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寒区隧道围岩冻融冻结环境识别和类别划分研究 被引量:22
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作者 苑郁林 赖远明 《现代隧道技术》 EI CSCD 北大核心 2016年第3期19-25,41,共8页
针对寒区隧道围岩冻融、冻结环境的差别以及分类问题,文章提出了围岩冻融、冻结的三个控制要素——冻结指数、围岩裂隙水和围岩冻融敏感性。利用冻结指数不同段落值加之围岩冻融敏感性,将寒区隧道围岩区分为两大类:冻融围岩和永冻围岩,... 针对寒区隧道围岩冻融、冻结环境的差别以及分类问题,文章提出了围岩冻融、冻结的三个控制要素——冻结指数、围岩裂隙水和围岩冻融敏感性。利用冻结指数不同段落值加之围岩冻融敏感性,将寒区隧道围岩区分为两大类:冻融围岩和永冻围岩,并利用围岩冻融敏感度细划分成4个子类,从而提出了寒区隧道围岩冻融、冻结环境的判别标准。基于此标准,分析了寒区隧道不同类型围岩的特性及病害产生原因,提出了相应的防范措施和重点研究方向。 展开更多
关键词 寒区隧道 土隧道 负温 结指数 冻融敏感性 分类
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Non-cropping period accounting for over a half of annual nitric oxide releases from cultivated calcareous-soil alpine ecosystems with marginally low emission factors
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作者 LIN Fei LIU Chun-Yan +5 位作者 HU Xiao-Xia FU Yong-Feng ZHENG Xunhua ZHANG Wei WANG Rui CAO Guang-Min 《Atmospheric and Oceanic Science Letters》 CSCD 2018年第4期338-344,共7页
Nitric oxide(NO)emissions from alpine ecosystems conventionally being long-term cultivated with feed crops are not well quantified.The authors attempted to address this knowledge gap by performing a year-round experim... Nitric oxide(NO)emissions from alpine ecosystems conventionally being long-term cultivated with feed crops are not well quantified.The authors attempted to address this knowledge gap by performing a year-round experimental campaign in the northeastern Tibetan Plateau.Fertilized(F)and unfertilized(UF)treatments were established within a flat calcareous-soil site for the long-term cultivation of feed oats.NO fluxes and five soil variables were simultaneously measured.A single plow tillage accounted for approximately 54%–73%of the NO releases during the cropping period(CP);and the non-cropping period(NCP)contributed to 51%–58%of the annual emissions.The direct NO emissions factor(EFd)was 0.021%±0.021%.Significantly lower Q10 values(p<0.01)occurred in the F treatment during the CP(approximately 3.6)compared to those during the other period or in the other treatment(approximately 4.9?5.1),indicating a fertilizer-induced reduction in the temperature sensitivity.The selected soil variables jointly accounted for up to 72%(p<0.01)of the variance for all the fluxes across both treatments.This finding suggests that temporally and/or spatially distributed fluxes from alpine calcareous-soil ecosystems for feed crop production may be easily predicted if data on these soil variables are available.Further studies are needed to test the hypothesis that the EFd is larger in alpine feed-oat fields than those in this study if the soil moisture content is higher during the period following the basal application of ammoniumor urea-based fertilizer. 展开更多
关键词 Nitric oxide(NO)emissions direct NO emissions factor alpine meadow cultivation non-growing season freeze– thaw period plow tillage effect temperature sensitivity(Q10)
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A soil water and heat transfer model including changes in soil frost and thaw fronts 被引量:5
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作者 WANG AiWen XIE ZhengHui +2 位作者 FENG XiaoBing TIAN XiangJun QIN PeiHua 《Science China Earth Sciences》 SCIE EI CAS 2014年第6期1325-1339,共15页
Freeze-thaw processes in soils,including changes in frost and thaw fronts(FTFs),are important physical processes.The movement of FTFs affects soil hydrothermal characteristics,as well as energy and water exchanges bet... Freeze-thaw processes in soils,including changes in frost and thaw fronts(FTFs),are important physical processes.The movement of FTFs affects soil hydrothermal characteristics,as well as energy and water exchanges between the land surface and the atmosphere and hydrothermal processes in the land surface.This paper reduces the issue of soil freezing and thawing to a multiple moving-boundary problem and develops a soil water and heat transfer model which considers the effects of FTF on soil hydrothermal processes.A local adaptive variable-grid method is used to discretize the model.Sensitivity tests based on the hierarchical structure of the Community Land Model(CLM)show that multiple FTFs can be continuously tracked,which overcomes the difficulties of isotherms that cannot simultaneously simulate multiple FTFs in the same soil layer.The local adaptive variable-grid method is stable and offers computational efficiency several times greater than the high-resolution case.The simulated FTF depths,soil temperatures,and soil moisture values fit well with the observed data,which further demonstrates the potential application of this simulation to the land-surface process model. 展开更多
关键词 soil frost and thaw fronts soil water and heat transfer model moving-boundary problems
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