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91.
Landslide-prone slopes in earthquake-affected areas commonly feature heterogeneity and high permeability due to the presence of cracks and fissures that were caused by ground shaking. Landslide reactivation in heterogeneous slope may be affected by preferential flow that was commonly occurred under heavy rainfall. Current hydro-mechanical models that are based on a single-permeability model consider soil as a homogeneous continuum, which, however, cannot explicitly represent the hydraulic properties of heterogeneous soil. The present study adopted a dual-permeability model, using two Darcy-Richards equations to simulate the infiltration processes in both matrix and preferential flow domains. The hydrological results were integrated with an infinite slope stability approach, attempting to investigate the hydro-mechanical behavior. A coarse-textured unstable slope in an earthquake-affected area was chosen for conducting artificial rainfall experiment, and in the experiment slope, failure was triggered several times under heavy rainfall. The simulated hydro-mechanical results of both single- and dual-permeability model were compared with the measurements, including soil moisture content, pore water pressure, and slope stability conditions. Under high-intensity rainfall, the measured soil moisture and pore water pressure at 1-m depth showed faster hydrological response than its simulations, which can be regarded as a typical evidence of preferential flow. We found the dual-permeability model substantially improved the quantification of hydro-mechanical processes. Such improvement could assist in obtaining more reliable landslide-triggering predication. In the light of the implementation of a dual-permeability model for slope stability analysis, a more flexible and robust early warning system for shallow landslides hazard in coarse-textured slopes could be provided.  相似文献   
92.
Based on the analyses of mineralogical compositions by X-ray diffraction and microstructure by optical microscopy, the Young’ modulus and hardness of a claystone were characterized by the nano-indentation technique and homogenization method. Three distinct microstructural zones are identified in the claystone: clay matrix, a composite matrix of clay and small mineral grains and imbedded quartz grains. The elastic modulus and hardness of different zones were determined by nano-indentation testing. Based on the statistical analysis of nano-indentation results, the spatial mappings and frequency distributions of elastic modulus and hardness of the different zones were obtained. The elastic moduli of main constituent phases of the claystone are then estimated from the nano-indentation tests. These values were further used for the determination of the macroscopic elastic modulus of the claystone using two different homogenization schemes: the dilute scheme and Mori–Tanaka scheme. The predicted values by the homogenization schemes are compared with experimental data obtained from conventional uniaxial compression tests.  相似文献   
93.
With accelerating urbanization in China, urban waterlogging has had a serious impact on urban sustainable development and citizen welfare. Simple urban rainstorm intensity formulas with a monotonous frequency distribution type cannot meet the practical needs of urban drainage planning and design. This study focuses on the development of urban rainstorm intensity formulas based on spatial diversity in China. Using the annual maximum sampling method, rainstorm data of 607 cities throughout China were collected into a database, with a total of 24,933 rainfall samples (annual observations) under various specified precipitation durations. The database was used to verify that integrating the Pearson III and Gumbel distributions would constitute an optimal theoretical distribution type, owing to its small error and increased fitting precision. Modification and coordination of four important parameters in the rainstorm intensity formula were done using a digital elevation model, which improved the accuracy of the formula. In addition, precipitation distributions in China were treated from the perspective of topographic features to validate the calculations from up-to-date formulas. Accuracy assessment was accomplished using a national code (GB-50014-2006), GIS-based isograms, and authoritative results from the Hydrological Bureau of the Ministry of Water Resources. This work provides a comprehensive foundation for the establishment of an up-to-date rainstorm intensity formula for China, which can be used widely in different cities.  相似文献   
94.
西藏冈底斯带昂仁县措迈乡差绒—丁欧复式花岗岩岩石类型为石英闪长岩、黑云二长花岗岩和二长花岗岩,各侵入体之间为突变接触关系,闪长岩U- Pb同位素年龄为155.4±2.7Ma;黑云二长花岗岩U- Pb同位素年龄为152.0±13Ma、153.96±0.92Ma,时代均为晚侏罗世。岩石地球化学显示三者均为高钾钙碱性系列岩石,石英闪长岩为弱铝质―准铝质;黑云二长花岗岩和二长花岗岩则为准铝质—过铝质。黑云二长花岗岩和二长花岗岩相比石英闪长岩表现为富硅、富碱、贫Ca、Ti、Mg,轻稀土元素更富集,轻稀土分馏程度更高,分异更加明显的特点,微量元素二长花岗岩Ba、Sr、P、Ti亏损最为明显,黑云二长花岗岩的Rb、Th、K富集最为明显,石英闪长岩相比黑云二长花岗岩和二长花岗岩的Rb/Sr(0.18~0.46)、Rb/Ba值(0.13~0.26)最低,指示其分异演化程度较低。差绒—丁欧花岗岩应是同时代不同期次侵入的复式岩体,早期为I型的石英闪长岩和黑云二长花岗岩,晚期为S型二长花岗岩,该复式岩体并非产出于单一的俯冲环境,二长花岗岩可能为弧陆碰撞时的产物。  相似文献   
95.
我国干热岩资源分布及勘探:进展与启示   总被引:3,自引:0,他引:3  
干热岩是地热资源的重要赋存形式之一,是未来地热开发的主攻方向.我国干热岩勘查工作近年来进展迅速,先后在不同地区发现了优质的干热岩资源,取得了我国干热岩资源勘查突破,但同时也存在不少勘查失败的案例.本文在分析高放射性产热型、沉积盆地型、近代火山型和强烈构造活动带型等四种类型干热岩成因模式的基础上,结合我国的地质构造背景、地热地质条件,对未来我国干热岩资源重点勘查方向及靶区进行了论述,并重点针对目前不同类型区干热岩资源勘探工程进行了梳理,简要分析了不同勘探区的选址依据、勘探过程、地温场分布及特征、前景预测等,并初步进行了经验总结,希望对我国未来干热岩资源勘查及开发工作起到借鉴作用.  相似文献   
96.
2018年全球重大天气气候事件及其成因   总被引:5,自引:3,他引:2  
孙劭  李多  王遵娅  王国复  柯宗建 《气象》2019,45(4):533-542
2018年全球主要温室气体浓度继续攀升,地表温度相比工业化前水平偏高0.99℃,为有观测记录以来的历史第四高值。全球冰川总量连续31年减少,南北极海冰范围全年处于历史低位。全球海洋表面温度较常年显著偏高,海平面继续加速上升,海洋热含量创历史新高,海洋酸化的影响日益加剧。年内,世界各地发生了许多重大天气气候事件,包括北半球异常活跃的热带气旋季、欧洲夏季持续性高温干燥天气、印度西南部的特大洪灾、澳洲东部严重旱情、欧美多地的低温暴雪以及全球多地的森林大火和强对流天气,造成了严重的人口伤亡和社会经济损失。本文系统性总结了2018年全球重大天气气候事件及其影响,并重点分析了印度近百年来最严重洪灾和美国东海岸爆发性低温雨雪冰冻两个典型气候事件的形成原因。分析表明,夏季南亚季风强度偏强、控制时间偏长,8月在南亚季风槽西部位置偏北、索马里越赤道急流偏强的共同作用下,南印度洋及阿拉伯海上空的水汽大量向印度地区输送,持续性的强降水天气引发了该地区近百年以来最严重的洪灾;1月上旬,在耦合的急流结构、强烈的海洋温度梯度以及气旋外围气温偏高的共同作用下,冬季风暴格雷森在短时间内爆发性加强,造成美国东海岸出现气温骤降、强风暴雪等剧烈天气现象。  相似文献   
97.
Combined effects of matrix plastic compressibility and void shape are investigated for ductile porous materials. To this end, a spheroidal volume containing a confocal spheroidal (prolate or oblate) void subjected to uniform strain rate boundary conditions has been first studied. A Green type matrix is chosen as a prototype for investigating effects of plastic compressibility. This is carried out by using a kinematics limit analysis theory from which a closed‐form expression of the macroscopic criterion is established for the considered class of materials. These results are then extended to ductile porous materials made up of a green matrix containing randomly oriented spheroidal voids. In the framework of a two‐step homogenization procedure, the obtained results are implemented to describe the macroscopic behavior of double porous materials involving spherical voids at the microscale and randomly oriented and distributed spheroidal voids at the mesoscale. For validation purpose, the new derived criteria are assessed and validated by comparing their predictions to available upper bounds and numerical data from literature. Copyright © 2017 John Wiley & Sons, Ltd.  相似文献   
98.
99.
Influence of core property on multi-electron process in the collisions of q=6-9 and 11 isocharged sequence ions with Ne is investigated in the keV/u region. The cross-section ratios of double-, triple-, quadruple- and total multi-electron processes to the single electron capture process as well as the partial ratios of different reaction channels to the relevant multi-electron process are measured by using position-sensitive and time-of-flight techniques. The experimental data are compared with the theoretical predictions including the extended classical over-barrier model, the molecular Columbic barrier model and the semi-empirical scaling law. Results show a core effect on multi-electron process of isocharge ions colliding with Neon, which is consistent with the results of Helium we obtained previously.  相似文献   
100.
This paper studies the average fidelity of teleportation and thermal entanglement for a two-qubit Heisenberg XYZ chain in the presence of both an inhomogeneous magnetic field and a Dzyaloshinski--Moriya interaction. It shows that for a fixed Dz, the increase of bz will broaden the critical temperature at the cost of decreasing the thermal entanglement. And it can modulate the inhomogeneous magnetic field and the Dzyaloshinski--Moriya interaction for the average fidelity of teleportation to be optimal.  相似文献   
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