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黄河在宁夏沙坡头形成了"几"字形河曲地貌,并在河曲凸岸发育了3级河流阶地。本文针对沙坡头大弯河流阶地特征、阶地年龄,以及大拐弯的成因进行了分析,探讨本区地貌发育的机制。结果表明:(1)沙坡头大弯3级河流阶地形成的主要原因是构造抬升作用,气候变化对此处阶地形成的作用不明显。在区域新构造活动强烈的背景下,约中更新世末期中卫盆地开始抬升,黄河河道被固定,河流下切形成本区的最高阶地T3;约在70kaB.P.、8kaB.P.形成T2、T1阶地。(2)沙坡头黄河大拐弯是由香山—天景山断裂左旋走滑位错,以及水流受地球自转偏向力的河流内生动力共同作用的结果,并且河流的内生动力作用远大于前者的贡献。  相似文献   

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对2000年以采中国大陆30多个5.0≤M_s≤7.0地震和部分5级以下地震灾害损失资料进行统计分析,总结归纳出农村典型的震害特征,得到一些震害的经验教训和启示。通过总结归纳近年来新疆、甘肃、海南等地实施农居地震安全工程的典型案例和成功经验,提出了进一步推进农居地震安全工程、提高农村民居抗震设防水平的对策建议。  相似文献   

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目前世界上地震预警系统基本都是通过地震台网来确定地震的震级并对地震进行定位,其预警准确性的提高主要依靠台网密度的增加。基于地震预警原理以及传感器技术,本文首次探讨了仅用单台地震监测传感器快速测定地震基本参数的可能性。设计了一种用于地震预警的地震监测传感器模块,阐述了确定地震参数的算法。该传感器模块能自动捡拾P波的到时,然后利用P波的初动信息确定地震的方位角,最后利用P波到达后前3s加速度数据确定地震的震级、震源距,并发出警告,达到地震监测及预警的目的。  相似文献   

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在喀什市城区地震小区划工作的基础上,通过对喀什城区地貌单元划分,描述了不同地貌单元内的地层岩性,将实测剪切波速钻孔资料统计分析,运用较为常用的三种统计回归分析方法给出喀什市城区不同地貌单元不同土类剪切波速与土层深度的经验关系。结果可为喀什市城区防震减灾规划土层地震反应分析提供依据。  相似文献   

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提出了利用小高层结构屋顶保温层和铅芯橡胶支座作为TMD装置来达到减震的设想。通过SAP2000有限元软件利用动力时程分析方法对其减震效果进行了分析。结果表明,该屋顶保温层TMD装置可有效降低结构的动力响应,其中控制后结构的楼层位移和楼层加速度的平均值降低了约20%,层间位移平均值降低了30%左右,层间剪力平均值减小了约20%~30%。利用小高层结构屋顶保温层和橡胶支座作为结构的减震控制系统具有一定的可行性和实用性。  相似文献   

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2013年2月6-8日圣克鲁斯群岛发生6次强震,琼中地震台的重力仪记录都有同震响应出现。本文从重力仪记录的面波的延迟时间、最大变形幅度、同震持续时间3个方面研究了6次强震的同震响应特征。  相似文献   

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采用振动台物理模拟试验方法,以4种不同覆土厚度的层状边坡模型为研究对象,水平输入振幅逐渐增大的正弦波加速度,分析了结构面上覆不同厚度土层对动力作用下边坡的稳定影响.研究了在动力作用下边坡的破坏位置和性质、破坏形式及最危险覆土厚度,验证了坡面放大效应与高程的关系,采用MIDAS/GTS软件对模型试验进行振型分析,分析了模型边坡的自振频率与覆土厚度的变化关系.试验结果表明:①模型破坏时最先出现的裂缝在边坡的中上部,且6 cm覆土厚度的模型对振动的响应最大,对应到实际工程中时12m厚度土层覆盖的边坡是最应该注意防护的.②不同厚度的土层破坏的形式不同:当土层厚度较薄时模型破坏较迅速,基本沿结构面发生整体滑动破坏,且滑动呈现一定的流体特性;当覆土较厚时裂缝先在模型中上部出现,随着振动的持续裂缝继续发展,最后发生整体性崩塌.③随着高程的增加峰值加速度总体呈放大趋势,但最大值出现在边坡中上部而非坡顶,说明不仅均质边坡有加速度的高程放大效应,层状边坡也具有加速度的高程放大效应.  相似文献   

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为分析海拔高度大于1 300m的中高山地区地形地貌因子对滑坡发育的敏感性程度,运用基于因子综合贡献率的敏感性分析方法,研究黔东北中高山地区坡面形态、地形坡度、相对高差三类影响因子对滑坡发育的影响程度.在各类影响因子对滑坡发育频数、面积及体积分量贡献率的基础上,利用顺序赋值法量化各分量贡献率的贡献指数,并以各分量贡献指数的几何平均数构建敏感性系数,定量分析三类地形地貌影响因子对中高山地区滑坡发育的敏感性.研究结果表明,阶梯形和凸形坡面形态的斜坡中后部为地貌演化堆积区,能提供较大重力势能,属滑坡发育的敏感性坡面形态因子;地形坡度在18°~22°之间的较陡坡和相对高差在40~80m之间的矮坡常分布于受地表水强烈冲刷的地带,在一定重力势能和强烈地下水共同作用下,极易诱发浅层小规模滑坡;地形坡度大于27°的极陡坡和相对高差大于120m的高坡由于具备较大重力势能,常诱发深层大规模滑坡.  相似文献   

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收集和统计了2008年汶川MS8.0地震、2010年玉树MS7.1地震和2013年芦山MS7.0、岷县MS6.6地震引起的中国大陆井水温同震响应现象,分析了其特征。结果显示:这4次地震对中国大陆地下流体影响显著,井水温同震响应特征有很大差异,后三次水温同震响应范围、幅度和持续时间远不及汶川地震,即使震级相差不大的玉树和芦山地震,同震响应的特征也不尽相同。最后探讨了这种现象的成因机理。  相似文献   

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《国际泥沙研究》2014,(4):F0003-F0003
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《国际泥沙研究》2014,(2):F0003-F0003
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《国际泥沙研究》2014,(3):F0003-F0003
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The partitioning of rain water into throughfall, stemflow and interception loss when passing through plant canopies depends on properties of the respective plant species, such as leaf area and branch angles. In heterogeneous vegetation, such as tropical forest or polycultural systems, the presence of different plant species may consequently result in a mosaic of situations with respect to quantity and quality of water inputs into the soil. As these processes influence not only the water availability for the plants, but also water infiltration and nutrient leaching, the understanding of plant effects on the repartitioning of rain water may help in the optimization of land use systems and management practices. We measured throughfall and stemflow in a perennial polyculture (multi‐strata agroforestry), monocultures of peach palm (Bactris gasipaes) for fruit and for palmito, a monoculture of cupuaçu (Theobroma grandiflorum), spontaneous fallow and primary forest during one year in central Amazonia, Brazil. The effect on rain water partitioning was measured separately for four useful tree species in the polyculture and for two tree species in the primary forest. Throughfall at two stem distances, and stemflow, differed significantly between tree species, resulting in pronounced spatial patterns of water input into the soil in the polyculture system. For two tree species, peach palm for fruit (Bactris gasipaes) and Brazil nut trees (Bertholletia excelsa), the water input into the soil near the stem was significantly higher than the open‐area rainfall. This could lead to increased nutrient leaching when fertilizer is applied close to the stem of these trees. In the primary forest, such spatial patterns could also be detected, with significantly higher water input near a palm (Oenocarpus bacaba) than near a dicotyledonous tree species (Eschweilera sp.). Interception losses were 6·4% in the polyculture, 13·9 and 12·3% in the peach palm monocultures for fruit and for palmito, respectively, 0·5% in the cupuaçu monoculture and 3·1% in the fallow. With more than 20% of the open‐area rainfall, the highest stemflow contributions to the water input into the soil were measured in the palm monocultures and in the fallow. Copyright © 1999 John Wiley & Sons, Ltd.  相似文献   

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A procedure for short-term rainfall forecasting in real-time is developed and a study of the role of sampling on forecast ability is conducted. Ground level rainfall fields are forecasted using a stochastic space-time rainfall model in state-space form. Updating of the rainfall field in real-time is accomplished using a distributed parameter Kalman filter to optimally combine measurement information and forecast model estimates. The influence of sampling density on forecast accuracy is evaluated using a series of a simulated rainfall events generated with the same stochastic rainfall model. Sampling was conducted at five different network spatial densities. The results quantify the influence of sampling network density on real-time rainfall field forecasting. Statistical analyses of the rainfall field residuals illustrate improvement in one hour lead time forecasts at higher measurement densities.  相似文献   

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Red tide, a recurrent phenomenon has become conspicuous in several Kashmir lake ecosystems since 1991. The responsible organism (Euglena pedunculata), a rare flagellate rediscovered in the Kashmir Himalaya (Khan 1993) caused first and unprecedented red tide outbreak, constituting a maximum of 96% of resident numerical phytoplankton density in Dal Lake. At present, conflicting hypotheses exist on the generation of causal assemblage(s) imparting redness to waters: Jeeji Bai (1991) linked its origin to acid precipitation – a fallout of burning oil‐fields during the Gulf War – whilst Khan (1993) holds local factor(s) responsible. Field/experimental studies support the latter contention that the influx of untreated sewage, in unison with warm temperatures, high levels of PhAR, iron and interruption to hydrological flow‐pattern together with absence/or reduction in grazing activity created conducive environmental milieu for red tide outbreak. Dal Lake “red tide” drifted the bloom‐inoculum to other waters, including Lake Wular, where additional ecological niches were carved out, threatening the aesthetic value and biological diversity of Kashmir lakes. Ecological monitoring indicates frequent seasonal red tide occurrence in Dal Lake (including summer‐autumn event of 1998) which testifies its unabated eutrophication status. Further studies are needed on ecological adaptability and biogeographic distribution of this rare and unique red tide‐causing flagellate.  相似文献   

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