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961.
利用瞬变扰动分析的原理,提供了一个可以客观判定海雾发生时天气类型的方法。在分类结果的基础上,对环流形势、散度和垂直速度以及温度湿度的垂直廓线等进行合成分析,得到低空(1 000 hPa)为低压扰动下发生海雾(L型海雾)的环流和物理量场基本特征,并与高压控制下海雾(H型海雾)进行对比,结果表明:1)L型海雾位势高度负异常扰动主要表现在低层,其平均值为-65.66 gpm,向上逐渐减弱;2)L型海雾在发生时其逆温强度小于H型海雾,雾层较厚,雾层上空湿度仍然比较大,而H型海雾雾层上空有比较明显的干层;3)L型海雾在垂直方向上的分布具有三层结构,第一层1 000~950 hPa为辐合伴有弱上升和下沉运动,第二层950~850 hPa为辐散伴有弱下沉运动,第三层850~500 hPa为逐渐加强的上升运动;H型海雾为两层结构,1 000 hPa为辐散伴有弱的上升和下沉运动,950~500 hPa为一致的下沉运动;4)概率密度统计分析进一步定量表明了L型和H型海雾发生时垂直运动以及相对湿度在各层中的分布情况。这些结论对黄海西北部夏季低压环流形势下海雾的预报提供了重要参考。 相似文献
962.
963.
利用一整年的上海城区常规气象和地表能量平衡观测资料,驱动和检验了局地城市地表能量(水分)平衡模式(SUEWS/LUMPS)在上海地区的模拟能力,并对模式输入参数进行了部分本地化。模拟结果表明,SUEWS模式较好地再现了各辐射通量的日变化形态,对净辐射通量(Q~*)中午日峰值低估约为25 W·m~(-2);模式对四个季节向下长波辐射通量(L_↓)的日变化幅度均被低估,对向上长波辐射通量(L_↑)的模拟明显优于L_↓。SUEWS/LUMPS模式对感热通量(Q_H)各季节(春季除外)日峰值出现时次均有准确模拟,而对Q_H量值各季节均为低估;SUEWS模式在夏、秋季对白天潜热通量(Q_E)的模拟均优于LUMPS模式,而在冬、春季的模拟情况两者接近;SUEWS模式成功再现了储热通量(△Q_S)冬、春、秋季早、晚正负值转换时间,而在夏季滞后了2 h,模拟的△Q_S量值季节差异性较大。对模式误差随气温、风速及风向变化进行分析表明,在较高气温和较大风速下,Q_H、Q_E均表现为低估误差增大,而△Q_S则相反,表现为更显著地高估;风向的影响主要表现为模式未考虑东面密集建筑群而使得Q_H较明显低估约为-50 W·m~(-2),而西侧公园绿地的存在使得Q_H高估约15 W·m~(-2)。 相似文献
964.
965.
维多利亚湖是非洲第一大淡水湖,也是全球十大湖泊中纬度最低的淡水湖,有利于GRACE的监测。维多利亚湖为其流域内的居民提供了赖以生存的淡水资源,监测其水储量变化有重要意义。利用2003年1月至2016年12月间的GRACE时变重力场数据反演其水储量变化,针对GRACE数据处理过程中产生的信号泄漏问题,采用Forward Modeling的方法恢复信号,结果表明:此方法能有效地减小泄漏误差,恢复初始信号;通过分析维多利亚湖流域水储量的变化趋势,发现其水储量在2003年至2016年有明显的阶段性变化,并且水储量易受到自然因素和人为因素影响;联合GRACE、卫星测高和GLDAS计算了流域内的地下水变化,其趋势与WGHM模式输出结果具有很好的一致性。 相似文献
966.
967.
利用上海郊区奉贤的涡动相关通量观测资料,对2015年9月至2016年8月二氧化碳(CO2)通量的时空分布特征、年总排放量进行了分析.结果表明,上海奉贤春、夏、秋季的9-14时CO2通量几乎全为负值,冬季CO2通量则全天均为正值.奉贤CO2通量没有明显的周末效应.植物光合作用是影响奉贤CO2通量时间变化特征的主要因素.各... 相似文献
968.
皖西白大山群的发现及其地质意义 总被引:7,自引:0,他引:7
皖、豫交界的白大山-茶庵一带,出露一套碎屑岩夹碳酸盐岩地层,以往被置于青白口系八公山群。近期笔者等赴该地再次进行了调查和研究,结果发现该群地层组合内含有大量球藻类和植物碎片化石,这些微古植物分子在国内外多见于下古生代。并从岩石组合特征对比分析,认为该套地层属志留-泥盆系的可能性最大。对这套地层及微古植物的发现,具有两方面重要的地质意义:1.过去对华北地台南缘从未见有这个时代地层的报导,这就为该区地层填补了一个空白;2.从已采获的微古植物组合及岩性组合特征等分析,这有可能对华北地台南缘的岩相古地理图及地史发展等问题,进行一些必要的改写与补充。 相似文献
969.
Weiwei Chao Ken‐ichiro Hayashi Huishou Ye Jingwen Mao Yanguang Geng Minfeng Bi Peng Wang Qiuming Pei 《Resource Geology》2019,69(4):333-350
The Luanling gold telluride deposit in the Xiong'ershan region is located in the southern margin of the North China Craton. The deposit formed in four stages, that is, an early pyrite‐quartz stage (I), a pyrite‐molybdenite stage (II), a sulfide‐telluride‐gold stage (III), and a late carbonate stage (IV). Six species of telluride in stage (III) are recognized, including hessite, altaite, petzite, unidentified Au‐Ag‐Te mineral, empressite, and unidentified Ag‐Te‐S mineral. Gold occurs mostly as native gold and electrum along the microfractures of sulfides or the contact between sulfide and telluride. The mineralization temperature of stage I and stage III ranges from 296 to 377°C and 241 to 324°C, respectively. Tellurides in stage III precipitate at the log?S2 from ?14.3 to ?7.3 and log?Te2 from ?17.4 to ?9.4. The ores were formed in an oxidizing environment. The Re‐Os model ages of molybdenite are 162–164 Ma, which indicate that the main ore formation stage was in the Late Jurassic. The Re contents of five molybdenite samples from the Luanling deposit have a range of 36.32–81.95 ppm, except for one large value of 220 ppm, which indicates that the ore‐forming materials are mainly derived from a crustal‐dominated source. The δ34S values of sulfides range from ?17.6 to ?6.2‰, whereas those of sulfates are from 6.8 to 11.5‰. The δ34S∑S value of the ore‐forming system is 0.0–3.7‰, indicating that the sulfur of the Luanling deposit derived from a deep igneous source. Mineral association and isotope data of the Luanling deposit, together with its geodynamic setting, imply that this deposit belongs to a part of the metallogenic system of the Nannihu‐Sandaozhuang, Shangfangou porphyry molybdenum deposits, and the Late Jurassic granitic intrusions. 相似文献
970.
Noble Gas and Stable Isotopic Constraints on the Origin of the Ag–Cu Polymetallic Ore Deposits in the Baiyangping Area,Yunnan Province,SW China 下载免费PDF全文
Zhichao Zou Ruizhong Hu Xianwu Bi Liyan Wu Jinrang Zhang Yongyong Tang Na Li 《Resource Geology》2016,66(2):183-198
The Lanping basin, Yunnan province, SW China, is located at the juncture of the Eurasian and Indian Plates in the eastern part of the Tibetan Plateau. The Lanping basin, in the Sanjiang Tethyan metallogenic province, is a significant Cu–Ag–Zn–Pb mineralized belt in China that includes the largest sandstone‐hosted Zn–Pb deposit in the world, the Jinding deposit, as well as several Ag–Cu deposits (the Baiyangping and Jinman deposits). These deposits, with total reserves of over 16.0 Mt Pb + Zn, 0.6 Mt Cu, and 7,000 t Ag, are mainly hosted in Meso‐Cenozoic clastic rocks and are dominantly controlled by two Cenozoic thrust systems developed in the western and eastern segments of the basin. The Baiyangping, Babaoshan, and Hetaoqing ore deposits are representative of the epithermal base metal deposits in the Lanping basin. The microthermometric data show that the ore‐forming fluids for these deposits were low temperature (110–180 °C) and had bimodal distribution of salinity at moderate and mid to high salinities (approximately 2–8 wt.% and 18–26 wt.% NaCl equivalent). The C and O isotope data indicate that the ore‐forming fluids were related to hot basin brines. We present new He and Ar isotope data on volatiles released from fluid inclusions contained in sulfides and in barite in these three deposits. 3He/4He ratios of the ore‐forming fluids are 0.01 to 0.14 R/Ra with a mean of 0.07 Ra (where R is the 3He/4He ratio and Ra is the ratio for atmospheric helium). This mean value is intermediate to typical 3He/4He ratios for the crust (R/Ra = 0.01 to 0.05) and the ratio for air‐saturated water (R/Ra = 1). The mean ratio is also significantly lower than the ratios found for mantle‐derived fluids (R/Ra = 6 to 9). The 40Ar/36Ar ratios of the ore‐forming fluids range from 298 to 382 with a mean of 323. This value is slightly higher than that for the air‐saturated water (295.5). The 3He/4He ratios of fluids from the fluid inclusions imply that the ore‐forming fluid for the Baiyangping, Babaoshan, and Hetaoqing deposits was derived from the crust and that any mantle‐derived He was negligible. The content of the radiogenic Ar ranges between 0.2 to 20.4%, and the proportion of air‐derived 40Ar averages 94.1%. This indicates that atmospheric Ar was important in the formation of these deposits but that some radiogenic 40Ar was derived from crustal rocks. Based on these observations coupled with other geochemical evidence, we suggest that the ore‐forming fluids responsible for the formation of the Ag–Cu–Pb–Zn polymetallic ore deposits in the Baiyangping area of the Lanping basin were mainly derived from crustal fluids. The fluids may have mixed with some amount of air‐saturated water, but there was no significant involvement of mantle‐derived fluids. 相似文献