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991.
魏益焕 《海洋学报(英文版)》2010,29(9)
We calculate the local energy and the energy density of the Reisner--Norstrõm--anti-de-Sitter black hole, study the first law of thermodynamics and show the Smarr formula for the Born--Infeld--anti-de-Sitter black hole. Applying the first law of thermodynamics to the black hole region, we analyse the three energy exchange processes between the black hole region and the outer and the inner regions. 相似文献
992.
A generalized additive model (GAM) was used to model the spatial distribution of snow depth in the central Spanish Pyrenees. Statistically significant non‐linear relationships were found between distinct location and topographical variables and the average depth of the April snowpack at 76 snow poles from 1985 to 2000. The joint effect of the predictor variables explained more than 73% of the variance of the dependent variable. The performance of the model was assessed by applying a number of quantitative approaches to the residuals from a cross‐validation test. The relatively low estimated errors and the possibility of understanding the processes that control snow accumulation, through the response curves of each independent variable, indicate that GAMs may be a useful tool for interpolating local snow depth or other climate parameters. Copyright © 2005 John Wiley & Sons, Ltd. 相似文献
993.
994.
The annual peak flow series of Polish rivers are mixtures of summer and winter flows. As Part II of a sequence of two papers, practical aspects of applicability of seasonal approach to flood frequency analysis (FFA) of Polish rivers are discussed. Taking A Two‐Component Extreme Value (TCEV1) model as an example it was shown in the first part that regardless of estimation method, the seasonal approach can give profit in terms of upper quantile estimation accuracy that rises with the return period of the quantile and is the greatest for no seasonal variation. In this part, an assessment of annual maxima (AM) versus seasonal maxima (SM) approach to FFA was carried out with respect to seasonal and annual peak flow series of 38 Polish gauging stations. First, the assumption of mutual independence of the seasonal maxima has been tested. The smoothness of SM and AM empirical probability distribution functions was analysed and compared. The TCEV1 model with seasonally estimated parameters was found to be not appropriate for most Polish data as it considerably underrates the skewness of AM distributions and upper quantile values as well. Consequently, the discrepancies between the SM and AM estimates of TCEV1 are observed. Taking SM and TCEV1 distribution, the dominating season in AM series was confronted with predominant season for extreme floods. The key argument for presumptive superiority of SM approach that SM samples are more statistically homogeneous than AM samples has not been confirmed by the data. An analysis of fitness to SM and AM of Polish datasets made for seven distributions pointed to Pearson (3) distribution as the best for AM and Summer Maxima, whereas it was impossible to select a single best model for winter samples. In the multi‐model approach to FFA, the tree functions, i.e., Pe(3), CD3 and LN3, should be involved for both SM and AM. As the case study, Warsaw gauge on the Vistula River was selected. While most of AM elements are here from winter season, the prevailing majority of extreme annual floods are the summer maxima. The upper quantile estimates got by means of classical annual and two‐season methods happen to be fairly close; what's more they are nearly equal to the quantiles calculated just for the season of dominating extreme floods. Copyright © 2011 John Wiley & Sons, Ltd. 相似文献
995.
Brian J. Harshburger Karen S. Humes Von P. Walden Troy R. Blandford Brandon C. Moore Raymond J. Dezzani 《水文研究》2010,24(10):1285-1295
As demand for water continues to escalate in the western Unites States, so does the need for accurate monitoring of the snowpack in mountainous areas. In this study, we describe a simple methodology for generating gridded‐estimates of snow water equivalency (SWE) using both surface observations of SWE and remotely sensed estimates of snow‐covered area (SCA). Multiple regression was used to quantify the relationship between physiographic variables (elevation, slope, aspect, clear‐sky solar radiation, etc.) and SWE as measured at a number of sites in a mountainous basin in south‐central Idaho (Big Wood River Basin). The elevation of the snowline, obtained from the SCA estimates, was used to constrain the predicted SWE values. The results from the analysis are encouraging and compare well to those found in previous studies, which often utilized more sophisticated spatial interpolation techniques. Cross‐validation results indicate that the spatial interpolation method produces accurate SWE estimates [mean R2 = 0·82, mean mean absolute error (MAE) = 4·34 cm, mean root mean squared error (RMSE) = 5·29 cm]. The basin examined in this study is typical of many mid‐elevation mountainous basins throughout the western United States, in terms of the distribution of topographic variables, as well as the number and characteristics of sites at which the necessary ground data are available. Thus, there is high potential for this methodology to be successfully applied to other mountainous basins. Copyright © 2010 John Wiley & Sons, Ltd. 相似文献
996.
聂品 《中国海洋湖沼学报》2000,(1)
INTRODUCTIONIntestinalparasitecommunitiesinfisharefoundnormallytobepoorintermsofspeciescompo sitionswhencomparedwiththoseinbirdsandsomeotherhighervertebrates (Kennedyetal.,1 986;Eschetal.,1 990 ) .However,ectoparasitecompositionsongillsoffishareconsideredasspec… 相似文献
997.
Regularities exist in fluid flows and can be represented by a set of constants. These constants are functions of the parameter of a probability distribution that exhibits resilience and stability under various flow conditions. Together, these regularities form a network and interact with each other, such that if one is known then the others can be determined from it. The regularities and their network explain the various fluid‐flow phenomena and can be used in analysis of rivers and streams. For example, they can be used as the basis to develop simple and efficient methods of discharge measurements as presented herein, which only require velocity sampling at a single point on a water surface or a few points on a single vertical. Because of their simplicity and the short time requirement, these methods can be easily automated for collecting discharge data in unsteady, high flows that are badly needed for real‐time flow forecasting and design of flood control structures, and for advancing the fundamental, scientific knowledge in hydrology. Copyright © 2005 John Wiley & Sons, Ltd. 相似文献
998.
大厂矿田锡石硫化物矿床中产出的富铟铁闪锌矿为世界所罕见,文章探讨该类型矿床铟、镉的分布规律,分析计算该金属保有地质储量及年产量,简介当前回收情况及展望综合回收前景. 相似文献
999.
WETLANDS IN CHINA: FEATURE, VALUE AND PROTECTION 总被引:2,自引:1,他引:1
The estimated total area of wetland in China is more than 25.9 million hectares including about 11.9 million hectares of marshes
and bogs, 9.1 million hectares of lake and about 2.2 million hectares of coastal salt marshes and mudflats. The area of wetland
is equivalent to 2.7% of the land surface. China also has 2.7 million hectares of shallow sea water (less 5m in depth at low
tide). Marshes and bogs are equivalent 1.3% of the land surface. Only three provinces (regions)—Qinghai, Xizang (Tibet) and
Heilongjiang — have a larger total area of marsh and bog. According to the structure, type and development of wetland in different
river basins, wetland can be classified nine main regions. The experiments indicate that the coefficient of the marsh to regulate
flood is similar to that of lakes. Wetlands occupy 17.8% of the Sanjiang Plain area, the annual carbon contribution is 0.78
× 104t. Carbon released from marsh soil return into atmosphere is 3.95 × 106t/a. At present there is a sharp contradiction between population growth and natural resources shortage, causing wetland to
be exerted with huge pressures and serious threats.
Foundation item: Under the auspices of the Key B Item of the Chinese Academy of Sciences (KZ951-B1-201-02).
Biography: LU Xian-guo (1957 —), male, a native of Changchun City, Jilin Provice, professor. His research interests include
wetland process and environmental effect. 相似文献
1000.
论乡村聚落优化与乡村相对贫困治理 总被引:2,自引:1,他引:2
2020年后,中国反贫困将转入相对贫困治理的新阶段。乡村聚落居住、就业、教育、医疗、环卫、文化、防灾减灾等功能的发展不充分和多维剥夺,是乡村相对贫困的重要表现和重要原因,乡村相对贫困治理必须从乡村聚落的整体优化出发。论文在梳理相对贫困概念内涵的基础上,着眼于乡村聚落与相对贫困治理的内在关联,分析乡村聚落与乡村相对贫困发生、乡村聚落优化与相对贫困治理长效机制建立之间的关系,提出基于相对贫困治理的乡村聚落优化策略,以期为2020年后的乡村相对贫困治理和乡村振兴提供理论依据。研究认为:① 乡村相对贫困的形成与聚落要素、功能密切相关,并因区位、布局、规模、形态的差异而有所不同;② 乡村聚落是缓解乡村相对贫困长效机制建立的空间基础,乡村相对贫困治理长效机制的建立要充分发挥乡村聚落的要素支撑与空间载体功能;③ 基于相对贫困治理的乡村聚落优化策略包括振兴村落产业、优化村落空间组织、强化村落文化认同、建立绿色生态村落、促进村落多功能协同转型、坚持分类施策等6个方面。 相似文献