远离边坡的土层底部形成封闭条件,而在靠近边坡区域形成开放条件。为深入剖析黄土中水-气运移规律,分别在封闭和开放条件下进行了重塑土柱试验,并统计分析了土柱内实测的含水率和气压数据。结果表明:在开放和封闭条件下,湿润锋运移速度初始时最大;体积含水率均为先增大后减小,封闭条件下含水率减小后趋于稳定,而开放条件下含水率仍存在小幅波动;开放条件下气压差先增大后减小,最后在0附近振荡,而封闭条件下浅层气压差波动上升,深层气压差振荡后减小趋于稳定。因此,在滑坡治理过程中应同时考虑水、气两相共同的影响,制定更为全面、高效的防治措施。 展开更多
关键词 非饱和黄土 水-气运移 土柱试验 湿润锋 体积含 气压差
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Evolution of Hydrodynamic Field, Oil-Gas Migration and Accumulation in Songliao Basin, China 被引量:4
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作者 楼章华 朱蓉 +3 位作者 金爱民 孙毛明 蔡希源 迟元林 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2004年第2期105-123,共19页
The oil-gas migration and accumulation in the Songliao Basin were analyzed in the view of fluid dynamics by the authors. The key point of fluid dynamics is hydrodynamics. Oil-gas migration and accumulation are related... The oil-gas migration and accumulation in the Songliao Basin were analyzed in the view of fluid dynamics by the authors. The key point of fluid dynamics is hydrodynamics. Oil-gas migration and accumulation are related closely with formation and evolution of hydrodynamic field. Based on abundant data, initial formation pressure and other parameters, such as water head were studied. They can be used to understand the present distribution of hydrodynamic field and its hydrochemical features. Generally, the hydrodynamic field in the basin is obviously asymmetrical. In its north and east part, there are the areas of centripetal flow caused by topographic relief when meteoric water permeate downwards. Its south part is an evaporation-concentration area. The central depression is an area of centrifugal flow driven by sediment compaction and its cross-formational flow area. Only at the basin margin and in the local uplifted and denudated area are the meteoric water permeating downwards areas. The centrifugal flow driven by sediment compaction is the main dynamic factor that induces oil-gas migration and accumulation and its formation period corresponding to the main stage of oil-gas migration and accumulation. Moreover, the evolution of hydrodynamic field has the cyclic property, which results in phased oil-gas migration by stages, and further dominates the terraced annular oil and gas distribution, concentric with their corresponding sags. 展开更多
关键词 Songliao Basin HYDRODYNAMICS oil-gas migration and accumulation
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