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121.
基于GNIP的黄土高原区大气降水同位素特征研究   总被引:2,自引:0,他引:2  
贺强  孙从建  吴丽娜  张永清  陈伟 《水文》2018,38(1):58-66
以GNIP为数据源,选取研究了黄土高原区7个站点(兰州、银川、靖边、西安、平凉、包头、太原)降水中稳定同位素的时空变化特征,分析了除靖边站之外的其他站点降水同位素与温度和降水量的关系,揭示了该地区降水中稳定同位素的变化规律。结果表明:(1)黄土高原大气降水稳定同位素在不同的区域有着相似的时间变化特征和不同的空间变化特征;(2)建立了黄土高原区域大气降水线方程δD=7.0δ18O+0.36‰;(3)黄土高原各站点降水同位素的温度效应和雨量效应表现出较为显著的空间特性;(4)黄土高原区在冬季风期间较夏季风期间风速大、湿度低且蒸发强烈。  相似文献   
122.
塔里木盆地柯坪地区中寒武统藻白云岩去白云岩化研究   总被引:1,自引:0,他引:1  
对塔里木盆地柯坪地区中寒武统去白云岩化现象进行了研究。去白云岩化限于渗透性较好的藻白云岩,并且只有靠近含膏层段的藻白云岩才发生去白云岩化。从微观上看,发生去白云岩化的藻灰岩与藻灰云岩含有明显的去白云岩化交代残余,白云石残余呈碎斑状或树枝状。树枝状白云石残余含有大量的方解石包裹体,同时具有较高的Ca/Mg比,为高钙白云石,去白云岩化较彻底,形成藻灰岩;碎斑状白云石残余成分较均一,接近化学计量白云石(Ca/Mg比接近1),去白云岩化程度较弱,形成藻灰云岩。藻灰云岩的δ18O值(平均值为-6.7‰)明显低于邻近的白云岩(平均值为-5.3‰),同时高于藻灰岩(平均值为-9.5‰)。与未发生去白云岩化的藻白云岩相比,藻灰岩与藻灰云岩的孔隙度要明显降低。  相似文献   
123.
黄土丘陵区降水-土壤水-地下水转化实验研究   总被引:12,自引:0,他引:12       下载免费PDF全文
通过对黄土丘陵区燕沟流域2005~2007年雨季的多次降水、0~400 cm土层土壤水、沟道地表水、地下水(泉水、井水)水样中D和18O采样分析,研究了该区降水、土壤水、地表水、地下水的转化关系.结果认为:燕沟流域的降水线与中国、世界的降水线有明显区别,斜率和截距偏小;降水、地表水、土壤水、地下水逐渐富集δD和δ18O,且δ18O富集速度高于δD,由D和18O的蒸发分馏差异所致,可利用各类水体的δD和δ18O变化情况甄别水体之间的水量转化;土壤水δD和δ18O剖面在200 cm深度处出现低值区,应是降水补给到达该深度且土壤蒸发影响逐渐衰减共同作用的结果,其在200 cm以下逐渐升高则因为降水补给影响逐渐降低、土壤水本底同位素影响增强所致.由于380~400 cm深层土壤水的δD和δ18O对降水事件的响应存在,因此认为降水-地下水的转化存在,降水补给泉水的滞后期小于35 d.而对井水的补给滞后时间以及土壤水对地下水的补给量还需进一步研究.  相似文献   
124.
岩溶储层在碳酸盐岩储层中占有重要的地位,但过去一直认为表生期碳酸盐岩地层抬升至地表受大气水潜水面控制的岩溶作用是其主要成因.本文在充分认识塔北英买2地区构造地质背景的基础上,通过岩石学、地球化学及其与岩溶成因和控制因素关系的综合分析,提出在地层沉积序列完整的内幕区也可形成大气水岩溶作用改造的缝洞型储层.以岩芯和薄片观察...  相似文献   
125.
公路隧道集中排烟系统流速分布规律数值模拟研究   总被引:1,自引:0,他引:1  
采用火灾动态模拟软件FDS,对独立排烟道集中排烟模式在火灾条件下的排烟情况进行模拟计算,分别研究了集中排烟中双向排烟方式和单向排烟方式下不同排烟阀设置方案工况的排烟道流速和排烟阀流速分布规律。结果表明,双向排烟方式下,排烟阀流速与排烟道流速呈对称分布;单向排烟方式下,排烟阀流速与排烟道流速呈非对称分布;当排烟道横截面面积一定时,改变排烟阀设置方案对排烟道端部流速的影响不大;随着排烟阀开口面积的增加,离风机较近的排烟阀流速逐渐降低,而该排烟阀的排烟量却逐渐增大;排烟道和排烟阀流速的大小与排烟量、排烟阀设置方案、排烟道横截面面积等参数有关。本文研究可为集中排烟系统流速的合理设计提供依据。  相似文献   
126.
Book Reviewed in this article:

Geographical Aspects of Health and Disease in India. Rais Akhtarand A.T.A. Learmonth, eds.

Antarctic Treaty System: An Assessment. Proceedings of a Workshop at Beardmore South Field Camp, Antarctica.

American Electoral Mosaics. J. Clark Archerand Fred M. Shelley.

Kompas op Suidwes-Afrika/Namibie. W.S. Barnard, ed.

Jerusalem in the 19th Century: The Old City. Yehoshua Ben-Arieh.

The World as a Total System. Kenneth E. Boulding.

A Social History of Housing 1815–1985, Second Ed. John Burnett.

Human Migration. W.A.V. Clark.

Regional Population Projection Models. Andrei Rogers.

The State of Population Theory: Forward from Malthus. David Colemanand Roger Schofield, eds.

Imagining Tomorrow: History, Technology and the American Future. Joseph C. Corn, ed.

Swidden Agriculture in Indonesia: The Subsistence Strategies of the Kalimantan Kantú. Michael R. Dove.

Glacial Geologic Processes. David Drewry.

Physics of Desertification. Farouk El-Bazand M.H.A. Hassan, eds.

Housing the Homeless. Jon Ericksonand Charles Wilhelm, eds.

Settlement Patterns in Missouri: A Study of Population Origins, with a Wall Map. Russel L. Gerlach.

Desert Development: Man and Technology in Sparselands. Yehuda Gradus, ed.

Nuclear Winter. The Evidence and Risks. Owen Greene, Ian Percivaland Irene Ridge.

The Take-off of Suburbia and the Crisis of the Central City. Günter Heinritzand Elisabeth Lichtenberger, eds.

Regional Input-Output Analysis. Geoffrey J. D. Hewings.

Spatial Transportation Modeling. Christian Werner.

The Atlas of Georgia. Thomas W. Hodlerand Howard A. Schretter, eds.

Latin America. 5th ed. Preston E. Jamesand C.W. Minkel.

Applied Remote Sensing. C.P. Lo.

Localities, Class, and Gender. The Lancaster Regionalism Group.

Urban Social Movements: The City after Castells. Stuart Lowe.

Politics and Method. Doreen Masseyand Richard Meegan, eds.

Land Use. A. S. Mather.

The Kingdom of Coal. Donald L. Millerand Richard E. Sharpless.

The Presidio and Militia on the Northern Frontier of New Spain, A Documentary History, Vol. 1: 1570–1700. Thomas H. Naylorand Charles W. Polzer, S.J., comps. andeds.

Nuclear Power: Siting and Safety. Stan Openshaw.

The Central African Republic: The Continent's Hidden Heart. Thomas O'Toole.

Environmental and Dynamic Geomorphology. Márton Pécsi, ed.

Remote Sensing Principles and Interpretation. Floyd F. Sabins, Jr.

Acid Rain and Friendly Neighbors: The Policy Dispute between Canada and the United States. Jurgen Schmandtand Hilliard Roderick, eds.

Earth's Changing Surface: An Introduction to Geomorphology. M.J. Selby.

International Migration: The Female Experience. Rita J. Simonand Caroline B. Brettell, eds.

On Geography and Its History. D.R. Stoddart.

Transportation Networks: A Quantitative Approach. D. Teodorovic.

Processes in Physical Geography. R.D. Thompson, A.M. Mannion, C.W. Mitchell, M. Parry, J.R.G. Townshend.

Imaging Radar for Resources Surveys. J.W. Trevett.

Dominance and Affection: The Making of Pets. Yi-Fu Tuan.

Capturing the Horizon. The Historical Geography of Transportation since the Transportation Revolution of the Sixteenth Century. James E. Vance, Jr.

Nations at Risk: The Impact of the Computer Revolution. Edward Yourdon.  相似文献   
127.
Seasonal variation of stable isotopes in precipitation of Kathmandu Valley on the southern slope of Himalaya was carried out to understand the controlling mechanism of amount and temperature effect on the basis of one year stable isotope data from 2010 to 2011. Highly depleted isotope values in major rainy period are obtained just after the onset of precipitation in summer, which accounts for "amount effect" due to saturation isotopic compositions in high moisture condition, whereas, the higher values in winter are indicative to regional vapors (temperature effect) recycling of various sources. An abrupt depletion of isotope values in mid- June, indicates the onset date of monsoon precipitation, by the replacement of winter air mass with southern monsoon. Thus, precipitation isotopes are a tool revealing the onset date of summer monsoon and temporal features of variability, in local and regional monsoons precipitations. A comparison of long term monthly values of δ18O, temperature, and precipitation with GNIP δ18O data shows the temporal variations of stable isotopes are mostly controlled by amount and temperature effects. During summer monsoon, the amount effects are stronger for high values of precipitation (R=0.7) and altitude effect appears for low moisture in late rainy season, thus from December to June (winter to pre-monsoon) the controlling features of isotopes remains under the temperature effect. A temporal rate of temperature effect is derived as 0.04‰ per year which indicates a dry signal of atmospheric condition and a temperature relation δ18O=(0.371±0.08)T+(0.156±0.05) is obtained from this analysis. The meteoric water lines of Kathmandu before and after monsoon onset of 2011, are found as δD=(4.36±0.3)δ18O+(15.66±1.2) and δD=(6.91±0.2)δ18O?(7.92±2.26) from lab samples result, and δD=9.2δ18O+11.725 and δD=8.53δ18O+16.65 from GNIP data, which lacks the consistency both for slopes and intercepts values for the study period. The mean lapse rate values of δ18O and δD from GNIP data are obtained as ?0.002‰/m and ?0.015 ‰/m, which indicate the altitudinal effects in regional precipitation of the southern slope of Himalayas. This study estimates new stable isotopes data in recent precipitation using simple methodology which can be important for regional precipitation monitoring systems, environmental change and paleo-climatic studies.  相似文献   
128.
关于鄂尔多斯盆地白垩系地下水分水岭的探讨   总被引:4,自引:0,他引:4  
通过研究鄂尔多斯白垩系盆地地下水环境同位素 (18O、D、T), 认为鄂尔多斯盆地白垩系地下水分水岭位于陕北, 大致呈东西向分布的白于山一带。   相似文献   
129.
Abstract: Systematic data of rare earth elements (REEs) are presented in order to put some constraints on the origin of hydrothermal fluids responsible for two contrastive skarn deposits in Japan; the Kamioka Zn-Pb and Yoshiwara-Sannotake Cu(-Fe) deposits. Carbon and oxygen isotopic studies have demonstrated that the hydrothermal fluids responsible for the Kamioka Zn-Pb deposits are of meteoric water origin whereas those for the Yoshiwara-Sannotake Cu(-Fe) deposits are of magmatic water origin. The REE abundances of epidote skarn derived from aluminous rocks, garnet and clinopyroxene in calcic exoskarn derived from limestone, and interstitial calcite associated with sulfide minerals were determined for these contrastive skarn deposits by inductively-coupled plasma mass spectrometry (ICP-MS). A significant difference in the REE concentrations is not found between epidote skarn and aluminous original rock (plagioclase-clinopyroxene rock, called Inishi rock) from the Kamioka Zn-Pb deposits, indicating that the REEs are generally immobile during the formation of epidote skarn, and that the REE concentrations of the hydrothermal fluid are considerably low relative to the aluminous original rock. In contrast, the epidote skarn exhibits enrichment of Eu with increasing total REE concentrations relative to the aluminous original rock (quartz diorite) in the Yoshiwara-Sannotake Cu(-Fe) deposits, implying a contribution of magmatic fluid derived from granitoids during the skarn formation. Limestone generally has much lower REE concentrations related to surrounding aluminous rocks, and thus the REE concentrations of garnet and clinopyroxene in calcic exoskarn, originated from limestone, are variable due to the interaction with the hydrothermal fluids. The chondrite-normalized REE patterns of garnet, clinopyroxene, and interstitial calcite exactly provide useful information on origins of hydrothermal fluids. The REE patterns of these minerals from the Kamioka Zn-Pb deposits show lower (Pr/Yb)cn ratios, and negative Ce and Eu anomalies inherited from limestone with the decrease of This suggests that the hydrothermal fluids responsible for the Kamioka Zn-Pb deposits were depleted in REEs, and were not magmatic water in origin, but presumably meteoric one. In striking contrast, the REE patterns of exoskarn minerals and calcite from the Yoshiwara-Sannotake Cu(-Fe) deposits exhibit a positive Eu anomaly, and high (Pr/Yb)cn ratios with the considerable increase of σREE and the disappearance of negative Ce anomaly, implying that the fluids were dominantly of magmatic origin. The REE indices are very likely to be an excellent indicator to origins of the skarn deposits.  相似文献   
130.
Chert nodules of the Drunka Formation (Lower Eocene) are mostly spherical, have diameters from 40 to 120 cm, are quasi-uniformly spaced 2–3 m apart in the plane of bedding, have concentric internal structure and, except for rare small (<6 cm) solid chert nodules, are less than 85% chertified. Nodules formed after moderate alteration of limestone by meteoric water (δ18Ocalcite = –4 to –8‰) at shallow (<100 m) burial depths; more extensive alteration of limestone (δ18O = –10 to –16‰) by meteoric water followed nodule growth. Chertification was by low-temperature meteoric water (δ18Oquartz = +18‰ in margins to +22‰ in nuclei) at shallow burial depths. Meteoric water may have invaded the Drunka Formation in association with shelf progradation during the Early Eocene, or during the development of a Middle Eocene unconformity. Replacement of carbonate mud by microcrystalline quartz was the dominant chertification process, but fossils were replaced in part by fine-grained equant megaquartz, quartzine and chalcedony; the last of these occurs in places as beekite. Opal A-secreting marine organisms are the inferred source of silica, but none are preserved. There is no compelling evidence of an opal-CT precursor, so quartz may have formed by direct precipitation. Self-organization processes of enigmatic character established the spacing pattern of the nodules and also the Liesegang-banded internal structure of the chert nodules. Nodules grew chiefly by diffusive supply of silica, although one locality has elongate nodules that grew when there was some porewater advection. Chertification patterns and δ18O values of both calcite and quartz indicate that nodule growth was complex and variable. Some nodules probably grew from the centre outwards. Many nodules, however, initially grew simultaneously across the entire nodule, but late-stage growth was predominantly at the outer margins or at selective internal sites.  相似文献   
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