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981.
合成孔径雷达( SAR)及其在地质和地震研究中的应用   总被引:11,自引:1,他引:10  
陈立泽  申旭辉  田勤俭 《地震》2003,23(1):29-35
在遥感技术广泛应用的今天, 合成孔径雷达( SAR)因其具有全天时、全天候成像能力及对地物有一定穿透力等独特的特点, 已成为地学研究的一个重要手段。概述了合成孔径雷达技术的发展状况, 对合成孔径雷达成像机理及特征做了简要介绍, 同时对新兴起的合成孔径雷达干涉测量( IN SAR)技术也做了简单描述, 并就SAR在地质和地震研究中的应用进行了举例说明, 充分肯定了合成孔径雷达技术在地质和地震研究中的重要作用。  相似文献   
982.
In this treatise the well‐known 2‐body problem with a rotating central body is systematically reinvestigated on the basis of the Projective Unified Field Theory (PUFT) under the following aspects (including the special case of the Newton mechanics): First, equation of motion with abstract additional terms being appropriate for the interpretation of the various effects under discussion: tidal friction effect as well as non‐tidal effects (e.g. rebound effect as temporal variation of the moment of inertia of the rotating body, general‐relativistic Lense‐Thirring effect, new scalaric effects of cosmological origin, being an outcome of the scalarity phenomenon of matter (PUFT). Second, numerical evaluation of the theory. (© 2005 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)  相似文献   
983.
The influence of the basic rotation on anisotropic and inhomogeneous turbulence is discussed in the context of differential rotation theory. An improved representation for the original turbulence leads to a Λ‐effect which complies with the results of 3D numerical simulations. The resulting rotation law and meridional flow agree well with both the surface observations (∂Ω/∂r < 0 and meridional flow towards the poles) and with the findings of helioseismology. The computed equatorward flow at the bottom of convection zone has an amplitude of about 10 m/s and may be significant for the solar dynamo. The depth of the meridional flow penetration into the radiative zone is proportional to ν0.5core, where νcore is the viscosity beneath the convection zone. The penetration is very small if the tachocline is laminar. (© 2005 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)  相似文献   
984.
继承和发展李四光地震预报思想   总被引:2,自引:2,他引:0  
本文对李四光先生的地震预报思想做了较全面的阐述,强调了李四光提出走自己的路,开展地应力观测研究与活动构造体系调查的重要意义.结合40年来地震预报有关工作的实践经验,阐明在新的形势下应该对李四光地震预报思想和方法做出新的补充.在继续开展地震预报实践和总结的同时,要加强地震发生机制的研究,并对如何开展这项研究工作提出了一些具体建议.   相似文献   
985.
986.
Rice-wheat (R-W) rotation systems are ubiquitous in South and East Asia, and play an important role in modulating the carbon cycle and climate. Long-term, continuous flux measurements help in better understanding the seasonal and interannual variation of the carbon budget over R-W rotation systems. In this study, measurements of CO2 fluxes and meteorological variables over an R-W rotation system on the North China Plain from 2007 to 2010 were analyzed. To analyze the abiotic factors regulating Net Ecosystem Exchange (NEE), NEE was partitioned into gross primary production (GPP) and ecosystem respiration. Nighttime NEE or ecosystem respiration was controlled primarily by soil temperature, while daytime NEE was mainly determined by photosythetically active radiation (PAR). The responses of nighttime NEE to soil temperature and daytime NEE to light were closely associated with crop development and photosynthetic activity, respectively. Moreover, the interannual variation in GPP and NEE mainly depended on precipitation and PAR. Overall, NEE was negative on the annual scale and the rotation system behaved as a carbon sink of 982 g C m-2 per year over the three years. The winter wheat field took up more CO2 than the rice paddy during the longer growing season, while the daily NEE for wheat and rice were -2.35 and -3.96 g C m-2, respectively. After the grain harvest was subtracted from the NEE, the winter wheat field became a moderately strong carbon sink of 251-334 g C m-2 per season, whereas the rice paddy switched to a weak carbon sink of 107-132 per season.  相似文献   
987.
Abstract

Key physical variables for the Northwest Atlantic (NWA) are examined in the “historical” and two future Representative Concentration Pathway (RCP) simulations of six Earth System Models (ESMs) available through Phase 5 of the Climate Model Intercomparison Project (CMIP5). The variables are air temperature, sea-ice concentration, surface and subsurface ocean temperature and salinity, and ocean mixed-layer depth. Comparison of the historical simulations with observations indicates that the models provide a good qualitative and approximate quantitative representation of many of the large-scale climatological features in the NWA (e.g., annual cycles and spatial patterns). However, the models represent the detailed structure of some important NWA ocean and ice features poorly, such that caution is needed in the use of their projected future changes. Monthly “climate change” fields between the bidecades 1986–2005 and 2046–2065 are described, using ensemble statistics of the changes across the six ESMs. The results point to warmer air temperatures everywhere, warmer surface ocean temperatures in most areas, reduced sea-ice extent and, in most areas, reduced surface salinities and mixed-layer depths. However, the magnitudes of the inter-model differences in the projected changes are comparable to those of the ensemble-mean changes in many cases, such that robust quantitative projections are generally not possible for the NWA.  相似文献   
988.
西南三江地区镇沅金矿载金黄铁矿稀土与微量元素特征   总被引:5,自引:1,他引:4  
赵岩  黄钰涵  梁坤  张岐能 《岩石学报》2015,31(11):3297-3308
镇沅金矿(也称老王寨金矿)是西南三江地区哀牢山金矿带超大型金矿床之一。前人研究表明黄铁矿的稀土与微量元素含量可以反映成矿流体与成矿物质来源的特征,本次采用电感耦合等离子质谱仪(ICP-MS)技术对镇沅金矿主要载金矿物黄铁矿进行研究。通过野外实地调查及室内显微镜下观察,将镇沅金矿载金黄铁矿分为四个阶段:Ⅰ阶段脉状黄铁矿;Ⅱ阶段团块状黄铁矿;Ⅲ阶段与辉锑矿等硫化物共生浸染状黄铁矿;Ⅳ阶段破碎状黄铁矿。矿区内多种地层均有矿化现象,矿石类型包括变砂岩型、炭质板岩型、蚀变大理岩型、蛇绿岩套型、蚀变花岗岩型、煌斑岩型等。ICP-MS测定结果显示Ⅰ阶段黄铁矿富集高场强元素Th、U、Ta、Nb、Zr、Hf,亏损大离子亲石元素;其后三阶段黄铁矿该特征则不明显。黄铁矿总体稀土元素含量较低,∑REE含量为4.72×10-6~48.96×10-6,平均为24.93×10-6。稀土配分曲线显示黄铁矿总体呈较平缓的右倾型轻稀土元素富集配分模式;存在负δEu异常,基本无δCe异常。各阶段黄铁矿稀土配分模式存在微弱差异,Ⅰ阶段黄铁矿总体REE含量较高,部分具有LREE/HREE比值较低的特征,与超基性岩REE配分模式相近;Ⅱ阶段黄铁矿REE含量明显偏低,LREE/HREE比值较高;Ⅲ阶段黄铁矿∑REE含量较低,但较Ⅱ阶段要高;Ⅳ阶段黄铁矿∑REE含量低,有与Ⅱ阶段黄铁矿REE相近特征。黄铁矿中Au与As伴生现象明显。Co/Ni值反映黄铁矿具有沉积与热液黄铁矿成因特征,另外黄铁矿的稀土微量元素特征还反映出成矿流体为含F-的还原性流体。研究认为镇沅金矿至少存在两期金成矿作用,早期载金黄铁矿呈脉状产出,并可能与印支期古特提斯洋闭合中含超基性岩的增生楔形成有关;晚期载金黄铁矿与辉锑矿、黄铜矿等硫化物共生,与新生代区域范围内红河剪切带活动及扬子板块的俯冲导致的广泛变质作用有关。  相似文献   
989.
Observing and monitoring the different components of the global water cycle and their dynamics are essential steps to understand the climate of the Earth, forecast the weather, predict natural disasters like floods and droughts, and improve water resources management. Earth observation technology is a unique tool to provide a global understanding of many of the essential variables governing the water cycle and monitor their evolution from global to basin scales. In the coming years, an increasing number of Earth observation missions will provide an unprecedented capacity to quantify several of these variables on a routine basis. However, this growing observational capacity is also increasing the need for dedicated research efforts aimed at exploring the potential offered by the synergies among different and complementary EO data records. In this context, the European Space Agency (ESA) launched the Water Cycle Multi-mission Observation Strategy (WACMOS) in 2009 aiming at enhancing, developing and validating a novel set of multi-mission based methods and algorithms to retrieve a number of key variables relevant to the water cycle. In particular the project addressed four major scientific challenges associated to a number of key variables governing the water cycle: evapotranspiration, soil moisture, cloud properties related to surface solar irradiance and precipitation, and water vapour. This paper provides an overview of the scientific results and findings with the ultimate goal of demonstrating the potential of strategies based on utilizing multi-mission observations in maximizing the synergistic use of the different types of information provided by the currently available observation systems and establish the basis for further work.  相似文献   
990.
基于影像交叉学习的CBERS CCD波段模拟   总被引:1,自引:0,他引:1  
与TM/ETM+相比,CBERS CCD缺少2个红外波段(波段5和波段7),这便导致了许多针对TM/ETM+数据的图像处理方法难以直接应用于CBERS CCD图像.为此,采用基于影像交叉学习的波段模拟方法,即以ETM+数据作为先验知识,通过支持向量回归( Support Vector Regression,SVR),拟...  相似文献   
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