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21.
利用河南省历史气象资料,结合先进的防雹理论与技术,系统分析和总结了河南省冰雹过程的天气尺度与中尺度概念模型,并根据三维冰雹云数值模式及雷达探测、闪电定位、卫星、自动站数据,研发出河南省人工防雹作业指挥系统。该系统包括天气形势分析子系统和作业决策指挥子系统。天气形势分析子系统可根据大尺度形势背景、中尺度系统特征及三维冰雹云数值模式和卫星、闪电、自动站资料,对可能降雹区进行预测。作业决策指挥子系统通过对雷达数据产品的二次开发,完成雷达资料处理、产品生成及风暴自动识别、分类、预警,并根据参数的变化和雹云的移动方向,对下游作业区进行预警及输出作业方案。整个系统基于VS2005开发平台,使用c++开发语言,利用图层分层管理将地理信息、雷达实时观测资料、雷达二次产品、高空资料、火箭和高炮作业点等信息分层显示。系统自动化程度高,操作简便,为河南省冰雹天气预报预警提供了可参考的技术指标体系。  相似文献   
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Detrital zircons in five sedimentary samples, MC1 to MC5, from the bottom of the Chuanlinggou Formation in the Ming Tombs District, Beijing, were dated with the LA-ICP-MS and SHRIMP U–Pb methods. Age spectra of the five samples show a major peak at 2500 Ma and a secondary peak at 2000 Ma, suggesting their provenances were mainly from the crystalline basement of the North China Craton and the Trans-North China Orogen. The youngest zircon has an age of 1673 ± 44 Ma, indicating that the Chuanlinggou Formation was deposited after this age. From sample MC4 to MC5, lithology changed from a clastic rock (fine-grained sandstone) to a carbonate rock (fine-grained dolomite), suggesting that the depositional basin became progressively deeper. The age spectrum of sample MC5 shows a major peak at 2500 Ma and a secondary peak at 2000 Ma. Sample MC4, which is stratigraphically lower than sample MC5, only had one peak at 2500 Ma. We conclude that there was a transgressive event when sediments represented by MC5 was deposited, and seawater carried ca. 2000 Ma clastic materials to the basin where the Chuanlinggou Formation was deposited, leading to the addition of ca. 2000 Ma detritus. Our research indicates that the source area for the sediments became more extensive with time. We conclude that the Chuanlinggou Formation in the Ming Tombs District was deposited in a low-energy mud flat sedimentary environment in the inter-supra tidal zone because it is mainly composed of silty mudstone and fine-grained sandstone with relatively simple sedimentary structures.  相似文献   
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The water resource and its change of mountainous area are very important to the oasis economic system and ecosystem in the arid areas of northwest China. Accurately understanding the water transfer and circulation process among vegetation, soil, and atmosphere over different hydrological units in mountainous areas such as snow and ice, cold desert, forest and grassland is the basic scientific issue of water research in cold and arid regions, which is also the basis of water resource delicacy management and regulation. There are many research results on the hydrological function of different land covers in mountain areas, basin hydrological processes, however, there are only very limited studies on the water internal recycle at basin scale. The quantitative study on the mechanism of water internal recycle is still at the starting stage, which faces many challenges. The key project “Study on water internal recycle processes and mechanism in typical mountain areas of inland basins, Northwest China” funded by National Natural Science Foundation of China will select the Aksu River and Shule River Basin, which have better observation basis, as study area. The internal mechanism of moisture transfer and exchange process of different land cover and atmosphere, the internal mechanism of water cycle in the basin, and water transfer paths in atmosphere will be studied through enhancing runoff plot experiments on different land cover, analyzing the mechanism of water vapor transfer and exchange between different land covers in the watershed by isotope tracing on the water vapor flux of vegetation water, soil moisture and atmospheric moisture, improving the algorithms of remote sensing inversion and ground verification on land surface evapotranspiration on different land cover, and analyzing the water vapor flux from reanalysis data, and the coupling modeling of regional climate model and land surface process model. At last, the effect of different land cover in hydrological process of mountain area, and the impact of land cover on downstream oasis will be systematically analyzed.  相似文献   
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人类活动和社会经济迅速发展导致大量化学品排放进入地表水环境,对水生生态系统和人类健康产生诸多不利影响,如何从众多的化学品中筛选识别出具有潜在危害的优先污染物是水污染治理和管控的关键.本研究基于污染物环境暴露水平、持久性、生物累积性、生态风险和人体健康风险5个评价参数,构建多指标综合评分法定量筛选识别地表水环境优先污染物类别,并应用于涨渡湖水体中优先污染物清单的建立.污染物环境暴露水平基于靶向分析综合考虑了污染物环境实测浓度和检出频率.目标污染物持久性和生物累积性毒害性参数分别采用生物降解系数和正辛醇-水分配系数来表征.此外在物种敏感度分布法和评估因子法的基础上计算生态风险熵以定量表征生态风险,人体健康风险则由终生致癌风险指数或危害指数来表征.基于该多指标综合评分法可于涨渡湖水体7类151种特征污染物中筛查出41种优先污染物,主要包括11种多氯联苯、8种有机氯农药、6种多环芳烃、4种邻苯二甲酸酯、4种挥发性有机物和8种金属元素.鉴于不同地表水环境污染状况不同,通过多指标综合评分法可建立因地制宜的优先污染物清单,从而有利于形成以保护水生生物和人类健康为最终目标的优先污染物水质基准,为地表水环境污染物管控及治理提供方法学支撑和科学依据.  相似文献   
27.
丁志华  崔月菊  唐杰 《中国地震》2022,38(3):494-502
基于高光谱遥感数据,通过RST算法提取2020年7月12日唐山5.1级地震前不同参数异常信息,发现震前CH4、CO、H2O、O3均出现了高值异常,且异常均位于震中附近,异常幅度高于2倍均方差,CH4、CO、H2O异常机理不同于O3。通过统计2018—2020年CH4、CO、H2O三种气体出现频次,发现同步异常具有可靠性,认为高光谱多参数异常出现的同步性,可提高异常性质判定的信度。通过对不同参数进行连续跟踪观测,提取多参数同步异常信息,对地震短临预报具有一定参考意义。  相似文献   
28.
采用高通量测序技术,研究了内蒙古岱海流域入湖河流、湖水及沉积物细菌多样性及群落组成.结果显示,细菌多样性从高到低依次为:沉积物>河流>湖泊.聚类分析表明入湖河流、湖水和沉积物细菌群落可分为明显不同的3支,说明这3种生境中细菌群落结构有较大差异.物种注释结果表明,河流中优势细菌菌群为髌骨细菌(Patescibacteria)、变形菌门(Proteobacteria)、拟杆菌门(Bacteroidetes)和放线菌门(Actinobacteria);湖水中优势细菌菌群为放线菌门(Actinobacteria);而沉积物中优势细菌菌群为变形菌门和绿弯菌门(Chloroflexi).典范对应分析及Monte Carlo检验表明,电导率和悬浮物含量对水体中(河流与湖泊)细菌群落影响显著,二者共解释了细菌群落变化的86.5%;而冗余分析及Monte Carlo检验表明,泥深、磁化率和总有机碳对沉积物中细菌群落影响显著,三者共解释了细菌群落变化的47.9%.近30年来,岱海地区气候变化和人类活动导致湖水咸化,沉积物碳氮指标显著增长.岱海水体及沉积物细菌多样性及群落组成的差异及其主要驱动因子,反映了细菌对这种气候变化和人类活动共同作用的响应.  相似文献   
29.
以云南鲁甸6.5级地震中房屋建筑破坏严重的龙头山集镇斜坡地形为例,通过地脉动测试分析得出斜坡及坡顶测点相对于坡脚参考点谱比峰值均>1,顺坡向谱比峰值大于垂直坡向谱比峰值,且谱比峰值从斜坡坡脚到坡顶逐渐增大,坡顶处约为3;顺坡向谱比峰值对应的频率为4.57~5.39 Hz,垂直坡向谱比峰值对应的频率稍高,为5.42~5.96 Hz。通过结合黏弹性边界的时域动力有限元方法分析斜坡地形在垂直入射地震动作用下的响应,数值模拟结果表明,斜坡坡顶处的位移放大作用显著,坡脚处放大作用较小;介质剪切波速对斜坡地震动的影响较明显,尤其是坡顶点处不同介质剪切波速模型位移峰值差异较大。由于斜坡地形复杂的散射效应,在斜坡及附近测点均出现明显的转换面波,坡顶点处波形转换最显著。数值模拟结果进一步验证了龙头山集镇依坡而建的房屋建筑破坏严重是由局部地形地震动放大效应与地震动差动共同作用引起的。  相似文献   
30.
A prototype electromagnetic vibrator, referred to here as E-Vib, was upgraded and developed for broadband hardrock and mineral exploration seismic surveys. We selected the iron oxide mine in Blötberget, central Sweden, for a test site in 2019 for the newly developed E-Vib because of the availability of earlier seismic datasets (from 2015 to 2016) for verification of its performance for hardrock imaging purposes. The two-dimensional data acquisition consisted of a fixed geometry with 550 receiver locations spaced at every 5 m, employing both cabled and wireless seismic recorders, along an approximately 2.7 km long profile. The E-Vib operated at every second receiver station (i.e. 10 m spacing) with a linear sweep of 2–180 Hz and with a peak force of 7 kN. The processing workflow took advantage of the broadband signal generated by the E-Vib in this challenging hardrock environment with varying ground conditions. The processed seismic section shows a set of reflections associated with the known iron oxide mineralization and a major crosscutting reflection interpreted to be from a fault system likely to be crosscutting the mineralization. The broadband source data acquisition and subsequent processing helped to improve signal quality and resolution in comparison with the earlier workflows and data where a drophammer seismic source was used as the seismic source. These results suggest new possibilities for the E-Vib source for improved targeting in hardrock geological settings.  相似文献   
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