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汉南地区晋宁晚期铜-金成矿事件的确认及意义   总被引:1,自引:0,他引:1  
汉南地区位于扬子克拉通北缘西段。目前,在川、陕两省已在该区发现了数十个矿床(点)。其中,广泛分布的铜-金矿床(点)具有热液型矿化特征,成矿条件有利,具有寻找大-中型矿床的远景。为了查明这些铜-金矿产资源的形成时代,文章运用LA-ICP-MS锆石U-Pb法和单矿物~(40)Ar/~(39)Ar法对汉南地区有代表性的矿床(点)进行了成矿年代学研究。其结果显示,潘坝成矿期热液脉的锆石U-Pb年龄为(744±10)Ma,黑云母和钾长石~(40)Ar/~(39)Ar视年龄介于740 Ma~700 Ma之间。元山寺的成矿期白云母~(40)Ar/~(39)Ar坪年龄为(744±4)Ma,等时线年龄为(748±7)Ma。由于本次测试选择了成矿期矿物,其结果可以代表成矿时代。因此,汉南很可能存在晋宁晚期的铜-金成矿事件。根据区域地质演化历史,笔者认为汉南铜-金矿化(744 Ma)是造山晚期加厚岩石圈下部(山根)拆沉的结果。  相似文献   
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2013年暖季试验概述   总被引:2,自引:1,他引:1  
2013年,国家气象中心联合中国气象科学研究院、南京大学、中国科学院大气物理研究所开展暖季试验,探索业务单位与科研单位合作的新途径,以实现对业务相关研究的促进并加速有应用前景的技术向业务转化。本文介绍支持暖季试验的仿真业务环境、强天气联合会商及凝练的科学技术问题以及新技术应用测试转化结果。通过暖季试验,搭建起能对业务数据和被测试转化成果产品实时保障的仿真业务数据环境、完全仿业务定量降水预报和强对流天气预报的仿真业务分析预报交互平台以及能实时评估业务数值模式和测试模式产品的客观检验系统。定期联合会商为预报员和科学家提供了面对面的交流平台,使得科学家更加了解业务需求并通过分析研究解决部分会商中提出的科学技术问题。新技术应用测试转化试验表明: 高分辨率中尺度数值模式对提升强对流和暴雨天气的预报水平有积极意义,雷达风场反演技术、卫星天气应用平台对中尺度天气的快速分析有意义。而预报员与科技成果研发人员能否密切合作是影响科技成果业务转化的重要因素。  相似文献   
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It has been observed that low temperature, rainfall, snowfall, frost have never occurred over the past 50 years in the southern China, and weather in this area is very complex, so the monitoring equipments are few. Optical and thermal infrared remote sensing is influenced much by clouds, so the passive microwave Advanced Microwave Scanning Radiometer-Earth Observing System (AMSR-E) data are the best choice to monitor and analyze the development of disaster. In order to improve estimation accuracy, the dynamic learn- ing neural network was used to retrieve snow depth. The difference of brightness temperatures of TB18.7v and TB36.sv, TBI8.7H and TB36.sH, TB23,sv and TB89v, TBz3.8H and TB89H are made as four main input nodes and the snow depth is the only one output node of neural network. The mean and the standard deviation of retrieval errors are about 4.8 cm and 6.7 cm relative to the test data of ground measurements. The application analysis indicated that the neural network can be utilized to monitor the change of snow intensity distribution through passive microwave data in the complex weather of the southern China.  相似文献   
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The impact of orbital parameters on the climate of China in the Holocene is simulated from 11kaBP to 0kaBP with an interval of 1ka using National Center for Atmospheric Research (NCAR) Community Atmosphere Model version 2 (CAM2). The geographic distributions of summer precipitation around both 9kaBP and 4kaBP were realistically captured by CAM2, compared to the proxy data collected from 80 stations. Among all orbital parameters, the precession plays a major role in computing solar radiation, which dominates the variations of summer precipitation over China during the Holocene. The summers around 9kaBP were the wettest in China. Later on, the precipitation gradually reduced to the minimum around 0kaBP by about 10%. This tremendous change occurred from the Northeast China and the eastern Inner Mongolia extending southwestwards to the Qinghai-Tibet Plateau, especially over the Qinghai-Tibet Plateau.  相似文献   
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