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1.
爆破理论的研究历史,经历了三个不同的发展阶段,各阶段均有其代表性理论。文章介绍和分析了各爆破理论的要点及其优缺点以及最新进展情况,对工程爆破实践起着重要的指导意义  相似文献   
2.
基于GIPL2模型的青藏高原活动层土壤热状况模拟研究   总被引:5,自引:5,他引:0  
青藏高原活动层土壤热状况,对深入了解高原活动层的厚度变化特征、下垫面的热力作用以及对气候变化预测均有重要意义。利用GIPL2模型模拟青藏高原多年冻土区不同植被状况下活动层土壤热状况。模拟结果表明:模型在高寒草原(QT06)试验点模拟效果较好,高寒沼泽草甸(QT03)试验点的模拟效果较差,高寒草甸(QT01)、高寒荒漠草原(QT05)和高寒草原化草甸(QT04)试验点的模拟效果介于高寒草原试验点和高寒沼泽草甸试验点之间。QT01、QT03、QT04、QT05和QT06的土壤温度模拟值与观测值相比,均方根误差分别为0.67、1.29、0.73、0.7和0.56℃;相关系数分别为0.99、0.87、0.98、0.98和0.96;平均误差分别为0.37、0.61、0.31、0.45和0.16℃。QT06模拟结果较好,原因在于此点土壤质地变化不大,模型的分层与所取的参数更加接近此点的实际状况。QT03模拟结果较差,可能由于此地区土壤中存在砾石,在导热率参数化方案中没有考虑砾石含量,导致模拟结果偏差较大。总体而言,GIPL2模型对青藏高原活动层土壤热状况的模拟具有一定的优势,是一种模拟多年冻土区活动层土壤热状况较为理想的模型。  相似文献   
3.
ERA-Interim地表温度资料在青藏高原多年冻土区的适用性   总被引:3,自引:0,他引:3  
地表温度综合反映了大气和地表植被、土壤等局地因素相互作用的能量交换状况,是许多冻土分布模型和寒区陆面过程模式的上边界条件,对多年冻土分布和活动层厚度估算具有重要意义。为了检验ERA-Interim再分析地表温度资料在青藏高原(下称高原)多年冻土区的适用性,综合比较了2011年1月1日至2012年12月31日期间高原不同类型多年冻土区3个综合观测场的观测地表温度和ERA-Interim再分析资料之间的偏差、均方差、相关系数、解释方差、均方根误差和平均绝对误差。结果表明,ERA-Interim再分析资料能较好地再现高原多年冻土区3个综合观测场地表温度的基本特征,并能较好地描述高原地表温度的季节变化。但ERA-Interim再分析年平均地表温度比观测值偏低,西大滩、五道梁和唐古拉站依次偏低1.7,1.0和0.9℃;地表温度的再分析值和观测值之间的相关系数和解释方差都较高,均方差也相近。ERA-Interim再分析地表温度资料对观测站点相对稀少且空间分布不均匀的高原多年冻土区具有较好的适用性,可以作为地表温度的有效代用资料。  相似文献   
4.
The soil thermodynamic parameters, including thermal conductivity, diffusivity and volumetric capacity within the active layer on the northern Tibetan Plateau, were calculated using the measured data of soil temperature gradient, heat flux, and moisture at four stations from October 2003 to September 2004. The results showed that the soil thermodynamic parameters exhibited clear seasonal fluctuation. The thermal conductivity and diffusivity in summer and autumn at Beiluhe, Kexinling, and Tongtianhe were larger than those in winter. The volumetric thermal capacity causes an opposite change; it was larger in autumn and winter than in summer. In spring, the soil thermal conductivity at the Kekexili station was larger than that in summer. Generally, fine-grained soils and lower saturation degrees in the topsoil might be a reason for the lower soil thermal conductivity in winter. For a given soil, soil moisture was the main factor influencing the thermodynamic parameters. The unfrozen water content that existed in frozen soils greatly affected the soil thermal conductivity, whose contribution rate was estimated to be 55 %. The thermodynamic parameters of frozen soils could be expressed as a function of soil temperature, volumetric ice content and soil salinity, while for the unfrozen ground the soil moisture content is the dominant factor for those thermal parameters. As for the soil thermal diffusivity, there exists a critical value of soil moisture content. When the soil moisture content becomes less than a critical value, the soil thermal diffusivity increases as the soil moisture content rises.  相似文献   
5.
1979-2016年我国东北地区空中水汽状况及变化趋势分析   总被引:1,自引:1,他引:0  
柏睿  李韧  吴通华  杜宜臻 《冰川冻土》2019,41(6):1441-1447
水汽是形成云和降水的物质基础,与全球水分循环和能量平衡密切相关,对天气和气候具有重要影响。基于NCEP/NCAR月值再分析资料,综合分析我国东北地区上空不同高度层位比湿的气候学特征和长期趋势变化,同时分析了整层积分水汽通量的季节变化。结果表明:东北地区空中水汽集中分布于500 hPa以下,1979年至20世纪末低层比湿呈增加趋势,2000年后转为缓慢下降,但2012年以来波动回升。此外,东北地区比湿及水汽通量季节差异明显,夏季水汽含量最多,冬季最少,秋季多于春季;东北地区水汽含量最大值出现于7月,最低值出现在每年12月至次年1月。水汽来源受东亚季风系统影响明显,夏季水汽源地主要为南海,渤海和黄海对东北地区夏季水汽也有一定贡献;其他季节水汽主要来源于西风带输送。  相似文献   
6.
多年冻土区活动层冻融状况及土壤水分运移特征   总被引:14,自引:8,他引:6  
利用位于典型多年冻土区的唐古拉综合观测场2007年9月1日—2008年9月1日实测活动层剖面土壤温度和水分数据,对多年冻土区活动层的冻结融化规律进行研究;同时,对冻融过程中的活动层土壤液态水含量的变化特征进行分析,探讨了活动层内部土壤水分分布特征及其运移特点对活动层冻结融化过程的影响. 结果表明:活动层融化过程从表层开始向下层土壤发展,冻结过程则会出现双向冻结现象. 一个完整的年冻融循环中活动层冻结过程耗时要远远小于融化过程. 活动层土壤经过一个冻融循环,土壤水分整体呈现下移的趋势,土壤水分逐步运移至多年冻土上限附近积累. 同时,土壤水分含量和运移特征会对活动层冻融过程产生显著的影响.  相似文献   
7.
Ground-penetrating radar (GPR) has become an important geophysical tool which can provide a wealth of interpretive information about the vertical profile of discontinuous permafrost. A GPR investigation was conducted in October 2006 at the Nalaikh site at the southern boundary of the Siberian discontinuous permafrost region in Mongolia. GPR data were collected along four 100-m-long profiles to identify the location of the permafrost body, which included an in situ drilling borehole and analysis of temperature observations and soil water content measurements from boreholes. The GPR interpretation results indicated that the thickness of discontinuous permafrost at the study site was only 1.9–3.0 m and the permafrost is vulnerable to climate change. The soil temperature and soil water content data demonstrate the precision of GPR image interpretation. This case demonstrated that GPR is well suited for mapping the internal structure of discontinuous permafrost with relatively low soil water content.  相似文献   
8.
A large volume of underground gas in the permafrost region of the Qinghai-Tibetan Plateau has been identified. Although many studies were performed to investigate the soil organic carbon dynamics and Earth degassing in volcanic areas, this is the first report of a large amount of non-volcanic CO2 contained in permafrost. The gas was mostly CO2 (81.76 vol. %) and nitrogen (14.59 vol. %). The gas composition and the evidence from carbon stable isotope values (?23.9 ‰, PDB) suggested that the gases possibly had a deep origin. The gas emissions may be triggered by permafrost degradation, which means mitigation of the barrier effect of permafrost for the gas. In addition, plate tectonic processes may also lead to gas emissions, as the tectonic activity is strong in the area. Therefore, particular attention should be paid to the underground gases in the study of global change and permafrost degradation.  相似文献   
9.
“Belt and Road” regions include Asia, Europe and eastern and northern Africa, with a wide spatial distribution. The cryosphere is undergoing rapid changes in the Belt and Road regions with global warming, and has an important impact on water resources, ecosystems and Arctic waterways in these regions. This article reviewed recent cryospheric changes and associated impacts on water resources in the Belt and Road regions during the last decades. The main cognitions are as follows: Most glaciers are shrinking and glacier mass balances are most negative, but there are regional differences in the changes of glaciers. Global temperature rise has resulted in permafrost degradation, including a rise in permafrost temperature and decreasing permafrost thickness as well as an increase in active layer thickness. There is a significant decrease in snow cover extent and an increase in snow depth. Snow cover duration has shortened, the onset of snow cover has delayed, and the end of snow cover has advanced. However, there are still obvious regional differences in the changes of snow cover. Arctic sea ice has declined precipitously in both extent and thickness in summer, and multi-year sea ice has decreased,indicating the precipitous retreat of sea ice. The freeze-up date of some lakes has been delayed, the break-up date has advanced, and the ice cover duration of river/lake ice has significantly shortened. Glacial runoff has increased significantly in China. Snowmelt and permafrost degradation have also increased the basin runoff, which indicates the important impact of cryospheric changes on runoff. This study will provide a baseline and important scientific support for addressing climate change and regional sustainable development.  相似文献   
10.
Wu  Tonghua  Qin  Yanhui  Wu  Xiaodong  Li  Ren  Zou  Defu  Xie  Changwei 《Theoretical and Applied Climatology》2018,132(3-4):1187-1199
Theoretical and Applied Climatology - The spatial and temporal changes of the ground surface freezing indices (GFIs), ground surface thawing indices (GTIs), air freezing indices (AFIs), and air...  相似文献   
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