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41.
利用常规地面观测、柳州地面自动站、FY-2C卫星、柳州和河池的多普勒天气雷达观测资料,对2014年7月22日夏季柳州发生的一次短暂的雨夹冰雹天气过程的环境条件和雷达产品特征进行分析,主要结果如下:受副高和台风外围气流影响,柳州全市出现了37℃以上大范围的高温天气,天气尺度和中尺度的上升运动较弱,局地性质的加热作用导致大气的不稳定度加强而诱发对流云系进一步发展造成的;雷达显示的冰雹云的最大基本反射率因子为65d BZ,强回波区面积小;风速的切变和辐合上升运动小,0℃层高度较高,不利于对流系统的发展和维持。 相似文献
42.
本文利用MICAPS4.1平台上的高空、地面、智能网格预报、集合预报等数值预报产品,对2018年10月26-28日发生在黑龙江省大兴安岭地区的一次区域性暴雪天气过程形成机制进行探讨。结果表明:高空槽后强冷空气与槽前西南暖湿气流在大兴安岭上空交汇,导致暖锋锋生,地面暖锋与低空暖式切变相互作用形成暴雪天气。暴雪的主要触发系统就是超极地冷空气促使高空槽强烈发展切涡,≥20m·s^-1的西南低空急流作为水汽输送带,为暴雪区提供了充足的水汽来源;垂直上升运动中心和散度辐合辐散中心耦合且加强,为暴雪提供了强有力的动力抬升条件,有利于上升运动的增强发展。智能网格预报产品对这次大兴安岭暴雪天气的落区、降水量级以及强降雪的时段,都预报的比较准确。 相似文献
43.
张家口—渤海地震活动带中东段地壳剪切波分裂研究 总被引:1,自引:0,他引:1
张家口—渤海地震活动带是我国华北地区一条重要的地震带.该区域的主压应力场方向为近EW向.本文利用2005年9月-2010年9月首都圈地区地震台站记录到的数字波形资料,采用SAM方法(剪切波分裂系统分析法),研究讨论张家口 渤海地震带中东段地壳介质各向异性的空间分布特征.结果显示:张渤活动带中部及以东区域总体的优势方向明显,为近EW方向.横跨张渤活动带两侧的快剪切波优势偏振方向的空间分布显示,地震带北侧燕山隆起区内、地震带范围内和地震带南侧华北盆地内的快剪切波优势偏振方向均为近EW方向,差异不大. 相似文献
44.
Correlation between molecular absorption spectral slope ratios and fluorescence humification indices in characterizing CDOM 总被引:2,自引:0,他引:2
Hao Chen Binghui Zheng Yonghui Song Yanwen Qin 《Aquatic Sciences - Research Across Boundaries》2011,73(1):103-112
Ultraviolet–visible absorption spectral slope ratios SR (slope in 275–295 nm divided by slope in 350–400 nm) and humification index (HIX, integrated fluorescence emission in 435–480 nm
divided by that in 435–480 and 300–345 nm) were compared when characterizing chromophoric dissolved organic matter (CDOM)
in three humic acids and 44 whole water samples. HIX increased with increasing pH for humic acids, while their SR showed much more complicated dependencies on pH. There was a negative correlation between SR and HIX. SR increased in the order terrestrial coal/peat < terrestrial soil/river < seawater, while HIX increased in the order seawater < terrestrial
soil/river < terrestrial coal/peat. The comparative study in this work indicates that terrestrially derived CDOM has higher
HIX and lower SR than marine CDOM. Investigators may potentially use these two indices to compare qualitatively the character of CDOM in different
sources (e.g., terrestrial vs. marine). 相似文献
45.
ABSTRACT Eighty percent of big data are associated with spatial information, and thus are Big Spatial Data (BSD). BSD provides new and great opportunities to rework problems in urban and environmental sustainability with advanced BSD analytics. To fully leverage the advantages of BSD, it is integrated with conventional data (e.g. remote sensing images) and improved methods are developed. This paper introduces four case studies: (1) Detection of polycentric urban structures; (2) Evaluation of urban vibrancy; (3) Estimation of population exposure to PM2.5; and (4) Urban land-use classification via deep learning. The results provide evidence that integrated methods can harness the advantages of both traditional data and BSD. Meanwhile, they can also improve the effectiveness of big data itself. Finally, this study makes three key recommendations for the development of BSD with regards to data fusion, data and predicting analytics, and theoretical modeling. 相似文献
46.
为研究石家庄秋季对流层内CH4垂直分布特征,2018年9月使用“空中国王350”飞机搭载Picarro温室气体在线观测仪和气象要素观测设备,对石家庄上空(600—5500 m)CH4浓度进行探测。探测期间共飞行7架次,取得7条CH4浓度廓线数据。结果表明: 石家庄上空近地面层(1000 m以下)CH4平均浓度与同时间段区域背景站上甸子站CH4浓度呈显著正相关(r=0.81,P < 0.03)。探测到的CH4浓度最小值为1898×10-9摩尔分数,最大值为2219×10-9摩尔分数,平均浓度为1981×10-9摩尔分数。观测得到的7条廓线均有较好的一致性,2000 m以上,浓度均随高度呈先增大后减小的趋势。利用后向轨迹模式(HYSPLIT)对探测时段内石家庄上空不同高度层主要气流传输路径进行统计分析表明,600 m高度输送路径较短,CH4浓度受本地排放影响较大; 3000 m受输送作用影响较大,偏西和西南路径可能将较高CH4浓度气团输送至石家庄上空; 5000 m气团传输对CH4浓度影响较小,浓度相对较稳定,对传输路径的变化不敏感。 相似文献
47.
Cong Chen Xiangtao Zhang Guangrong Peng Zulie Long Baojun Liu Xudong Wang Puqiang Zhai Bo Zhang 《海洋学报(英文版)》2023,42(3):189-200
The eastern main sub-sag (E-MSS) of the Baiyun Sag was the main zone for gas exploration in the deep-water area of the Zhujiang River (Pearl River) Mouth Basin at its early exploration stage, but the main goal of searching gas in this area was broken through by the successful exploration of the W3-2 and H34B volatile oil reservoirs, which provides a new insight for exploration of the Paleogene oil reservoirs in the E-MSS. Nevertheless, it is not clear on the distribution of “gas accumulated in the upper layer, oil accumulated in the lower layer” (Gasupper-Oillower) under the high heat flow, different source-rock beds, multi-stages of oil and gas charge, and multi-fluid phases, and not yet a definite understanding of the genetic relationship and formation mechanism among volatile oil, light oil and condensate gas reservoirs, and the migration and sequential charge model of oil and gas. These puzzles directly lead to the lack of a clear direction for oil exploration and drilling zone in this area. In this work, the PVT fluid phase, the origin of crude oil and condensate, the secondary alteration of oil and gas reservoirs, the evolution sequence of oil and gas formation, the phase state of oil and gas migration, and the configuration of fault activity were analyzed, which established the migration and accumulation model of Gasupper-Oillower co-controlled by source and heat, and fractionation controlled by facies in the E-MSS. Meanwhile, the fractionation evolution model among common black reservoirs, volatile reservoirs, condensate reservoirs and gas reservoirs is discussed, which proposed that the distribution pattern of Gasupper-Oillower in the E-MSS is controlled by the generation attribute of oil and gas from source rocks, the difference of thermal evolution, and the fractionation controlled by phases after mixing the oil and gas. Overall, we suggest that residual oil reservoirs should be found in the lower strata of the discovered gas reservoirs in the oil-source fault and diapir-developed areas, while volatile oil reservoirs should be found in the deeper strata near the sag with no oil-source fault area. 相似文献
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