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931.
As gravity field,magnetic field,electric field and seismic wave field are all physical fields,their object function,reverse function and compound function are certainly infinite contiuously differentiable func-tions which can be expanded into Taylor (Fourier) series within domain of definition and be further reduced in-to solving stochastic distribution function of series and statistic inference of optimal approximation,This is the basis of combined gravity-magnetic-electric-seismic inversion built on the basis of separation of field and source gravity-magnetic difference-value(D-value)trend surface,taking distribution-independent fault sys-tem as its unit,depths of seismic and electric interfaces of interests as its corresponding bivariate compound re-verse function of gravity-magnetic anomalies and using high order polynomial(high order trigonometric func-tion)approximating to its series distribution,The difference from current dominant inversion techniques is that,first,it does not respectively create gravity-seismic,magnetic-seismic deterministic inversion model from theoretical model,but combines gravity-magnetic-electric-seismic stochastic inversion model from stochastic model;second,after the concept of equivalent geological body being introduced,using feature of independent variable of gravity-magnetic field functions,taking density and susceptibility related to gravity-magnetic func-tion as default parameters of model,the deterministic model is established owing to better solution to the con-tradictioc of difficulty in identifying strata and less test analytical data for density and susceptibility in newly explored area;third,under assumption of independent parent distribution,a real modeling by strata,the prob-lem of difficult plane closure arising in profile modeling is avoided,This technology has richer and more detailed fault and strata information than sparse pattern seismic data in newly explored area,successfully inverses and plots structural map of Indosinian discontinuty in Hefei basin with combined gravity-magnetic-electric-seismic inversion,With development of high precision gravity-magnetic and overall geophysical technology,it is certain for introducing new methods of stochastic modeling and computational intelligence and promoting the develop-ment of combined gravity-magnetic-electric-seismic inversion to open a new substantial and promoting the develop-ment of combined gravity-magnetic-electric-seismic inversion to open a new substantial path.  相似文献   
932.
The reliability of phytolith assemblage analysis for characterizing Mediterranean vegetation is investigated in this study. Phytolith assemblages are extracted from modern and buried Holocene soils from the middle Rhône valley (France). The relation between modern phytolith assemblages and the surrounding vegetation, as well as between fossil assemblages and contemporaneous vegetation, already reconstructed through other proxies, is discussed. We demonstrate that the main northwestern Mediterranean biomes are well distinguished by soil phytolith assemblage analysis. In particular, the density of pine and nonconiferous trees (densities expressed relatively to the grass cover) and the overall degree of opening of the vegetation appear well recorded by three phytolith indexes. North Mediterranean vegetation changes during the Holocene period, mainly tree line shifts, pine wood development and deforestation are poorly documented, due to the scarcity of proxy-preserving sites. Phytolith assemblage analysis of soils, buried soils, and sediments appears to be a promising technique to fill this gap.  相似文献   
933.
Rivers, chemical weathering and Earth's climate   总被引:4,自引:0,他引:4  
We detail the results of recent studies describing and quantifying the large-scale chemical weathering of the main types of continental silicate rocks: granites and basalts. These studies aim at establishing chemical weathering laws for these two lithologies, describing the dependence of chemical weathering on environmental parameters, such as climate and mechanical erosion. As shown within this contribution, such mathematical laws are of primary importance for numerical models calculating the evolution of the partial pressure of atmospheric CO2 and the Earth climate at geological timescales. The major results can be summarized as follow: (1) weathering of continental basaltic lithologies accounts for about 30% of the total consumption of atmospheric CO2 through weathering of continental silicate rocks. This is related to their high weatherability (about eight times greater than the granite weatherability); (2) a simple weathering law has been established for basaltic lithologies, giving the consumption of atmospheric CO2 as a function of regional continental runoff, and mean annual regional temperature; (3) no such simple weathering law can be proposed for granitic lithologies, since the effect of temperature can only be identified for regions displaying high continental runoff; (4) a general law relating mechanical erosion and chemical weathering has been validated on small and large catchments. The consequences of these major advances on the climatic evolution of the Earth are discussed. Particularly, the impacts of the onset of the Deccan trapps and the Himalayan orogeny on the global carbon cycle are reinvestigated. To cite this article: B. Dupré et al., C. R. Geoscience 335 (2003).  相似文献   
934.
The basic concepts of spectral and multiscale selective reconstruction of (geophysically relevant) vector fields on the sphere from error-affected data is outlined in detail. The reconstruction mechanism is formulated under the assumption that spectral as well as multiscale approximation is well-representable in terms of only a certain number of expansion coefficients at the various resolution levels. It is shown that spectral denoising by means of orthogonal expansions in terms of vector spherical harmonics reflects global a priori information of the noise (e.g., in form of a covariance tensor field), whereas multiscale signal-to-noise thresholding can be performed under locally dependent noise information within a multiresolution analysis in terms of spherical vector wavelets. An application of the multiscale formalism to Earth's magnetic field determination is presented.  相似文献   
935.
廖洞贤  孙岚 《大气科学》2003,27(2):203-211
分析了气压分离和不分离,在几种不同的层结情况下,垂直气压梯度的截断误差.结果表明:基本场取法不当,会引起巨大的截断误差,甚至和不分离时相当;反之,则较小.根据计算,提出了一种取基本场的方法,在一定条件下,可以使气压偏差的垂直梯度的截断误差比不分离时的相应误差小一个量级,从而,可以取较小的垂直分辨率.  相似文献   
936.
严邦良 《大气科学》2003,27(3):354-368
建立一个中等复杂程度的海-气耦合模式研究东、西边界反射,纬向平流项-u′(δ)(T+T′)/(δ)x在ENSO循环位相转换中的作用及东、西边界反射与纬向异常流(u′) 符号改变的关系.结果得到:u′超前Nio3区SSTA位相转变的原因是东、西边界反射造成的.Sverdrup 平衡时所产生的地转流(ur)与东、西边界反射所产生的地转流(ur)的方向在大部分时间里是相反的,同时ur与风应力强迫之间大约有9个月的滞后时间(Kelvin波从180°E出发经东边界反射产生的Rossby波到达180°E时间).在模式ENSO事件消亡过程中的某一时刻以后,边界反射产生的调整过程变为主要过程,u′主要由ur来决定,这样就造成了u′的反向先于Nio区SSTA的反向.它实际上是海洋的调整过程与风应力强迫之间滞后关系的一种反映.敏感性数值试验表明,取消东边界反射,耦合模式能够模拟ENSO循环,但其周期比控制试验的周期短一年(3年).取消-u′(δ)(T+T′)/(δ)x,耦合模式能够模拟ENSO循环,但其周期比控制试验的周期长2年(6年).  相似文献   
937.
黄河流域夏季分区面雨量预报研究   总被引:6,自引:0,他引:6  
介绍黄河流域分区夏季面雨量预报的研究成果,精心挑选51个具有较好代表性的测站对黄河流域夏季降水的时空演变特征进行分析,使用K均值动态聚类对黄河流域的夏季降水进行了客观分区,并计算出各流域夏季面雨量。通过对黄河流域夏季雨量与500hPa环流,海温、OLR、中纬阻高,高原积雪,欧亚积雪等重要影响因子的关系分析,结合黄河流域夏季面雨量年降和年代际演变特征的分析,研究出黄河流域分区夏季面雨量预测的基本方法和模型,并通过客观化的数学方法建立黄河流域夏季面雨量预测系统,预测系统十年回报的结果显示出具有较的预测技巧。  相似文献   
938.
2002年7~8月海河流域面雨量预报的误差分析   总被引:2,自引:0,他引:2  
王新龙  胡欣  尤凤春 《气象》2003,29(6):41-45
对天津市气象台和河北省气象台在2002年7—8月的海河流域面雨量24h、48h预报进行了误差对比分析,列举了几种预报误差,并利用模糊数学中的综合评判法,计算了它们的模糊评分。结果表明:海河流域的面雨量预报有一定的可信度,把其作为水文模式的初值,有较高的利用价值;对于各气象台各自辖区内的预报,范围越小,预报越准确;在对面雨量预报效果的评估上,80%(或80)这一数值是客观、可信的。  相似文献   
939.
华北夏季旱涝的环流特征分析   总被引:9,自引:5,他引:9       下载免费PDF全文
本文运用月降水量、500hPa、100hPa月平均高度场和海平面气压场,在对50a华北夏季旱涝等级重新评定的基础上,分析了与华北夏季旱涝年对应的环流异常特征。结果表明华北旱涝年,对应整个北半球上各层都存在显著的环流异常变化。旱年500hPa环流异常使得极涡偏心,相应乌拉尔山和北美的气候槽偏强;中纬度位于华北的平均槽东移到朝鲜日本一带,而西部脊东移控制华北;低纬西太平洋副高偏东,印度低压槽偏弱。涝年则相反。在海平面气压场上,除了在与高层对应的显著异常区有相应变化外,在我国东部大陆大部及赤道中东太平洋上也有一显著的异常区,证实夏季风和KNSO与华北旱涝存在密切的联系。在100hPa高度场旱涝年环流差异主要表现为南亚高压南北界的位置变化。  相似文献   
940.
华北汛期降水异常与100hPa高度场异常的关系   总被引:4,自引:1,他引:4       下载免费PDF全文
利用华北17站1951~2000年的逐月降水资料,与前期的100 hPa高度场(1958~1997年)求相关,找到了100 hPa高度场影响华北地区汛期降水的关键影响区为25°~35°N,85°~105°E,对应的关键影响时段为前一年3~5月.然后用SVD方法证实了前一年春季正是与华北汛期降水相关最显著的时段;而所选关键区正是处于一种范围更大的100 hPa高度场空间分布型的关键部位,而华北地区是关键区影响中国东部降水的最显著的区域之一.  相似文献   
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