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541.
塔里木盆地南缘喀拉米兰河克里雅河流内流区近30a来的冰川变化研究 总被引:7,自引:3,他引:4
对1999年的喀拉米兰河-克里雅河流内流区的Landsat ETM+影像运用非监督分类、监督分类,雪盖指数域值法和比值域值法提取其中176条冰川的边界信息,并与目视解译结果进行定量比较,结果表明:比值域值法精度最高,达98.32%;将比值域值法提取1999年的冰川边界与1970年航测地形图勾绘的冰川边界进行叠加分析,得到整个流域29 a来的冰川变化信息.统计表明,流域冰川条数减少了0.6%,总面积萎缩了2.86%,总冰储量减少了3.10%,大多数冰川处于稳定状态. 相似文献
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Effect of earthquake‐induced axial load fluctuations on asymmetric frame–wall–rocking foundation systems
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Weian Liu Tara C. Hutchinson Bruce L. Kutter Andreas G. Gavras Manouchehr Hakhamaneshi 《地震工程与结构动力学》2015,44(12):1997-2013
Fluctuations in axial load imposed on a rocking footing will affect its moment capacity, the shape of its moment–rotation hysteresis, and potentially the system's seismic performance. Structural asymmetry increases the likelihood of axial load variation during earthquake excitations. To investigate this issue, a unique centrifuge testing program was carried out on low‐rise frame–wall–rocking foundation systems. In this paper, the seismic behaviors of asymmetric and symmetric models from this test program are systematically compared. Experimental results reveal that placing the lateral force resisting shear wall outboard produces significant axial load fluctuation, which in turn greatly deteriorate the lateral load‐carrying capacity of a foundation rocking dominated frame–wall system, particularly in its weak direction. However, it strengthens the system when loading is towards the shear wall, leading to a highly asymmetric hysteretic response. During earthquake loading, all asymmetric rocking foundation systems observe smaller peak roof accelerations, but larger peak and permanent roof drifts compared with the symmetric systems. Despite these differences in response, the axial load fluctuation and structural asymmetry do not significantly change the relative energy dissipated by the rocking foundations and inelastic structural components within each frame–wall–rocking foundation model. Copyright © 2015 John Wiley & Sons, Ltd. 相似文献
545.
基于Richards方程,对坝体的饱和-非饱和渗流场进行了模拟,再根据饱和-非饱和渗流场和非饱和土抗剪强度公式,对坝体的稳定性进行了分析。结果表明,水位骤降过程中坝体的安全系数通常呈现先缓慢增加后迅速减小的变化过程,分析坝体失稳时塑性区和位移场发现,水位下降的初期,坝体左侧坡体的安全系数要低于坝体右侧坡体,但水位下降到一定程度,右侧坡体的安全系数迅速减小,并先于左侧坡体失稳;采用有限元强度折减法用于多坡面边坡稳定分析时,只能获得最小安全系数的包络线;心墙具有隔水防渗的作用,对水位变化渗流具有阻尼作用。 相似文献
546.
海峡西岸一次雾过程微结构及其起伏特征研究 总被引:5,自引:2,他引:3
2013年春季在福建省厦门市开展了海雾综合观测,选取了4月17日一次海雾期间的能见度、常规气象要素和雾滴谱资料,分析了沿岸海雾发生时的天气系统和微结构特征,并讨论了气象要素的起伏对雾发展、持续、消散及其微结构起伏的影响。海雾间歇阶段和消散阶段均有风速风向的突变;含水量、数浓度、平均直径和最大直径在不同阶段均有明显的差异,即使在同一阶段也不断波动;海雾爆发性增强过程中雾滴谱出现爆发性拓宽,平均直径、数密度和含水量骤然增大,宏观的气象条件也发生了明显变化;海雾不同阶段由于湍流、辐射以及气象条件的差异,雾滴空间分布的不连续,雾滴核化、凝结、碰并和蒸发作用,微结构的起伏较大。 相似文献
547.
半隐蔽式草方格沙障凹曲面形成的流场解析及沉积表征 总被引:9,自引:0,他引:9
利用野外风沙观测、沉积物粒度分析和等比例实体草方格风洞流场模拟,解析了草方格沙障内部凹曲面形成的风沙流场过程。草方格分别作为疏透沙障和地表粗糙元对贴地层和近地层风沙流具有不同的影响:床面蚀、积分布和方格中心凹曲面的形成发展,以及沉积物粒度变化,取决于草带之间的贴地层流场分布格局以及草带对风沙流中固体物质的截留;近地层风力普遍受到草方格粗糙元的削弱,促进了沙面稳定。高风速下输沙率垂向分布的“象鼻”结构,体现了草方格对促使风沙流结构变异、形成和维持草方格凹曲面的重要性。沙丘不同部位草方格沉积物粒度分布模式不同,显示沙丘部位也是影响草方格内部流场的一个因素,以迎风坡中部最有利于方格内凹曲面的形成。 相似文献
548.
PeiJun Shi Shao Sun Ming Wang Ning Li Jing’Ai Wang YunYun Jin XiaoTian Gu WeiXia Yin 《中国科学:地球科学(英文版)》2014,57(11):2676-2689
Since climatic condition is the important foundation for human subsistence and development and the key factor in sustainable development of economy and society, climate change has been a global issue attracting great attentions of politicians, scientists, governments, and the public alike throughout the world. Existing climate regionalization in China aims to characterize the regional differences in climate based on years of the mean value of different climate indexes. However, with the accelerating climate change nowadays, existing climate regionalization cannot represent the regional difference of climate change, nor can it reflect the disasters and environmental risks incurred from climate changes. This paper utilizes the tendency value and fluctuation value of temperature and precipitation from 1961 to 2010 to identify the climate change quantitatively, and completes the climate change regionalization in China(1961–2010) with county administrative regionalization as the unit in combination with China's terrain feature. Level-I regionalization divides China's climate change(1961–2010) into five tendency zones based on the tendency of temperature and precipitation, which are respectively Northeast China-North China warm-dry trend zone, East China-Central China wet-warm trend zone, Southwest China-South China dry-warm trend zone, Southeast Tibet-Southwest China wet-warm trend zone, and Northwest China-Qinghai-Tibet Plateau warm-wet trend zone; level-II regionalization refers to fourteen fluctuation regions based on level-I regionalization according to the fluctuation of temperature and precipitation. 相似文献
549.
Xin Cao Jun Chen LiJun Chen AnPing Liao FangDi Sun Yang Li Lei Li ZhongHui Lin ZhiGuo Pang Jin Chen ChaoYing He Shu Peng 《中国科学:地球科学(英文版)》2014,57(10):2330-2339
Land surface water (LSW) is one of the most important resources for human survival and development, and it is also a main component of global water recycling. A full understanding of the spatial distribution of land surface water and a continuous measuring of its dynamics can support to diagnose the global ecosystem and environment. Based on the Global Land 30-water 2000 and Global Land 30-water 2010 products, this research analyzed the spatial distribution pattern and temporal fluctuation of land surface water under scale-levels of global, latitude and longitude, continents, and climate zones. The Global Land 30-water products were corrected the temporal inconsistency of original remotely sensed data using MODIS time-series data, and then calculated the indices such as water area, water ration and coefficient of spatial variation for further analysis. Results show that total water area of land surface is about 3.68 million km2 (2010), and occupies 2.73% of land area. The spatial distribution of land surface water is extremely uneven and is gathered mainly in mid- to high-latitude area of the Northern Hemisphere and tropic area. The comparison of water ratio between 2000 and 2010 indicates the overall fluctuation is small but spatially differentiated. The Global Land 30-water products and the statistics provided the fundamental information for analyzing the spatial distribution pattern and temporal fluctuation of land surface water and diagnosing the global ecosystem and environment. 相似文献
550.
本文利用TIMED/SABER 2002年1月至2013年1月共11年的卫星温度探测数据,通过全球网格化及在网格内作数学统计的方法,得到了20~100km高度上全球网格点上温度的平均值和标准差,实现了对临近空间全球大气扰动进行定量刻画的目的.通过定量分析温度标准差的分布特性,文中得到了临近空间大气扰动的全球分布规律,并讨论了与这些分布规律相关的物理过程.结果表明,在20~70km高度上,温度标准差为1~10K,有显著的冬季/夏季的差异,冬季的温度标准差比夏季大;大气重力波扰动是最主要来源,同时大气传播性行星波引起的扰动也是来源之一.在70~100km高度上,温度标准差常年较强,量值为10~30K,冬季/夏季的差异小,低纬地区的温度标准差高于中高纬度地区,呈现许多局地化的小结构.大气重力波是引起该区域大气总扰动量的主要扰动来源,大气潮汐波、传播性行星波(准2天、准6.5天)也有重要贡献. 相似文献