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Using stable isotopes to understand seasonal and interannual dynamics in moisture sources and atmospheric circulation in precipitation 下载免费PDF全文
Yu Tang Xianfang Song Yinghua Zhang Dongmei Han Likun Ai Tianbao Zhao Yajun Wang 《水文研究》2017,31(26):4682-4692
Stable isotopes in precipitation are useful tracers to strengthen understanding of climate change and hydrological processes. In this study, the moisture sources of 190 precipitation events in Beijing were analysed using the Hybrid Single‐particle Lagrangian Integrated Trajectory model, based on which we studied the relation between variations in precipitation δ18O and dynamics in moisture sources and atmospheric circulation in seasonal and interannual timescales. Categorization of 7 groups of moisture sources was performed, among which oceanic moisture sources presented lower δ18O in precipitation than continental moisture sources. The results show that seasonal variations of precipitation δ18O were caused by changes of moisture sources. In summer, moisture from proximal oceans dominated vapour transport to Beijing due to increasing monsoon strength and resulted in a relatively small variation of precipitation δ18O. At the interannual timescale, the variations of δ18O in summer precipitation were related to dynamics in oceanic moistures, showing depleted values when the contribution of oceanic moistures, especially the proportion of long‐distance oceanic moisture, was high. Further analysis indicated that changes of oceanic moisture sources were controlled by the strength of summer monsoons. These findings address the complexity of moisture sources in midlatitude monsoon areas and suggest that isotopic signals in precipitation have the potential to deduce changes in moisture sources and atmospheric circulation and can therefore serve for palaeoclimate reconstruction. 相似文献
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第二次土地调查中坐标系统转换方法研究 总被引:1,自引:0,他引:1
王履华 《测绘与空间地理信息》2010,33(1):48-51
探讨了第二次土地调查(农村部分)中所涉及到的1954年北京坐标系和1980西安坐标系之间的转换方法,并以实际项目为例,采用不同的检测方法对坐标系统转换精度进行验证,为第二次土地调查中涉及到的坐标系统转换提供思路。 相似文献
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In this study, the Weather Research and Forecasting (WRF) model and meteorological observation data were used to research the long-distance moisture transport supply source of the extreme rainfall event that occurred on July 21, 2012 in Beijing. Recording a maximum rainfall amount of 460 mm in 24 h, this rainstorm event had two dominant moisture transport channels. In the early stage of the rainstorm, the first channel comprised southwesterly monsoonal moisture from the Bay of Bengal (BOB) that was directly transported to north China along the eastern edge of Tibetan Plateau (TP) by orographic uplift. During the rainstorm, the southwesterly moisture transport was weakened by the transfer of Typhoon Vicente. Moreover, the southeasterly moisture transport between the typhoon and western Pacific subtropical high (WPSH) became another dominant moisture transport channel. The moisture in the lower troposphere was mainly associated with the southeasterly moisture transport from the South China Sea and the East China Sea, and the moisture in the middle troposphere was mainly transported from the BOB and Indian Ocean. The control experiment well reproduced the distribution and intensity of rainfall and moisture transport. By comparing the control and three sensitivity experiments, we found that the moisture transported from Typhoon Vicente and a tropical cyclone in the BOB both significantly affected this extreme rainfall event. After Typhoon Vicente was removed in a sensitivity experiment, the maximum 24-h accumulated rainfall in north China was reduced by approximately 50% compared with that of the control experiment, while the rainfall after removing the tropical cyclone was reduced by 30%. When both the typhoon and tropical cyclone were removed, the southwesterly moisture transport was enhanced. Moreover, the sensitivity experiment of removing Typhoon Vicente also weakened the tropical cyclone in the BOB. Thus, the moisture pump driven by Typhoon Vicente played an important role in maintaining and strengthening the tropical cyclone in the BOB through its westerly airflow. Typhoon Vicente was not only the moisture transfer source for the southwesterly monsoonal moisture but also affected the tropical cyclone in the BOB, which was a key supply source of long-distance moisture transport for the extreme rainfall event on July 21, 2012 in Beijing. 相似文献
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北京下苇甸剖面张夏组鲕粒特征及其白云化机制 总被引:1,自引:0,他引:1
北京下苇甸剖面张夏组作为华北寒武系的标准剖面之一,鲜有人对其中的鲕粒类型及其成岩作用进行细致研究。在充分调研前人研究的基础上,通过野外观察、实测,并结合室内薄片鉴定、XRD测试等技术,对下苇甸剖面张夏组的鲕粒类型进行总结,并对鲕粒白云化机制进行分析。结果显示:(1)下苇甸张夏组鲕粒类型主要为放射鲕、同心放射鲕及单晶鲕/多晶鲕,还有少量同心鲕、复鲕及藻鲕;(2)鲕粒发生白云化,填隙物未见白云化,且放射圈层白云化程度高于同心圈层,并且放射圈层白云石颗粒围绕核心呈放射状分布,同心圈层围绕核心呈同心状分布;(3)鲕粒内部白云石颗粒多为中细晶,自形-半自形,回流渗透白云化是造成鲕粒白云化的主要成因,因此造成亮晶鲕粒石灰岩白云化程度高于灰泥鲕粒石灰岩。 相似文献
37.
The timing and extent of cratonic destruction are crucial to understanding the crustal evolution of the North China Craton (NCC). Zircon U–Pb–Hf isotope data and the whole-rock major and trace element characteristics of the Huyu igneous rocks in northwestern Beijing, China, provide possible new evidence for the initial destruction of the NCC. The igneous rocks occur as several sills and dikes, including lamprophyre, monzonite porphyry, and aplite. The lamprophyres have high Mg# and K2O contents. The monzonite porphyries have high Mg#, high K2O contents, and negative εHf(t) values with zircon U–Pb ages of 225.5–227.7 Ma. These two types of rocks are both enriched in large ion lithosphere elements (LILEs) and light rare earth elements (LREEs) but are depleted in high field strength elements (HFSEs) and high rare earth elements (HREEs) and have almost no Eu anomalies and relatively high total rare earth element (ΣREE) contents. In contrast, the aplites exhibit high silica and K2O contents, low MgO contents, and more negative εHf(t) values with a zircon U–Pb age of 206.2 Ma. The aplites are also enriched in LILEs and LREEs but are depleted in HFSEs and HREEs, with strongly negative Eu, Ti, P, La, Ce, and Sr anomalies and relatively low ΣREE contents. These results indicate that the lamprophyres and monzonite porphyries represent a continuous cogenetic magma evolution series after melt derived from an enriched metasomatized lithospheric mantle experienced crust assimilation and fractional crystallization. The aplites were produced by the fractional crystallization of low-Mg parental magma derived from melting of the ancient Archaean crust. The occurrence of the Huyu intrusive rocks with many other plutons of similar ages on the northern margin of the NCC suggests that the northern NCC entered an intraplate extensional tectonic environment in the Late Triassic. 相似文献
38.
全球的世界地质公园活动是于1996年在房山周口店开始的。房山世界地质公园地跨北京市房山区和河北省涞水县、涞源县,地理坐标:东经114°36ˊ48"~116°08ˊ16",北纬39°09ˊ57"~39°43ˊ08"。公园东西长130.80km,南北宽75.09km,总面积953.95km2。其中划分为8个园区:周口店、石花洞、十渡、百花山-百草畔、上方山-云居寺、圣莲山、野三坡和白石山园区。房山区为3水合围,东面为永定河,北面为大石河,南面为拒马河。房山是以岩溶景观为特色的世界地质公园。其北面的大石河流域自上而下,依次发育鸡毛洞、银狐洞、石花洞和孔水洞,由一条地下暗河将其连为一个洞系。南面的拒马河流域,地层为产状平缓的中元古代雾迷山组硅质条带白云岩,形成新近纪石林与第四纪岩溶陡壁的组合地貌形态——房山地貌。 相似文献
39.
1932年以来北京主城区土地利用空间扩张特征与机制分析 总被引:5,自引:0,他引:5
基于历史地图、地形图和遥感影像提取1932年以来,北京主城区城市空间扩张,以及建筑密度空间信息。从城市土地利用扩张特征、建筑密度变化特征以及驱动机制三个方面分析北京城市土地利用扩张过程。研究表明:1984年前,北京城市呈现缓慢增长趋势。1984-1992年在市场经济驱动下,北京进入了第一次大规模快速的扩张阶段。1992-2000年间,由于我国出台了最为严格的耕地保护政策,这一时段城市空间扩张有所放缓。2000-2007年受北京城市建设规划、2008年奥运会场馆建设的影响,北京城市进入了有史以来,最快的扩张阶段。北京城市呈现单中心低密度蔓延,1982年前,城市扩张形态以相对较高的建筑密度紧凑扩张模式为主,1982年以来,呈现严重的低密度蔓延态势,特别是2000-2007年城市在5-6环之间"摊大饼"式与"遍地开花"式低密度蔓延问题更为突出。北京城市空间扩张是重大事件与人口、社会经济等因素共同驱动的结果。而且重大事件驱动对于长时间序列城市空间扩张作用更为突出。 相似文献
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2006年4月17日北京特大降尘的地球化学特征 总被引:5,自引:0,他引:5
2006年4月17日北京遭遇了近年来最为严重的一次降尘天气。分析了降尘的主量、微量和稀土元素地球化学特征,并与洛川马兰黄土和几次北京降尘进行对比,结果显示本次北京降尘与洛川马兰黄土具有相似的元素分布模式,表明与黄土具有相似的物质组成,并在搬运过程中经历了充分的混合,同时,北京降尘与黄土相比具有一定程度的差异性,表现为北京降尘中Mg、Na相时富集,Ca明显亏损并含有较高的烧失量,降尘CIA值较低,表明降尘源区化学风化程度较弱,处于化学风化的初始阶段,降尘∑REE显著高于黄土,同时轻、重稀土分馏程度也较黄土高,4次北京降尘间稀土元素分布模式对比表明,粒度是影响重稀土元素间分馏程度不同的主要因素。 相似文献