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151.
152.
随着印支期南秦岭勉略洋盆闭合,华南和华北两大块体最终拼贴、构成中国大陆的基本轮廓。普遍认为这一洋陆转换、碰撞造山发生在三叠纪,但具体时间和空间过程仍存在较多争议。秭归盆地位于秦岭逆冲褶皱带东段南缘,是扬子北缘前陆盆地系统的重要组成,在沉积序列和碎屑来源上与秦岭印支期造山作用密切相关。该盆地经历早中三叠世滨-浅海相到晚三叠世-早侏罗世三角洲-河流相的沉积转变,中三叠统巴东组和上三叠统九里岗组之间发育平行不整合。不整合面之上的上三叠统-下侏罗统砂岩在碎屑组分上不仅含有泥岩、粉砂岩等沉积岩岩屑和千枚岩、板岩和片岩等中-低级变质岩岩屑,而且还见有中酸性火山岩岩屑。结合碎屑锆石颗粒U-Pb定年和古流向数据,这些火山岩岩屑揭示北部的秦岭造山带源区在晚三叠世(225~200Ma)存在火山活动,与同期的花岗质侵入岩一起反映秦岭印支期的同碰撞造山岩浆活动。 相似文献
153.
新的高原季风指数与四川盆地夏季降水的关系 总被引:4,自引:1,他引:4
用NCEP/NCAR逐月再分析资料和中国560站月降水资料,定义了一个高原季风指数IPM2。结果表明:与原有高原季风指数相比,该指数与四川盆地夏季降水的相关性更好,能够较好地反映四川盆地夏季降水的异常变化。当高原夏季风偏弱时,巴尔喀什湖至贝加尔湖低压槽、亚洲东岸高压脊、印度低压均加强,同时西太平洋副热带高压偏北,来自孟加拉湾的西南风水汽输送和源于西太平洋的偏南风水汽输送均加强,这种环流形式有利于四川盆地西(东)部夏季降水偏多(少);当高原夏季风偏强时,情况相反。IPM2弱(强)大(小)年与四川盆地西(东)部涝年环流背景相似,表明IPM2能够很好反映四川盆地夏季降水异常的环流场特征。 相似文献
154.
“00.7”北京特大暴雨模拟中气象资料同化作用的评估 总被引:18,自引:0,他引:18
针对2000年7月4~5日北京地区的一次特大暴雨过程(24 h降水量达240 mm),文中利用MM5/WRF三维变分系统和MM5非静力模式,对此次特大暴雨过程中的各种气象监测资料(地基GPS大气柱水汽含量、常规探空、高空测风、地面常规观测和地面自动气象站)的同化作用通过观测系统数值试验进行了评估.结果表明与传统的客观分析方案相比较,MM5/WRF三维变分同化系统可直接引入非常规地基GPS大气柱水汽含量监测资料,提供更好的大气初始分析场.在三维变分同化方案下,各种大气监测资料均对改进此次特大暴雨模拟有不同程度的贡献,其中,常规探空和高空测风监测资料对改进预报结果的影响最大,地面常规观测和地面自动气象站观测资料作用次之,地基GPS大气柱水汽含量资料在与其他大气监测资料相互优势互补后,可很好地改善模式大气的分析质量,通过三维变分同化技术在区域数值天气预报模式初始场中引入地基GPS大气水汽监测网资料,使此次强降水个例的6 h和24 h测站降水预报的TS评分值在1,5,10和20 mm预报检验阈值下分别提高了1%~8%.研究结果对利用三维变分数值系统,评估气象监测网资料在改进高影响天气事件预报中的作用有借鉴意义. 相似文献
155.
An advanced one-dimensional radiative-convective model (RCM) is used to estimate the past, present and fu-ture climatic forcings induced by greenhouse gases of anthropogenic origin, such as CO2, CH4, N2O and CFCs, in this paper. The results show that the decadal climatic forcing for the last decade is one-order bigger than that prior to the year 1900, and in the case of no control on the emission of the greenhouse gases the climatic forcing for the year 2100 will be almost 4 times as much as now. 相似文献
156.
雷达可随时跟踪雨区范围、暴雨走向和降雨量的变化,而降雨是水文预报最重要的输入信息,对于水文预报、水库蓄放及江河流域水量的短时洪水预报都是很重要的。本文在介绍雷达测雨及国内外雷达测雨业务系统的基础上,重点总结了国内雷达测雨在水文预报中的研究进展,并提出了雷达在水文预报中的应用思路,探讨了雷达测雨在我国水文应用中的前景及其发展方向。数字化雷达测雨、地理信息系统以及数字高程图等系列新信息,将进一步推动新一代分布式降雨—径流模型的开发,并将极大地拓宽水文预报研究的思路和方法,从而提高预报精度。 相似文献
157.
Zhang Xiaoxuan Hu Yonghong Jia Gensuo Hou Meiting Fan Yanguo Sun Zhongchang Zhu Yuxiang 《Theoretical and Applied Climatology》2017,129(3-4):965-976
The influence of spatial scales on surface fluxes is an interesting but not fully investigated question. This paper presents an analysis on the influence of spatial scales on surface fluxes in the north Tibetan Plateau based on eddy covariance (EC) and large aperture scintillometer (LAS) data at site Nagqu/BJ, combined with the land surface temperature (LST) and normalized difference vegetation index (NDVI) of moderate-resolution imaging spectroradiometer (MODIS). The analysis shows that sensible heat fluxes calculated with LAS data (H_LAS) agree reasonably well with sensible heat fluxes calculated with EC data (H_EC) in the rain and dry seasons. The difference in their footprints due to the wind direction is an important reason for the differences in H_EC and H_LAS. The H_LAS are statistically more consistent with H_EC when their footprints overlap than when their footprints do not. A detailed analysis on H_EC and H_LAS changes with net radiation and wind direction in rain and dry season indicates that the spatial heterogeneity in net radiation created by clouds contributes greatly to the differences in H_EC and H_LAS in short-term variations. A significant relationship between the difference in footprint-weighted averages of LST and difference in H_EC and H_LAS suggests that the spatial heterogeneity in LST at two spatial scales is a reason for the differences in H_EC and H_LAS and that LST has a positive correlation with the differences in H_EC and H_LAS. A significant relationship between the footprint-weighted averages of NDVI and the ratio of sensible heat fluxes at two spatial scales to net radiation (H/Rn) in the rain season supports the analysis that the spatial heterogeneity in canopy at two spatial scales is another reason for differences in H_EC and H_LAS and that canopy has a negative correlation with (H/Rn). An analysis on the influence of the difference in aerodynamic roughness lengths at two spatial scales on sensible heat fluxes shows that the influence is greater in the dry season and smaller in the rain season because the ratio of z0m_LAS to z0m_EC is big in the dry season and is close to 1.0 in the rain season. This study on spatial scales on surface fluxes in the Tibetan Plateau will be helpful in analyzing and understanding its influence on climate. 相似文献
158.
Ting Wei Jian Li Xinyao Rong Wenjie Dong Bingyi Wu Minghu Ding 《Acta Meteorologica Sinica》2018,32(6):881-895
The Chinese Academy of Meteorological Sciences Climate System Model (CAMS-CSM) is a newly developed global climate model that will participate in the Coupled Model Intercomparison Project phase 6. Based on historical simulations (1900?2013), we evaluate the model performance in simulating the observed characteristics of the Arctic climate system, which includes air temperature, precipitation, the Arctic Oscillation (AO), ocean temperature/salinity, the Atlantic meridional overturning circulation (AMOC), snow cover, and sea ice. The model?data comparisons indicate that the CAMS-CSM reproduces spatial patterns of climatological mean air temperature over the Arctic (60°?90°N) and a rapid warming trend from 1979 to 2013. However, the warming trend is overestimated south of the Arctic Circle, implying a subdued Arctic amplification. The distribution of climatological precipitation in the Arctic is broadly captured in the model, whereas it shows limited skills in depicting the overall increasing trend. The AO can be reproduced by the CAMS-CSM in terms of reasonable patterns and variability. Regarding the ocean simulation, the model underestimates the AMOC and zonally averaged ocean temperatures and salinity above a depth of 500 m, and it fails to reproduce the observed increasing trend in the upper ocean heat content in the Arctic. The large-scale distribution of the snow cover extent (SCE) in the Northern Hemisphere and the overall decreasing trend in the spring SCE are captured by the CAMS-CSM, while the biased magnitudes exist. Due to the underestimation of the AMOC and the poor quantification of air–sea interaction, the CAMS-CSM overestimates regional sea ice and underestimates the observed decreasing trend in Arctic sea–ice area in September. Overall, the CAMS-CSM reproduces a climatological distribution of the Arctic climate system and general trends from 1979 to 2013 compared with the observations, but it shows limited skills in modeling local trends and interannual variability. 相似文献
159.
Lanzhou is a typical mountainous city with severe air pollution in northwestern China. This study uses hourly observational data of air pollutants at five air quality monitoring sites in Lanzhou from July to December 2015 to discuss data quality control and the representativeness of the monitoring sites(four urban sites and one suburban site). A fuzzy matrix is applied to study primary air pollutants. The results show that of the six routinely monitored pollutants,the primary pollutant is PM_10 during the study period. Based on lag correlation analysis and one-way analysis of variance, it is concluded that there are redundant observations at the four urban sites for the timely diffusion and transport of air pollutants from the same general area. The coefficient of divergence(COD) method is then used to evaluate the spatial distribution differences, and the primary air pollutant PM_10 shows differences at each site. COD can be used as a positive indicator to describe site representativeness. To evaluate the overall air pollution in the valley, correlation analysis is performed between the PM_10 concentration retrieved from aerosol optical depth satellite data and the concentration from the four urban monitoring sites. Among these, the correlation between the workers' hospital site data and the retrieval data is the highest, passing the 90% confidence level. A new representative evaluation model for air quality monitoring sites, R_s = 0.77 COD + 0.23R_(retrieval), is established by using COD and correlation coefficients between routine observations and satellite retrieval products. From this model, it can be concluded that the biological products institute site in Lanzhou is the most representative site for the evaluation of air pollution out of the four urban air quality monitoring sites from July to December 2015. 相似文献
160.
2011年初湖南暴雪过程的成因和数值模拟分析 总被引:1,自引:0,他引:1
利用多种观测资料及NCEP再分析资料,对2011年1月1720日湖南一次大范围暴雪过程进行了诊断分析,并使用WRF模式对其云微物理特征及降水相态转换机制进行数值模拟,旨在探讨本次强雨雪过程降水相态变化和暴雪形成及其发展成因。结果表明:乌拉尔山前部南下的冷空气与来自孟加拉湾及南海的暖湿气流在湖南长时间交汇产生锋生强迫,在静止锋区上界形成强辐合上升运动,是湖南大范围暴雪天气持续的主要原因;强烈的上升运动和持续的水汽辐合为本次暴雪过程提供了动力、水汽条件,“冷空气楔”上爬升的暖湿气流维持时间较长,是持续性大范围暴雪产生的重要热力条件;WRF模式能较好地模拟降雪量级及强降雪落区。雪粒子的产生和发展不仅与液水比含量大小有关,还与其上空冰晶的含量及分布密切相关,雪的凝华增长、冰晶向雪的自动转化和雨水与雪碰并成雪可能是本次降雪发生、发展最主要的物理过程,冰雪粒子大值中心及强上升运动区对预报强降雪带位置有较好的指示作用。 相似文献