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1.
本文采用多源卫星遥感数据通过统计分析的方法研究了17年间(2000—2016年)南海夏季(6—9月)台风对该海域降水、淡水通量的贡献及其可能导致的环流异常。主要结论如下: 1) 台风是南海中北部降水的重要影响因子, 可导致日平均降水量增加12mm, 约占南海夏季日平均降水(25mm·d -1)的一半, 且西北太平洋台风和南海“土台风”产生的降水分布存在显著的区域和强度差异; 2) 夏季, 南海由淡水通量引起的盐致环流表现为以海南岛东南部海域为中心的弱气旋式, 其流量量级约为-0.15Sv, 约占同期风生环流流量(约为-1.5Sv)的10%; 3) 夏季, 台风带来的降水使得南海中北部的气旋式盐致环流增强, 且西北太平洋台风降水导致的淡水通量变化引起的盐致环流强度要强于南海“土台风”。 相似文献
2.
随着广电行业的飞速发展,以串行数字接口(SDI)基带信号为基础技术架构的传统电视信号已经很难满足未来技术发展和业务扩展的需求.得益于现代通信技术的迅速发展以及即将到来的万物互联的5G时代,广电行业也将采用IP化技术来构建新的网络系统.处在向IP化发展的过渡期,广电IP化目前还存在一些亟待解决的问题.为了解决广电系统网络中需要更高精度的同步信号来完成时间同步的问题,本文利用精确时间协议(PTP)时间同步技术在专用以太网中完成时间同步组网,搭建了测试环境并对测试数据进行了分析.测试结果表明,相较于传统的网络时间协议(NTP)时间同步技术,输出PTP信号的准确度能够达到亚微秒量级,完全满足广电行业IP化数字电视系统时间同步信号的高精度需求. 相似文献
3.
YANG Kai ZHANG Bing WANG Xuben HE Lanfang YANG Hongyu WANG Pengwan TANG Jialin DENG Jixin ZHANG Cong 《《地质学报》英文版》2020,94(5):1531-1546
The Lower Silurian Longmaxi Formation in the south of Sichuan is a key player in the exploration and development of shale gas in China. Due to a highly complex topographic area, electromagnetic methods (EM) become important exploration means in this area. Many studies have been conducted on the shale mineral composition and electrical properties of shale, however, the correlation between sedimentary environments and the electrical properties of shale remain poorly understood. The electrical properties and sedimentary environment of the organic-rich shale of the Longmaxi Formation have been studied by means of X-ray diffraction, organic geochemistry, scanning electron microscopy and complex resistivity measurements. The discovered high quartz content of the Longmaxi Formation shale results in low resistivity. Deep-water shelf biogenic quartz contributes lower resistivity more than that of shallow-water terrigenous quartz. The deep-water anoxic and organic sedimentary environment led to major enrichment of pyrite, leading to a high polarization effect in shale. We present the correlation between the lithofacies types and electrical properties of Longmaxi Formation. The mixed siliceous shale lithofacies is the most favorable among the three lithofacies, which is characterized by high total organic carbon (TOC) content, high brittleness mineral content, high polarization and low resistivity (“three high and one low”). This feature is an effective identification of shale gas reservoirs by electromagnetic prospecting. Our study can provide constraints on electrical parameters of rocks for electromagnetic “sweet spot” exploration of shale gas, and so this has important geological significance to shale gas exploration and development. 相似文献
4.
《寒旱区科学》2019,11(6)
In this study, in-situ soil moisture measurements are used to evaluate the accuracy of three AMSR-E soil moisture products from NASA(National Aeronautics and Space Administration), JAXA(Japanese Aerospace Exploration Agency) and VUA(Vrije University Amsterdam and NASA) over Maqu County, Source Area of the Yellow River(SAYR), China. Results show that the VUA soil moisture product performs the best among the three AMSR-E soil moisture products in the study area, with a minimum RMSE(root mean square error) of 0.08(0.10) m~3/m~3 and smallest absolute error of0.07(0.08) m~3/m~3 at the grassland area with ascending(descending) data. Therefore, the VUA soil moisture product is used to describe the spatial variation of soil moisture during the 2010 growing season over SAYR. The VUA soil moisture product shows that soil moisture presents a declining trend from east south(0.42 m~3/m~3) to west north(0.23 m~3/m~3), with good agreement with a general precipitation distribution. The center of SAYR presents extreme wetness(0.60 m~3/m~3) during the whole study period, especially in July, while the head of SAYR presents a high level soil moisture(0.23 m~3/m~3) in July, August and September. 相似文献
5.
The soil geochemical baseline is an important index in environmental assessment. Detailed baseline studies are necessary in large areas with complex geological settings, landforms and soil types. The Jianghan plain, a major industrial and agricultural region located in central China, has a soil geochemical baseline that has yet to be fully defined. The objective of this paper is to study the baseline of Cd, Pb and Zn in the topsoil of the Jianghan plain in a subarea using principal component regression (PCR). A total of 9030 samples were collected from the surface layer, and 2 soil profiles and 2 sedimentary columns were sampled near the Yangtze and Han rivers. Fifty-two elements and two parameters were analyzed. Data processing and the creation of spatial distribution maps of the elements were performed using MapGIS, R and SPSS software. The results show that the distributions of Cd, Pb and Zn are mainly controlled by parent material, drainage system and soil type. The study area is divided into 3 subareas, with factors reflecting the physico-chemical characteristics of the soil using factor analysis (FA). The geochemical baseline model is established in every subarea to predict the Cd, Pb and Zn values using principal component regression analysis (PCR); the exceptional values (as a result of anthropogenic input or mineralization) are distinguished by residuals (γ); and the natural background values and anthropogenic contributions are clearly distinguished. Therefore, the PCR method in these subareas is objective and reasonable, and the conclusion provides effective evidence of exceptional high values for further environmental assessment. 相似文献
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高分二号卫星影像提供了丰富的图像信息,高分二号影像数据的发布打破了我国高分辨率对地观测数据长期依赖进口的局面。但是图像在传输和保存过程中会有噪声干扰,如果感兴趣区域受到污染,则会导致该区域内的影像信息不能被充分利用。为了解决高分二号遥感影像去噪这一难题,本文采用自适应模糊阈值法去噪方式,该方法根据各个尺度下噪声方差建立的自适应模糊阈值函数非线性处理后,重新构造作为新的小波系数,经小波逆变换后得到去噪图像。通过与均值滤波器滤波、高斯平滑滤波、中值滤波器滤波、小波全局阈值去噪和Birge-Massart策略阈值法去噪比较,结果表明,自适应模糊阈值去噪法充分结合软硬阈值处理方式的优点,既保留图像细节又使图像更加平滑,图像整体信息完好,去噪效果更为理想。 相似文献
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大跨度悬索桥基准索股跨中位置处于百米高空,如何测得精确的垂度值,对主缆线形进行控制至关重要。本文分析了影响悬索桥基准索股垂度测量精度的主要因素,提出了基于实时大气折光系数改正的单向三角高程的跨中垂度测量新方法。在桥址区建立高精度的高差基准,通过对桥址区的大气折光系数的测定及改正试验,证明该测量方法切实可行。基准索股跨中垂度采用双测站进行测量,当双测站所测同一点绝对垂度互差小于10 mm时,取双测站所测垂度均值作为该点的垂度值。该方法的测量结果达到设计精度要求,对同类工程测量项目有借鉴意义。 相似文献
10.
南海土台风,是在南海局地形成的热带气旋的统称。本文选用1949—2014年CMA-STI 整编的“热带气旋最佳路径数据集”,对研究区域范围(5°~22.5°N、105°~120.5°E)的南海土台风强度及强度变化特征进行了探讨。结果表明:(1)南海土台风强度随时间的变化曲线呈近似对称的“漏斗状”,即强度从弱—强—弱的变化,在最大强度前后6 h时域内强度变化最显著,夏季台风强度变化比冬季快。(2)土台风强度存在1个增强中心,位于海南岛以东的南海北部近海区域,在中国华南沿岸陆区则减弱明显;台风增强/减弱区域随着季节变化而南北移动,夏季主要在北部近海/近岸区域18°~23°N附近,冬季随台风活动南移至10~18°N附近靠近西部近海/近岸区域,且冬季的平均减弱速率较夏季大。(3)东向移动的土台风最大强度一般比西向移动的强,其中夏季东移台风平均强度最大,冬季西移台风强度最小;夏季东移台风最大强度前后强度变化最快,冬季西移台风变化最慢;夏季西移台风强度分布呈北强南弱、东移台风强度呈东北向带状分布,冬季东、西移台风强度分布皆呈西强东弱,这种空间分布差异,主要是台风移动路径随季节变化而形成的。(4)海上活动时间的长短与台风最大强度的大小、变化幅度成正比。海上活动时间较短的台风,以西行路径为主,强度的分布较均匀,平均强度较弱,增强/减弱中心较多而小,增强/减弱速率较慢;反之,海上活动时间较长的台风,以东行路径居多,强度的分布呈多中心状,平均强度较强,增强/减弱中心较集中且广阔,增强/减弱速率较快。 相似文献