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1.
利用2004-2006年FY-2C卫星云图资料,统计了云顶亮温与焦作市降水量的关系;并根据相邻两张云图中云顶低亮温中心移动的距离和时间,确定云的移速。在此基础上,建立了层状云和积状云降水估算方程。经对2005-2006年估算结果统计,层状云有无降水预报准确率为80%;对4次积状云降水的估算结果为1次漏报、1次降水量级误差较大、2次预报正确,准确率达50%。  相似文献   
2.
一次高温天气过程分析   总被引:2,自引:0,他引:2  
利用高空和地面观测资料分析了2011年6月7-8日焦作地区高温期间的环流形势特征,并对涡度场和垂直速度场进行了诊断分析.结果表明:高空稳定的西北气流造成的下沉运动是形成此次高温的主要原因,大气的干燥程度也是影响温度升高的原因;高空图上河套地区强盛暖脊,地面上暖低压形势,高空较强的暖平流是本次高温天气出现的有利条件;高空到近地面层深厚的负涡度系统对应的反气旋所伴随的整层持续下沉气流产生的绝热增温和晴空区辐射增温是这次高温天气形成的重要因素.此外气流沿太行山山坡下滑所产生的下沉增温效应对高温的产生起到了增幅作用.  相似文献   
3.
小波和IHS变换结合实现ETM图像波段融合   总被引:2,自引:0,他引:2  
采用小波变换和IHS结合的方法实现了ETM多光谱波段和ETM全色波段的融合,并与传统的IHS融合的结果进行比较,结果表明小波和IHS变换相结合的方法优于IHS方法。  相似文献   
4.
The North China Craton (NCC) has been thinned from >200 km to <100 km in its eastern part. The ancient subcontinental lithospheric mantle (SCLM) has been replaced by the juvenile SCLM in the Meoszoic. During this period, the NCC was destructed as indicated by extensive magmatism in the Early Cretaceous. While there is a consensus on the thinning and destruction of cratonic lithosphere in North China, it has been hotly debated about the mechanism of cartonic destruction. This study attempts to provide a resolution to current debates in the view of Mesozoic mafic magmatism in North China. We made a compilation of geochemical data available for Mesozoic mafic igneous rocks in the NCC. The results indicate that these mafic igneous rocks can be categorized into two series, manifesting a dramatic change in the nature of mantle sources at ~121 Ma. Mafic igneous rocks emplaced at this age start to show both oceanic island basalts (OIB)-like trace element distribution patterns and depleted to weakly enriched Sr-Nd isotope compositions. In contrast, mafic igneous rocks emplaced before and after this age exhibit both island arc basalts (IAB)-like trace element distribution patterns and enriched Sr-Nd isotope compositions. This difference indicates a geochemical mutation in the SCLM of North China at ~121 Ma. Although mafic magmatism also took place in the Late Triassic, it was related to exhumation of the deeply subducted South China continental crust because the subduction of Paleo-Pacific slab was not operated at that time. Paleo-Pacific slab started to subduct beneath the eastern margin of Eruasian continent since the Jurrasic. The subducting slab and its overlying SCLM wedge were coupled in the Jurassic, and slab dehydration resulted in hydration and weakening of the cratonic mantle. The mantle sources of ancient IAB-like mafic igneous rocks are a kind of ultramafic metasomatites that were generated by reaction of the cratonic mantle wedge peridotite not only with aqueous solutions derived from dehydration of the subducting Paleo-Pacific oceanic crust in the Jurassic but also with hydrous melts derived from partial melting of the subducting South China continental crust in the Triassic. On the other hand, the mantle sources of juvenile OIB-like mafic igneous rocks are also a kind of ultramafic metasomatites that were generated by reaction of the asthenospheric mantle underneath the North China lithosphere with hydrous felsic melts derived from partial melting of the subducting Paleo-Pacific oceanic crust. The subducting Paleo-Pacific slab became rollback at ~144 Ma. Afterwards the SCLM base was heated by laterally filled asthenospheric mantle, leading to thinning of the hydrated and weakened cratonic mantle. There was extensive bimodal magmatism at 130 to 120 Ma, marking intensive destruction of the cratonic lithosphere. Not only the ultramafic metasomatites in the lower part of the cratonic mantle wedge underwent partial melting to produce mafic igneous rocks showing negative εNd(t) values, depletion in Nb and Ta but enrichment in Pb, but also the lower continent crust overlying the cratonic mantle wedge was heated for extensive felsic magmatism. At the same time, the rollback slab surface was heated by the laterally filled asthenospheric mantle, resulting in partial melting of the previously dehydrated rocks beyond rutile stability on the slab surface. This produce still hydrous felsic melts, which metasomatized the overlying asthenospheric mantle peridotite to generate the ultramafic metasomatites that show positive εNd(t) values, no depletion or even enrichment in Nb and Ta but depletion in Pb. Partial melting of such metasomatites started at ~121 Ma, giving rise to the mafic igneous rocks with juvenile OIB-like geochemical signatures. In this context, the age of ~121 Ma may terminate replacement of the ancient SCLM by the juvenile SCLM in North China. Paleo-Pacific slab was not subducted to the mantle transition zone in the Mesozoic as revealed by modern seismic tomography, and it was subducted at a low angle since the Jurassic, like the subduction of Nazca Plate beneath American continent. This flat subduction would not only chemically metasomatize the cratonic mantle but also physically erode the cratonic mantle. Therefore, the interaction between Paleo-Pacific slab and the cratonic mantle is the first-order geodynamic mechanism for the thinning and destruction of cratonic lithosphere in North China.  相似文献   
5.
Science China Earth Sciences - In order to better understand the role of post-collisional mafic magmatism at convergent plate boundaries in revealing the earth’s evolution, this paper has...  相似文献   
6.
杨阳  孙国超  赵子福 《地球科学》2021,46(6):1993-2015
对华北东南缘荆山花岗岩进行了锆石U-Pb定年、微量元素和Hf同位素分析,全岩主微量元素和Sr-Nd同位素分析.LA-ICP-MS锆石U-Pb定年结果表明,荆山花岗岩形成于晚侏罗世(160.9±0.8~161.6±1.5 Ma).残留锆石的U-Pb年龄主要为三叠纪和新元古代,分别与大别-苏鲁造山带超高压变火成岩的变质年龄和原岩年龄一致.这些花岗岩为钙碱性-高钾钙碱性,具有弧型的微量元素分布特征和富集的Sr-Nd-Hf同位素组成,即高的全岩(87Sr/86Sr)i比值(0.708 0~0.709 1),低的εNd(t)值(-15.6~-13.5)和锆石εHf(t)值(-23.1~-9.5),对应的两阶段Nd-Hf模式年龄主要为古元古代.这些锆石U-Pb同位素年代学和地球化学特征与大别-苏鲁造山带超高压变火成岩一致,表明它们之间存在成因联系.特别地,残留锆石新元古代和三叠纪U-Pb年龄是俯冲华南陆壳的标志性特征.因此,荆山花岗岩是俯冲华南陆壳部分熔融的产物,华南陆壳是三叠纪大陆碰撞过程中进入华北地壳之中的.这些花岗岩具有低的Rb含量、高的Sr和Ba含量,低的Rb/Sr比值以及低的全岩锆饱和温度和锆石Ti温度(~700℃),表明它们源于俯冲华南陆壳低温加水部分熔融,可能与侏罗纪古太平洋板块俯冲于中国东部之下有关.   相似文献   
7.
在统计我国T213、日本及德国数值预报产品对焦作6-8月降水预报状况的基础上,采用多元决策加权法将三者进行集成,对比分析集成预报与单种数值产品在2008年汛期的预报评分,结果显示:总体状况而言, 集成预报好于单种产品做出的预报.  相似文献   
8.
中国东南部花岗岩的碳含量和同位素比值   总被引:1,自引:0,他引:1  
本文应用EA-MS连续技术(将元素分析仪(EA)与气体质谱仪(MS)连接起来,进行硅酸盐岩石微量碳的含量和同位素比值测定)首次测定了中国东南部花岗岩及其部分磷灰石的全碳含量和同位素组成,结果发现,这些花岗岩的碳含量和同位素组成分布较宽(碳含量为0.04%~0.79%,δ^13C值为-7.5‰~-37.0‰)。磷灰石与全岩的δ^13C呈正相关关系,指示自花岗岩浆上升到结晶以来未受到同化混染或热液蚀变  相似文献   
9.
苏州A型花岗岩氢氧同位素地球化学研究   总被引:8,自引:2,他引:6  
魏春生  郑永飞 《岩石学报》1999,15(2):224-236
对苏州A型花岗岩氢氧同位素组成进行了系统深入的研究,其全岩δ18O值为+3.5‰~+9.2‰,全岩δD值在-81‰~-59‰之间变化。主要造岩矿物对保持氧同位素平衡分馏的样品,其D亏损主要受单阶段岩浆去气机理的制约。部分全岩样品表现出不同程度D-18O同步亏损,这种亏损要受岩浆期后固相线下与外来渗透大气降水之间进行同位素交换机理的制约。石英δ18O值基本正常,石英与碱性长石之间氧同位素不平衡分馏特征表明,苏州A型花岗岩整体上起源于亏损18O源区物质通过地球动力学再循环产生低δ18O岩浆的可能性不大。根据氢氧同位素实测值和理论模型计算结果,推测苏州A型花岗岩浆δD和δ18O初始值分别为-50±5‰和7.5±1.0‰,这排除了岩浆起源于曾经历过化学风化循环的地壳上部岩石的可能性。  相似文献   
10.
The water contents of minerals and whole-rock in mantle-derived xenoliths from eastern China exhibit large variations and are generally lower than those from other on- and off-craton lithotectonic units. Nevertheless, the water contents of mineral and whole-rock in Junan peridotite xenoliths, which sourced from the juvenile lithospheric mantle, are generally higher than those elsewhere in eastern China. This suggests that the initial water content of juvenile lithospheric mantle is not low. There is no obvious correlation between the water contents and Mg# values of minerals in the mantle xenoliths and no occurrence of diffusion profile in pyroxene, suggesting no relationship between the low water content of mantle xenolith and the diffusion loss of water during xenolith ascent with host basaltic magmas. If the subcontinental lithospheric mantle (SCLM) base is heated by the asthenospheric mantle, the diffusion loss of water is expected to occur. On the other hand, extraction of basaltic melts from the SCLM is a more efficient mechanism to reduce the water content of xenoliths. The primary melts of Mesozoic and Cenozoic basalts in eastern China have water contents, as calculated from the water contents of phenocrysts, higher than those of normal mid-ocean ridge basalts (MORB). The Mesozoic basalts exhibit similar water contents to those of island arc basalts, whereas the Cenozoic basalts exhibit comparable water contents to oceanic island basalts and backarc basin basalts with some of them resembling island arc basalts. These observations suggest the water enrichment in the mantle source of continental basalts due to metasomatism by aqueous fluids and hydrous melts derived from dehydration and melting of deeply subducted crust. Mantle-derived megacrysts, minerals in xenoliths and phenocrysts in basalts from eastern China also exhibit largely variable hydrogen isotope compositions, indicating a large isotopic heterogeneity for the Cenozoic SCLM in eastern China. The water content that is higher than that of depleted MORB mantle and the hydrogen isotope composition that is deviated from that of depleted MORB mantle suggest that the Cenozoic continental lithospheric mantle suffered the metasomatism by hydrous melts derived from partial melting of the subducted Pacific slab below eastern China continent. The metasomatism would lead to the increase of water content in the SCLM base and then to the decrease of its viscosity. As a consequence, the SCLM base would be weakened and thus susceptible to tectonic erosion and delamination. As such, the crust-mantle interaction in oceanic subduction channel is the major cause for thinning of the craton lithosphere in North China.  相似文献   
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