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1.
Tony Waltham 《Geology Today》2020,36(6):217-225
The Panama Canal ranks high among the world's greatest feats of civil engineering. The sheer scales of its ground excavations, its concrete structures and its economic significance are truly spectacular. It is also remarkable for the geology of the massive landslides that developed within its Culebra Cut.  相似文献   
2.
Post‐infrared (pIR) stimulated luminescence dating of sedimentary feldspar largely avoids the effects of anomalous fading that affect conventional infrared stimulated luminescence (IRSL) dating. However, optical resetting of pIR signals is more difficult than resetting the conventional IRSL signal, which may undermine the crucial assumption that pIR signals were effectively bleached upon deposition and burial of sediment grains. In this study, we quantify the bleaching properties of several pIR signals on various samples using laboratory‐simulated bleaching in full sunlight and water‐attenuated sunlight. Our data show that bleaching is most efficient under full spectrum conditions for all pIR signals and that pIR signals measured at elevated temperature are increasingly harder to bleach than IR and pIR signals measured at low temperature (e.g. IR at 50°C). All bleaching curves exhibit a very slow and steady decrease, indicating that a fixed un‐bleachable residual level cannot be reached within the 11 days of solar simulator exposure undertaken here. We show that the magnitude of a laboratory‐determined residual dose depends on the adopted bleaching protocol and cannot be used as a proxy for the dose that remains in the sample at the time of burial (remnant dose). Our data emphasize the importance of finding a balance between sufficient signal stability and a minimized contribution of a remnant dose when using pIR procedures for feldspar luminescence dating.  相似文献   
3.
Geography seems to be in good hands in New Zealand's schools and universities, but we cannot afford to be complacent. What are the key priorities for further strengthening geography in New Zealand in the years ahead? The New Zealand Geographical Society has to play a crucial role by helping to bring together geographers in the different sectors, as well as in promoting New Zealand geography internationally, and raising its profile in the media. Most of all, we need to demonstrate the vibrancy, significance and relevance of geography to the wider community.  相似文献   
4.
Internal erosion (IE) affects the stability of natural and reinforced materials by causing instability within their granular structure. The dislodgement and transport of eroded particles affect both the particulate concentration of eroding fluid and the pore network of eroded material. In this study, we examined these modifications using a transport model with a finite element code. First, IE tests on chemically reinforced sand columns were performed to obtain information about eroded material loss of mass, particulate concentration of effluent, porosity and permeability modifications, and existing IE stages. Second, based on experimental results, a mathematical one‐dimensional model has been formulated to monitor the evolution and spatial distribution of erodible solids, fluidized particles, porosity, permeability, and seepage stresses. The model consists of a set of coupled nonlinear differential equations solved in sequence. It provides valuable information about the extent and the dynamics of structural changes, which can be used to estimate an IE time for the hydraulic work to reach failure. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   
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6.
Tony WALTHAM 《中国岩溶》2009,28(4):355-369
“峰丛”和“峰林”是在中文文献中使用的两种主要的喀斯特地貌术语。而在其他国家,这两种地貌通常被定义为“锥状喀斯特”和“塔状喀斯特”,但峰丛、峰林与锥状喀斯特、塔状喀斯特并不完全相同。中国喀斯特分布广泛,本文把西方和中国的喀斯特专业术语连接起来,能让西方地貌学家更好地了解中国的喀斯特。本文是朱学稳教授近期发表于《中国岩溶》第28卷第2期上的 “我国峰林喀斯特的苦干问题讨论”论文的英文附加篇。 峰丛喀斯特地貌遍及贵州省及其临近省份大部分地区,其锥体石山较爪哇、牙买加和菲律宾群岛的更高更陡。尽管后者为西方所熟知,但贵州的峰丛可以说是峰丛和锥状喀斯特的典型代表。不过广西的峰林仅在中国以外东南亚的小部分地区可以看见。许多被西方认为是塔状喀斯特的地貌并非真正的峰林。问题产生的原因在于西方学者通过山体形状来区分锥状喀斯特和塔状喀斯特,而中国的学者是根据石峰之间是否存在喀斯特平原来区分峰林和峰丛。 峰丛喀斯特是一种发育成熟的石灰岩地貌,具有深厚的包气带、完整的地下排泄系统,以及发育时间长并免遭更新代冰川破坏的山体形貌。峰林喀斯特是一种极端地貌,仅在横向夷平持续时间比较长的特定环境中形成。峰林形成条件是:(1)石灰岩质纯;(2) 石灰岩层厚;(3)喀斯特平原上有冲积层发育;(4)地下水位变化幅度不大;(5)冲积平原有外源沉积物的流入补充;(6)缓慢构造抬升与喀斯特平原表面剥蚀相适应;(7)具有使石灰岩快速溶蚀的炎热湿润气候;(8)周围喀斯特平原下降时,地面蚀低和石灰岩山体边坡后退平衡。如果构造条件合适的话,峰丛可以演化为峰林。但如果有其他因素起作用,峰林和峰丛似乎可以并行发育。二者的起源仍然备受争论,并且峰林的起源恐怕是多种的。建议国际学术文献中应更加广泛地应用“峰丛”和“峰林”术语,“锥状喀斯特”和“塔状喀斯特”则主要用于对形态方面的描述。   相似文献   
7.
Abstract: Teaching secondary school geography students about different perspectives on the way knowledge is produced can be challenging. The forms of critical thinking that are prompted by interrogating the ways in which knowledge are produced equips students with intellectual tools for independent learning; an attribute which is a key feature of successful learners. This article provides an overview of the ways in which gender/feminist perspectives have been generated over time; how the teaching of these perspectives has been included in one New Zealand school, as well as suggesting useful resources.  相似文献   
8.
Hurricanes can produce extreme nearshore waves and surge, but permanent gauging stations are often much sparser than is desired. This paper describes the rationale behind and outline for rapidly installed temporary coastal gauges, and presents results during Hurricane Gustav (2008). Within 48 h prior to landfall, twenty self-recording pressure gauges were deployed in depths of 1.4–23 m over more than 700 km of coastline, using helicopters to cover the large distances. Results showed a complex picture that was strongly dependent on location. East of the Mississippi Delta, open coast waves were large, and surge reached 3.8 m NAVD88 in marshes. West of the delta but near landfall, waves and surge were generally smaller as the river levees blocked flow from East to West. West of landfall, both waves and surge were very small and the most prominent feature was a water level drawdown that reached 1.5 m. Wave spectra varied strongly depending both on location and time from landfall.  相似文献   
9.
The geological sciences are challenged to manage and interpret increasing volumes of data as observations and simulations increase in size and complexity. For example, simulations of earthquake-related processes typically generate complex, time-varying data sets in two or more dimensions. To facilitate interpretation and analysis of these data sets, evaluate the underlying models, and to drive future calculations, we have developed methods of interactive visualization with a special focus on using immersive virtual reality (VR) environments to interact with models of Earth’s surface and interior. Virtual mapping tools allow virtual “field studies” in inaccessible regions. Interactive tools allow us to manipulate shapes in order to construct models of geological features for geodynamic models, while feature extraction tools support quantitative measurement of structures that emerge from numerical simulation or field observations, thereby enabling us to improve our interpretation of the dynamical processes that drive earthquakes. VR has traditionally been used primarily as a presentation tool, albeit with active navigation through data. Reaping the full intellectual benefits of immersive VR as a tool for scientific analysis requires building on the method’s strengths, that is, using both 3D perception and interaction with observed or simulated data. This approach also takes advantage of the specialized skills of geological scientists who are trained to interpret, the often limited, geological and geophysical data available from field observations.  相似文献   
10.
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