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991.
安徽大别山北部石榴辉石麻粒岩岩石历因及演化   总被引:2,自引:0,他引:2  
孙先如  杜建国 《岩石学报》2000,16(2):203-219
石榴辉石麻粒岩主要产在北大别,以团块状,沿铁镁质超基性岩块走势分布。它们的主要矿物成分由石榴石、透辉石、紫苏辉石、斜长石等组成,在石榴石边部分别形成角闪石+斜长石,紫苏辉石+斜长石成成合晶结构。通过矿物温度压力计计算,高峰期变质温度740℃ ̄890℃,压力0.8 ̄1.52GPa;退变质期温度700℃ ̄862℃,压力0.69 ̄0.79GPa,表明石榴辉石麻粒岩PT轨迹为等温降压顺时针轨迹。通过主量元  相似文献   
992.
INTRODUCTIONIn the past years,a few researches have been made intothe Quaternary surface sediments in vast range of the South-eastern China Sea.In November1 997,the Guangzhou Bureauof Marine Geology Survey,Ministry of L and and Resources,started the regional geological surveying and mapping of ChinaSea(“Shantoufu,F-50”) ,and the marine geology and geo-physics investigation in the Southwest Taiwan basin,and theEastern Pearl River Mouth basin and their adjacent areas.Inthese inve…  相似文献   
993.
西藏林芝地区八一镇电厂沟格栅坝工程土石方、钢筋、模板、混凝土工程量大,场地自然地理地质条件极为复杂,施工中将遇到安全放炮,墩注的垂直度及冬季防冻等问题,本文着重介绍了对付这些问题所采取的技术措施。  相似文献   
994.
995.
生态地理区域系统的热带北界中段界线的新认识   总被引:16,自引:3,他引:13  
吴绍洪  郑度 《地理学报》2000,55(6):689-697
从我国热带北界中段界线的划分,探讨生态地理区域的认识和界线的划分,着重生态地理区域之间界线的逐渐过渡特征。分析前人的研究成果及其对热带北界中段划分的差异,指出他们在概念、资料和方法上的差异。在热带与亚热带的过渡区域中提出热带、年热带、真热带和热带波动带的概念,从新的角度认识热带区域。在确定和建立热带北界划分指标体系的基础上,划分了热带北界中段的界线。探讨了本次热带北界中段的界线划分与前人研究的差异  相似文献   
996.
INTRODUCTIONInfluencedbywarmcurrent,upwellingandalongshore(coastal)waters,zooplanktoniscomparativelyabundantinthesouthpartofTaiwanStrait.Inthepast,macroplanktonnetwasadoptedintheecologicalstudyofzooplanktoninthisarea,thuscausingconsiderablelossofeitherspeciesorindividualnumbersofmeso-andmicrozooplanktoninthesurvey.Inthisstudy,mesozooplanktonnetwasusedinthesamplecollection.Itshowsthatmicrozooplanktonandimmatureindividualsofmacro-andmesozooplanktonwereabundant,andthediversityofzooplanktoni…  相似文献   
997.
Based mainly on TOGA COARE data, that is, the CI''D data from R/V Xiangyanghong No.5 (Pu et al.,1993),the temperature and current data from the Woods Hole mooring and other deep current data, the layered numerical profiles of buoyancy frequency and mean current components are figured out.A numerical method calculating internal wave dispersion relation without background shear current, used by Fliegel and Hunkins (1975),is improved to be fit for the internal wave equation with mean currents and their second derivatives.The dispersion relations and wave functions of the long crested internal wave progressing in any direction can be calculated inveniently by using the improved method.A comparison between the calculated dispersion relation in the paper and the dispersion relation in GM spectral model of ocean internal waves (Garret and Munk, 1972) is performed.It shows that the mean currents are important to the dispersion relation of internal waves in the western equatorial Pacific Ocean and that the currents make the wave progressing co-directional with (against) the currents stretched (shrink).The influence of the mean currents on dispersion relation is much stronger than that of their second derivatives, but that on wave function is less than that of their second derivatives.The influences on wave functions result in the change of vertical wavenumber, that is, making the wave function stretch or shrink.There exists obvious turning depth but no significant critical layer absorption is found.  相似文献   
998.
祁连山中部树木年轮宽度与气候因子的响应关系及气候重建   总被引:33,自引:13,他引:20  
研究了祁连山中部不同海拔高度青海云杉的树轮宽度对气候因子的响应,重建了祁连山中部 230 a以来春季3~5月的降水和 170 a以来夏季6~8月的气温序列。结果分析发现,不同高度的云杉树轮生长对春季降水极为敏感,呈现显著正相关;对夏季气温的响应程度,各海拔高度却不相同,夏季气温对上、下限云杉生长有显著影响,但对于森林中部云杉作用并不明显,总体表现为负相关,夏季高温对树木生长不利。气候重建结果发现,祁连山中部的春季230 a以来经历了大幅度长阶段的干湿变化,存在明显的 69 a和 21a周期;170 a以来夏季气温变化频繁,存在明显的2~4a周期。目前,祁连山中部正处于相对干旱和温暖时期,呈现出向暖干方向发展的趋势。  相似文献   
999.
Knowledge of the spatial–temporal variability of soil water content is critical for water management and restoration of vegetation in semi-arid areas. Using the temporal stability method, we investigated soil water relations and spatial–temporal variability of volumetric soil water content (VSWC) in the grassland–shrubland–forest transect at a typical semi-arid subalpine ecosystem in the Qilian Mountains, northwestern China. The VSWC was measured on 48 occasions to a depth of 70 cm at 50 locations along a 240-m transect during the 2016–2017 growing seasons. Results revealed that temporal variability in VSWC in the same soil layer in the three vegetation types and averaged across vegetation types tended to exhibit similar patterns of a decrease with increasing soil depth. Temporal stability in each vegetation type was stronger with an increase in soil depth. However, the results of temporal stability determined with standard deviation of relative difference (SDRD) disagreed with those based on the Spearman's rank correlation coefficient; the forest site had the highest Spearman rank correlation coefficient while the shrubland—the smallest SDRD in the 0–20 cm soil layer. Correlation analyses of VSWCs between two vegetation types indicated that soil water was related among all three vegetation types at the 0–20, and 0–70 cm soil layer, but in the 20–40 and 40–70 cm soil layers, significant correlation (p < .01) occurred only between adjacent vegetation types. In the upper soil layer (0–20 cm), soil water relations were mainly affected by surface runoff. In the lower soil layer (20–40 and 40–70 cm), soil water relations among the three vegetation types were highly complex, and probably resulting from a combination of root distribution and activity, interflow, and the impact of deep soil freeze–thaw dynamics. These results suggest that the factors affecting soil water are complex, and further research should address the relative importance of and interactions among different determining factors.  相似文献   
1000.
In this study, data from MODIS land surface temperature product level 3 (MOD11A2) were used to investigate the spatiotemporal variation of Eurasian lakes water surface temperature (LSWT) from 2001 to 2015, and to examine the most influencing factors of that variation. The temperature of most lakes in the dry climate zone and in the equatorial climatic zone varied from 17 to 31°C and from 23 to 27°C, respectively. LSWTs in the warm temperate and cold climatic zones were in the range of 20 to 27°C and −0.6 and 17°C, respectively. The average day time LSWT in the polar climate zone was −0.71°C in the summer. Lakes in high latitude and in the Tibetan Plateau displayed low LSWT, ranging from −11 to 26°C during the night time. Large spatial variations of diurnal temperature difference (DTD) were observed in lakes across Eurasia. However, variations in DTDs were small in lakes located in high latitude and in tropical rainforest regions. The shallow lakes showed a rapid response of LSWT to solar and atmospheric forcing, while in the large and deep lakes, that response was sluggish. Results of this study demonstrated the applicability of remote sensing and MODIS LST products to capture the spatial–temporal variability of LSWT across continental scales, in particular for the vast wilderness areas and protected environment in high latitude regions of the world. The approach can be used in future studies examining processes and factors controlling large scale variability of LSWT.  相似文献   
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