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991.
Huang  Da  Ma  Hao  Huang  Runqiu 《Landslides》2022,19(4):809-827

Toppling is the foremost failure pattern of anaclinal rock slopes, and deep-seated toppling deformations (DSTDs) are common on high anaclinal slopes on the sides of gorges in western China. The DSTDs can develop to depths of more than 200 m, and may show distinct signs of zonal failure. Many DSTDs undergo transformation to large landslides involving rock volumes of more than 106 m3. However, the conditions for the formation and the basic evolving processes of DSTDs remain unclear. This study seeks to develop an inventory to classify the distribution, and the conditioning factors which govern the formation and deformation modes of DSTDs in western China and to analyze the effect of the geological and geomorphological variables on the toppling intensities. To this end, forty-nine DSTDs were analyzed. The results indicate that DSTDs in western China are commonly distributed along large deeply incised rivers in the southeastern margin of the Qinghai-Tibet plateau. The steep-dip anaclinal metamorphic soft or soft-hard-interbedded strata with near parallel strikes in the river channel, V-shaped deeply incised river channels, and convex slopes are favorable conditions for the formation of DSTDs in these settings. The dip angle, the gradient, and the height of most slopes which develop DSTDs are 60–90°, 30–50°, and 200–800 m, respectively. There is a highly positive relationship between the depth of toppling and the height of the slope. The toppled rock masses can be classed as extremely intense, intense, moderate, and weak toppling zones characterized by complete block detachment, tensile-shear fracture, tensile fracture, and reverse slip along foliations, respectively. Each zone corresponds to a specific range of the dip angle of the toppled strata, the aperture of the tensile cracks, the P-wave velocity, the state of rock weathering, and the degree of unloading. The extremely intense and the intense toppling zones tend to evolve into sliding failures. Overall, 94% of the DSTDs were derived from flexural toppling and 33% have developed into large landslides.

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992.
Weng  Meng-Chia  Lin  Cheng-Han  Shiu  Wen-Jie  Chao  Wei-An  Chiu  Chia-Chi  Lee  Ching-Fang  Huang  Wei-Kai  Yang  Che-Ming 《Landslides》2022,19(3):687-701

Mega-earthquakes and extreme climate events accompanied by intrinsic fragile geology lead to numerous landslides along mountain highways in Taiwan, causing enormous life and economic losses. In this study, a system for rapid slope disaster information integration and assessment is proposed with the aim of providing information on landslide occurrence, failure mechanisms, and subsequent landslide-affected areas to the highway authority rapidly. The functionality of the proposed system is deployed into three units: (1) geohazard rapid report (GeoPORT I), (2) multidisciplinary geological survey report (GeoPORT II), and (3) site-specific landslide simulation report (GeoPORT III). After landslide occurrence, the seismology-based monitoring network rapidly provides the initial slope disaster information, including preliminary location, event magnitude, earthquake activity, and source dynamics, within an hour. Within 3 days of the landslide, a multidisciplinary geological survey is conducted to collect high-precision topographical, geological, and remote-sensing data to determine the possible failure mechanism. After integrating the aforementioned information, a full-scale three-dimensional landslide simulation based on the discrete element method is performed within 10 days to reveal the failure process and to identify the areas potentially affected by subsequent disasters through scenario modeling. Overall, the proposed system can promptly provide comprehensive and objective information to relevant authorities after the event occurrence for hazard assessment. The proposed system was validated using a landslide event in the Central Cross-Island Highway of Taiwan.

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993.
Zosterophyllum(工蕨属)是早期陆生植物的代表性类群之一,全球广泛分布。Z.australianum(澳大利亚工蕨)产自华南和澳大利亚,是东北冈瓦纳古植物地理区系的典型分子。文中描述了产自贵州都匀包阳剖面蟒山群中的Z.australianum新材料。该标本的孢子囊具短柄,呈椭圆形或扇形,宽2.6~4.1 mm,高可达3.9 mm,加厚带宽约0.6 mm,紧密螺旋排列形成孢子囊穗,与云南文山早泥盆世坡松冲植物群中的Z. australiaunum极为相似。依据目前对Z. australianum时代延限的认识,并结合蟒山群其他植物属种的发现(如Adoketophyton subverticillatum),推断该群下段的时代为早泥盆世布拉格期。Z. australianum在蟒山群中的发现,扩展了该植物的地理分布范围,反映出蟒山群中的植物组合与坡松冲植物群存在一定联系。  相似文献   
994.
海底冲沟作为比海底峡谷、水道地貌尺度小1个数量级的微地貌,与海底峡谷、水道共同构成了完整的深水沉积输运系统。由于调查数据分辨率的限制,在前人研究中,海底冲沟的重要作用一直被忽视。海底冲沟是深水沉积输运系统的“毛细血管”,数量巨大,主要分布在大陆坡、岛礁边缘、河口冲积扇前缘、海底峡谷和水道内部,与深水工程安全、岛礁安全、深水沉积体系和深水油气储层预测息息相关。从识别特征、沉积环境、影响因素和形成机理等方面,系统介绍了海底冲沟的研究进展;从分布区域、坡度、形态和沉积特征等方面,探讨了海底冲沟与海底峡谷和水道之间的区别与联系,并给出了区分三者的方法。通过归纳不同沉积环境的海底冲沟特征,将其定义为:在坡度大于2°的地形中,重力流成因、直线型的微地貌尺度沟槽,具有宽度小、深度浅、长度短和形态笔直(弯曲度接近于1)的特点,其中,片状浊流成因的海底冲沟还具有相互平行和等间距分布的集群特征。  相似文献   
995.
亚太地区是全球重要的油气产区和最大的油气消费市场。亚太地区155个主要沉积盆地中,已有90多个盆地内发现了油气田或有油气发现,共发现油气田约6 900个。根据地理位置及构造特征等,亚太地区可进一步分为东亚分区、东南亚分区、澳新分区和南亚分区,约有131个主要的含油气系统。本文对亚太地区不同分区的油气成藏条件(包括烃源岩、储集层、盖层、含油气系统等)进行了总体分析与高度概括。在此基础上,以成藏组合为基本评价单元,不同勘探程度盆地采用与之相适应的评价方法,对本地区各盆地的油气资源潜力进行了评价。评价结果表明:亚太地区常规总油气可采资源量为673.7×108 t油当量,占全球的6.1%,非常规油气资源类型以重油、页岩油、油页岩、页岩气、煤层气为主,非常规油气技术总可采资源量390.4×108 t当量,占全球非常规油气技术总可采资源量的6.1%。根据待发现资源结果及盆地勘探程度,近海和深海勘探是将来的勘探热点:主要勘探领域为深海和成熟盆地新层系及岩性-地层圈闭等;海相三角洲体系是寻找天然气田的重要领域;东南亚弧后盆地群新生界湖相是页岩油的有利勘探领域;澳大利亚中部克拉通盆地群泥盆系-石炭系为页岩气的有利勘探领域。  相似文献   
996.

The devastating damage after the 1999 Chi-Chi and 1999 Izmit earthquakes has greatly motivated soil–reverse fault interaction studies. However, most centrifuge modeling studies have employed a single homogeneous soil layer during testing, which does not represent in situ conditions. Indeed, while geological conditions vary spatially, engineering soils are often underlain by soft rocks. Therefore, four centrifuge models were developed to evaluate the effect of soft rock layers on the ground surface and subsurface deformation. Sand–cement mixtures of varying thicknesses with a uniaxial compressive strength of 0.975 MPa, simulating extremely soft rock, were overlain by pluviated sandy soil. The model thickness was 100 mm, corresponding to 8 m in the prototype scale when spun at 80 g. Every model was subjected to a vertical offset of 50 mm/4 m (0.5 H; H: total sedimentary deposit thickness) along a reverse fault with a 60° dip. The results indicate that the presence of a soft rock stratum results in the creation of a horst profile at the ground surface. Additionally, the thinner the soil layer on top of the soft rock stratum is, the longer and higher the horst created at the ground surface. Consequently, the fault deformation zone lengthens proportionally with the increasing thickness ratio of the soft rock. Furthermore, the presence of soft rock as an intermediary stratum between bedrock and soil causes the deformation zone boundary on the hanging wall side to move in the direction of fault movement.

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997.
Yang  Siyuan  Huang  Duruo 《Acta Geotechnica》2022,17(12):5655-5674
Acta Geotechnica - Recent earthquake case histories in Japan and New Zealand revealed that soil sites can experience liquefaction multiple times under a sequence of earthquake shaking. Field...  相似文献   
998.
Zhang  Jin-Zhang  Zhang  Dong-Ming  Huang  Hong-Wei  Phoon  Kok Kwang  Tang  Chong  Li  Gang 《Acta Geotechnica》2022,17(4):1129-1145
Acta Geotechnica - The scale of fluctuation (SOF) is the critical parameter to describe the soil spatial variability, which significantly influences the embedded geostructures. Due to the limited...  相似文献   
999.
Kang  Xiaosen  Liao  Hongjian  Huang  Qiangbing  Dai  Qian 《Acta Geotechnica》2022,17(6):2213-2233
Acta Geotechnica - The critical state of anisotropically consolidated clay is not well captured by the classical anisotropic bounding surface plasticity model without considering the real...  相似文献   
1000.
Blockage in water-dominated flow pipelines due to hydrate reformation has been suggested as a potential safety issue during the hydrate production. In this work, flow velocity-dependent hydrate formation features are investigated in a fluid circulation system with a total length of 39 m. A 9-m section pipe is transparent consisted of two complete rectangular loops. By means of pressurization with gas-saturated water, the system can gradually reach the equilibrium conditions. The result shows that the hydrates are delayed to appear as floccules or thin films covering the methane bubbles. When the circulation velocity is below 750 rpm, hydrate is finally deposited as a “hydrate bed” at upmost of inner wall, narrowing the flow channel of the pipeline. Nevertheless, no plugging is observed during all the experimental runs. The five stages of hydrate deposition are proposed based on the experimental results. It is also revealed that a higher driving pressure is needed at a lower flow rate. The driving force of hydrate formation from gas and water obtained by melting hydrate is higher than that from fresh water with no previous hydrate history. The authors hope that this work will be beneficial for the flow assurance of the following oceanic field hydrate recovery trials.©2022 China Geology Editorial Office.  相似文献   
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