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1.
由于喜马拉雅山和西藏高原的隆起,增加了上新世末或更新世初中国西、中和东部的隆起差异,同时在中亚和中国西北部形成干燥地区,黄土开始在中国中北部堆积,结果,以前分散的河流体系汇合形成黄河,虽然Zhu(1989)赞同黄河形成于早更新世末,但Zhang(1989)认为黄河形成于晚更新世末,尽管这些结论不同,  相似文献   
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为了研究喜马拉雅山北坡冬季大气气溶胶化学组分、光学特征及来源,2017年11—12月在珠穆朗玛峰站(QOMS)共采集22个PM2.5样品。结果显示:PM2.5中包括水溶性离子(WSIs)、有机质(OM)、元素碳(EC)在内的所有检测成分,总质量浓度为(3.36±1.06) μg?m-3;有机碳(OC)、元素碳(EC)和水溶性有机碳(WSOC)的浓度分别为(1.10±0.38)、(0.13±0.12)和(0.84±0.24) μg?m-3,浓度水平与偏远地区相当,低于季风前。碳质成分(OM+EC)占所有测试成分比例为73.6%,与之前珠峰站报道的研究结果相近。用PM2.5水溶性组分在365 nm处的光吸收效率(Abs365)来表征水溶性棕色碳(WS-BrC),它与WSOC、K+存在较好的相关性(R2=0.63、0.50),而与EC相关性弱(R2=0.01),说明水溶性棕色碳可能源于生物质燃烧和二次反应。MODIS火点信息和气团后向轨迹分析进一步表明,尼泊尔地区的燃烧活动是珠峰站冬季碳质气溶胶的重要来源。同时,喜马拉雅山脉独特的局地风场是污染物跨境传输至珠峰地区的重要原因。  相似文献   
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喜马拉雅山北部地区的地壳结构模型和速度分布特征   总被引:16,自引:8,他引:16       下载免费PDF全文
本文根据1981年西藏南部喜马拉雅地区的人工地震测深资料进行了震相对比,分辨出t1、t2、t3、t4、t5和t6六组地壳中和莫霍界面的反射波,并用理论走时曲线、绘制速度曲线图、射线跟踪和综合地震图等方法得到了主测线(PP)上各地段的地壳结构模型。初步结果表明,该地区地壳西段较薄(约73公里),东段稍厚(约77公里),平均总厚度约为75公里。地壳的平均P波速度约为6.2-6.3公里/秒。 地壳为高低速相间的多层结构。在中上部有一低速层,其厚度为数公里,速度为5.6-5.7公里/秒,与上层速度差为0.5-0.6公里/秒。低速层在测线东段比较肯定,在西段则不甚明显。结合藏南定日、岗巴一线有强烈水热活动的事实,低速层的存在可能意味着地壳中存在部分熔融的高温物质。下部地壳的速度为6.7-6.8公里/秒,且比较均匀。从莫霍面反射波的特征来看,在紧靠其上方可能有一个速度反转带,其厚度亦为数公里。上部地壳的结构在横向上有较大的差异,这说明在地质历史上,西藏特提斯带曾经历过强烈的地壳变动。  相似文献   
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Much geological research has illustrated the transition of paleoenvironmental patterns during the Cenozoic from a planetary-wind-dominant type to a monsoon-dominant type, indicating the initiation of the East Asian monsoon and inland-type aridity. However, there is a dispute about the causes and mechanisms of the transition, especially about the impact of the Himalayan/Tibetan Plateau uplift and the Paratethys Sea retreat. Thirty numerical sensitivity experiments under different land-sea distributions and Himalayan/Tibetan Plateau topography conditions are performed here to simulate the evolution of climate belts with emphasis on changes in the rain band, and these are compared with the changes in the paleoenvironmental patterns during the Cenozoic recovered by geological records. The consistency between simulations and the geological evidence indicates that both the Tibetan Plateau uplift and the Paratethys Sea retreat play important roles in the formation of the monsoon-dominant environmental pattern. Furthermore, the simulations show the monsoon-dominant environmental pattern comes into being when the Himalayan/Tibetan Plateau reaches 1000–2000 m high and the Paratethys Sea retreats to the Turan Plate.  相似文献   
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Roadside slope failure is a common problem in the Himalayan region as road construction activities disturb natural slopes. Therefore, landslide susceptibility zonation is necessary for roadside slope disaster management and planning development activities. In this study, we consider a 53-kin section of a major highway in Nepal where road services are suspended for several days in the monsoon season every year. A number of methods have been used for landslide susceptibility zonation. We employed a bivariate statistical approach for this study. Relevant thematic layer maps represent- ing various factors (e.g., slope, aspect, land use, lithology, drainage density, proximity to stream and proximity to road) that are related to landslide activity, have been prepared using Geographic Information System (GIS) techniques. A total of 277 landslides (covering a total of 29.90 km2) of various dimensions have been identified in the area. A landslide susceptibility map was prepared by overlaying a landslide inventory map with various parameter maps segmented into various relevant classes. The landslide susceptibility index was seg- mented into five zones, viz. very low, low, moderate, high and very high susceptibility. Landslide susceptibility zonation maps are useful tools for the efficient planning and management of roadside slope repair and maintenance tasks in the Himalayan region.  相似文献   
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Invasive plant species are exerting a serious threat to biological diversity in many regions of the world. To understand plant invasions this study aims to test which of the two plant invasiveness hypotheses; ‘low native diversity' vs. ‘high native diversity', is supported by the regional distribution patterns of invasive plant species in the Himalayas,Nepal. This study is based on data retrieved from published literatures and herbarium specimens. The relationship between invasive plant species distribution patterns and that of native plant species is elucidated by scatter plots, as well as by generalized linear models. The native plant species and invasive plant species have similar distribution patterns and the maximum number of invasive plant species is found in the same altitudinal range where the highest richness for native tree species is found. There is a clear trend of higher invasive plant richness in regions where native tree species richness is relatively high.Consequently, the native plant richness is highest in the central phytogeographic region, followed by the eastern and the western regions, respectively. The invasive plant species also follows a similar trend.Additionally, the invasive plant species richness was positively correlated with anthropogenic factors such as human population density and the number of visiting tourists. This study supports the hypothesis that ‘high native diversity' supports or facilitates invasive plant species. Further, it indicates that nativeand invasive plant species may require similar natural conditions, but that the invasive plant species seem more dependent and influenced by anthropogenic disturbance factors.  相似文献   
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The tree root distribution pattern and biomass of seventeen year old trees of Grewia optiva, Morus alba, Celtis australis, Bauhinia variegata and Robinia pseudoacacia were studied by excavation method. B. variegata roots penetrated to a maximum depth of 4.78 m, whereas, M. alba roots were found down to 1.48 m depth. Lateral spread was minimum in B. variegata (1.10 m)and maximum inR. pseudoacacia (7.33 m). Maximum root biomass of 6.30 kg was found in R. pseudoacacia and minimum (2.43 kg) was found in M. alba. For four species viz.,G. optiva, M. alba, C. australis andR. pseudoacacia, 68%-87% root biomass occurred within top 0-30 cm soil depth, but forB. variegata this was only45%. The soil binding factor was maximum in G. optiva and minimum in B. variegata. Soil physico-chemical properties also showed wide variation. The study suggests thatB. variegata with a deep root system is the most suitable species for plantation under agroforestry systems. R. pseudoacacia and G. optiva with deep root systems, more lateral spread and high soil binding factor are suitable for plantation on degraded lands for soil conservation.  相似文献   
9.
With trends indicating increase in temperature and decrease in winter precipitation, a significant negative trend in snow-covered areas has been identified in the last decade in the Himalayas. This requires a quantitative analysis of the snow cover in the higher Himalayas. In this study, a nonlinear autoregressive exogenous model, an artificial neural network (ANN), was deployed to predict the snow cover in the Kaligandaki river basin for the next 30 years. Observed climatic data, and snow covered area was used to train and test the model that captures the gross features of snow under the current climate scenario. The range of the likely effects of climate change on seasonal snow was assessed in the Himalayas using downscaled temperature and precipitation change projection from - HadCM3, a global circulation model to project future climate scenario, under the AIB emission scenario, which describes a future world of very rapid economic growth with balance use between fossil and non-fossil energy sources. The results show that there is a reduction of 9% to 46% of snow cover in different elevation zones during the considered time period, i.e., 2Oll to 2040. The 4700 m to 52oo m elevation zone is the most affected area and the area higher than 5200 m is the least affected. Overall, however, it is clear from the analysis that seasonal snow in the Kaligandaki basin is likely to be subject to substantialchanges due to the impact of climate change.  相似文献   
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青藏高原有“世界屋脊”之称.又被称为“地球第三极”,她是地球上最年轻的一块广袤大陆。青藏高原有多广阔?总面积257万平方公里,最高的山脉喜马拉雅山平均海拔7000米以上,  相似文献   
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