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1.
2000年中国地磁场及其长期变化冠谐分析   总被引:10,自引:5,他引:10       下载免费PDF全文
根据1998~2000年完成的118个地磁测点 和39个地磁台的三分量绝对测量资料以及IGRF2000,计算2000年中国地磁场冠谐模型(截断 阶数为8),以及2000~2005年中国地磁长期变化冠谐模型(截断阶数为6). 球冠极位于36 °N,104°E,球冠半角为30°. 中国地磁场冠谐模型能更好地表示我国地磁场的时空变化 ,地磁场模型的均方偏差为:104.4 nT(X分量),103.3 nT(Y分量),123.9 nT(Z分量). 依据地磁场及其长期变化的冠谐模型,分别绘制2000年中国地磁图(F,X,Y,Z)和异常磁场图(ΔF,ΔX,ΔY,ΔZ),以及2000~2005年地磁长期变化图(F,X,Y,Z). 指出改善地磁场模型边界效应 的途径,并对如何布设地磁复测点提出了建议.  相似文献   

2.
1936年中国地磁参考场的冠谐模型   总被引:3,自引:1,他引:3       下载免费PDF全文
根据1936年中国东部和中部地区的地磁测量资料,以及国际地磁参考场DGRF1935和DGRF1940,用冠谐分析方法计算1936年中国地磁参考场(CGRF)的冠谐模型. 冠谐模型的截断阶数为8,球冠极位于36°N和104°E,球冠半角为30°.CGRF1936比相应的国际地磁参考场能更好地表示中国地磁场的分布,本文计算的冠谐模型的均方偏差分别为104.9 nT(X分量),84.8 nT(Y分量)和121.1 nT(Z分量). 根据地磁场的冠谐模型,绘制1936年中国地磁图(X,Y,Z,F)和异常磁场图(ΔX,ΔY,ΔZ,ΔF).  相似文献   

3.
东亚地磁场模型的计算与分析   总被引:4,自引:0,他引:4       下载免费PDF全文
根据中国、前苏联和蒙古等地区的地磁复测点和地磁台站资料,使用泰勒多项式方法和冠谐分析方法,计算东亚地磁场(X,Y,Z)的泰勒多项式模型和冠谐模型,以及东亚剩余磁场(ΔX,ΔY,ΔZ)的冠谐模型和泰勒多项式模型,并绘制了相应的理论地磁图. 泰勒多项式模型的展开原点位于45°N和100°E,截断阶数为7.地磁场泰勒多项式模型的均方偏差为:X分量是133.0nT,Y分量是107.4nT,Z分量是14.0nT. 球冠极点位于45°N和100°E,球冠半角为42°,冠谐模型的截断阶数为10. 剩余磁场冠谐模型的均方偏差分别为131.2nT(ΔX),112.6nT(ΔY)和13.7nT(ΔZ). 对比分析了上述两种模型. 提出了确定区域模型截断阶数的判据.  相似文献   

4.
京津冀地区地磁场球冠谐分析   总被引:18,自引:7,他引:11       下载免费PDF全文
2002年在京津冀地区进行了45个测点的地磁三分量测量,对测量资料进行通化处理,通化时间为2002年5月5日16~18时(世界时). 通化后的观测均方差分别优于1.5nT(地磁场总强度F),0.5′(磁偏角D和磁倾角I). 将国际参考地磁场(IGRF2000)作为地磁正常场,建立了京津冀地区地磁异常场的球冠谐模型(BTHASCH). 球冠极的空间位置坐标为39.5°N和117.0°E,球冠半角为4°. 在模型计算过程中,球冠谐函数的截断阶数分别取为1~10. 经综合比较, 最终采用的截断阶数为5. 建立了京津冀地区参考地磁场的球冠谐模型(BTHGRF).根据模型,绘制了京津冀地区地磁异常场图(ΔX、ΔY、ΔZ、ΔF、ΔD、ΔI)和京津冀地区地磁图(X、Y、Z、F、D、I).  相似文献   

5.
1950~1990年中国地磁剩余场冠谐分析   总被引:2,自引:0,他引:2       下载免费PDF全文
根据中国1950、1960、1970、1980年和1990年地磁三分量绝对测量资料,使用球冠谐和分析方法,分别计算1950~1990年各个年代中国地磁剩余场冠谐模型. 球冠极点位于36°N和104°E,球冠半角为30°,冠谐模型的截断阶数为8. 地磁剩余场冠谐模型的均方偏差分别为:对于X分量,1950年为93.1 nT,1960年为128.9 nT,1970年为107.2 nT,1980年为107.6 nT,1990年为95.2 nT;对于Y分量,1950~1990年依次为74.8 nT,98.1 nT,89.2 nT,89.9 nT和84.0 nT;对于Z分量,分别为122.2 nT(1950年),135.0 nT(1960年),137.7 nT(1970年),110.1 nT(1980年)和107.5 nT(1990年). 根据中国地磁剩余场冠谐模型和全球地磁场DGRF模型,得到中国地磁场的冠谐模型,并对冠谐模型的边界效应进行了分析和讨论.  相似文献   

6.
中国地区地磁场的球冠谐和分析   总被引:12,自引:11,他引:12  
本文根据中国及其邻近地区的地磁三分量绝对测量资料,利用球冠谐和分析方法,计算出中国地区地磁剩余场的冠谐模型,地磁剩余场△X,△Y,△Z的模型均方根偏差分别为106.9,89.7,137.6 nT.提出由地磁场的国际参考地磁场和地磁剩余场的冠谐模型组成的联合模型作为中国参考地磁场的模型,它能较好地表示中国地磁场的分布.以地磁场的联合模型为正常背景场,计算出三分量磁异常的冠谐模型,并分析了磁异常的基本特征,它将为深入研究中国岩石层结构提供新证据.  相似文献   

7.
地磁正常场的选取与地磁异常场的计算   总被引:34,自引:8,他引:26       下载免费PDF全文
根据2003年中国地磁观测数据(包括135年地磁测点和35个地磁台)以及我国邻近地区38个IGRF计算点的地磁数据,计算中国地磁异常场的分布。选取两种地磁场模型作为地磁正常场,一是国际参考地磁场的球谐模型,二是中国地磁场泰勒多项式模型。根据各个测点的地磁异常值(观测值减去模型计算值),用球冠谐分析方法计算地磁异常场的球冠谐模型,并绘制2003年中国地磁异常(△D,△I,△F,△X,△Y,△Z)。分析和讨论了中国地磁异常场。  相似文献   

8.
基于CHAMP卫星的矢量磁测数据,结合最新的IGRF12模型,并假设所有CHAMP卫星的网格测点位于同一高度(307.69km),基于498个测点,建立了2010.0年中国地区要素X、Y、Z和总强度F的卫星磁异常球冠谐(SCH2010)模型,建模前利用CM4模型移除了外源场。模型极点位于36°N和104°E,球冠半角为30°。通过比较△X、△Y、△Z以及X、Y、Z的均方偏差(RMS)的数值变化,确定截断阶数Kmax=9为合适的截断阶数。结合IGRF12所建立的卫星高度的中国地磁参考场(CGRF2010)模型与CM4模型具有较好的一致性,分析比较了基于SCH2010模型与类似磁异常模型的地面磁异常分布,发现各要素磁异常的强度与分布高度一致。通过比较F在不同高度处的磁场分布,发现SCH2010模型在不同高度的估算都符合地磁场的变化规律。比较发现SCH2010与CM4模型的空间变化率一致性较好。所建模型相较于其它区域拟合模型而言,可反映地磁场的更多细节,但球冠谐模型本身及建模过程为两个误差源。  相似文献   

9.
首先对地面台站以及CHAMP卫星的矢量磁测数据进行预处理,结合12个子午工程台站最新的磁测数据,并利用第十二代国际地磁参考场模型(IGRF12)对不同数据归算至统一时间点,再结合第四代地磁场综合模型(CM4)计算并移除主磁场、磁层磁场、电离层磁场、感应磁场及较为微弱的环形场,最后通过球冠谐(SCH)模型联合建立了中国地区岩石圈磁场(地磁要素X、Y、Z和总强度F)的球冠谐模型(SCH2000),结合IGRF12得到了中国地磁模型(CGRF2000).建模同时考虑了测点数据海拔高度的影响,并讨论了截断阶数的选取以及边界效应的控制问题.通过比较均方偏差(RMS),认为8阶SCH2000模型可较好地反映中国地区岩石圈磁场,其分布与SCH1936、CM4以及Taylor多项式模型具有一定的相似性.从位置和强度来看,SCH2000模型所反映的岩石圈磁场更为准确,而与CM4存在一定差异,除了测点不同,截断阶数也是原因之一.通过验证,SCH2000模型各要素随高度的变化与CM4模型较为一致,所建立的CGRF2000与IGRF12模型的分布也较为相似.  相似文献   

10.
欧洲及其邻区MAGSAT卫星磁异常冠谐模型   总被引:1,自引:1,他引:0       下载免费PDF全文
通过对欧洲及其邻近地区 MAGSAT 卫星黎明资料进行了处理,得到1°×1°卫星磁异常网格值。本文使用冠谐分析方法,计算该地区卫星矢量磁异常(ΔX,ΔY,ΔZ)冠谐模型。球冠极点位于33°N和26°E,球冠半角为40°.冠谐模型的截断指数为18。根据卫星磁异常冠谐模型和地磁场球谐模型 DGRF1980,计算卫星总强度磁异常(ΔF)的冠谐一球谐模型。根据卫星磁异常的理论模型,计算并绘制不同高度(300,400,500km)的理论卫星磁异常图。对冠谐模型和大磁异常进行了分析和讨论。  相似文献   

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12.
ONE D AND TWO D COMBINED MODEL FOR ESTUARY SEDIMENTATION   总被引:3,自引:0,他引:3  
1INTRODUCTIONThefluvialprocesinanestuaryiscomplicatedundertheactionofrunof,tidalflow,windinducedcurentandwaveetc.Especialy,...  相似文献   

13.
A new method for the 2D inversion of induced polarization (IP) data in the time domain has been developed. The entire IP transients were observed and inverted into 2D Cole-Cole earth models, including resistivity, chargeability, relaxation time and the frequency constant. Firstly, a modified 1D time-domain electromagnetic algorithm was used to calculate the response of a layered polarizable ground. The transient signals were then inverted using the Marquardt method to derive the Cole-Cole parameters of each layer. However, model calculations showed that the EM effects could be neglected for the time range (>1 ms) and for the transmitter–receiver distances (<50 m) used in this study. Therefore, the induction effects were not considered for the solution of the 2D inverse problem and a DC solution was applied. An approximative forward algorithm was introduced in order to calculate the IP transients directly in the time domain and in order to speed up the inverse procedure. The approximation is highly accurate, and this is demonstrated by comparing the approximations with their exact solutions up to 3D. The inverse algorithm presented consists of two steps. The transient voltages of an array data set were inverted separately into a two-dimensional resistivity model for each time channel. The time-dependent resistivity of each cell was then interpreted as the response of a homogeneous half-space. In the 2D inversion algorithm, a 3D DC algorithm was used as a forward operator. The method only requires a standard 2D DC inversion and a homogenous half-space Cole-Cole inversion. The developed algorithm has been successfully applied to synthetic data sets and to a field data set obtained from a waste site situated close to Düren in Germany.  相似文献   

14.
In order to make 3D prestack depth migration feasible on modern computers it is necessary to use a target-oriented migration scheme. By limiting the output of the migration to a specific depth interval (target zone), the efficiency of the scheme is improved considerably. The first step in such a target-oriented approach is redatuming of the shot records at the surface to the upper boundary of the target zone. For this purpose, efficient non-recursive wavefield extrapolation operators should be generated. We propose a ray tracing method or the Gaussian beam method. With both methods operators can be efficiently generated for any irregular shooting geometry at the surface. As expected, the amplitude behaviour of the Gaussian beam method is better than that of the ray tracing based operators. The redatuming algorithm is performed per shot record, which makes the data handling very efficient. From the shot records at the surface‘genuine zero-offset data’are generated at the upper boundary of the target zone. Particularly in situations with a complicated overburden, the quality of target-oriented zero-offset data is much better than can be reached with a CMP stacking method at the surface. The target-oriented zero-offset data can be used as input to a full 3D zero-offset depth migration scheme, in order to obtain a depth section of the target zone.  相似文献   

15.
2D and 3D potential-field upward continuation using splines   总被引:1,自引:0,他引:1  
The dominant upward‐continuation technique used in the potential‐field geophysics industry is the fast Fourier transform (FFT) technique. However, the spline‐based upward‐continuation technique presented in this paper has some advantages over the FFT technique. The spline technique can be used to carry out level‐to‐uneven surface 2D and 3D potential‐field upward continuation. An example of level‐to‐uneven surface upward continuation of 3D magnetic data using the spline technique is shown, and it is evident that the continued anomalies are very close to the theoretical values. The spacing can be irregular. Synthetic examples using the spline technique to continue noise‐contaminated gravity and magnetic data upward to an altitude of 15 km on irregular grids are shown. Gaussian noise with a zero mean and a standard deviation of 1% does not cause much error and can readily be tolerated. Through comparison with the FFT technique, it is found that for low‐altitude gravity and magnetic upward continuation, both the FFT technique and the spline technique are suitable; for high‐altitude upward continuation, the FFT technique is inaccurate, whereas the spline technique works very well. Also, upward continuation by the spline technique has a smaller edge effect than upward continuation by the FFT technique. The spline‐based upward continuation technique works fairly well even when the periphery of a grid is not quiet: it is rather robust in general. A real example shows that the spline technique can be employed to perform upward continuation of total‐field magnetic data and to de‐emphasize near‐surface noise.  相似文献   

16.
D) REVIEW     
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17.
D) REVIEW     
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19.
A two and a half dimensional(2.5 D) multidomain indirect boundary element method(IBEM) is developed to study the wave scattering of obliquely incident P-, SVand SH-waves by a hill-valley staggered topography in a multi-layered half-space. The IBEM algorithm includes using2.5 D full-space and half-space Green's functions to construct scattered fields in decomposed closed and opened half-space regions, respectively, and using the dynamic stiffness method to solve the free fields. All regions are finally integrated by introducing the compatibility conditions to obtain the total wave fields. The proposed 2.5 D IBEM has the flexibility in dealing with complex boundaries by directly applying the fictitious loads on the regions' boundaries, with a less storage requirement compared to the full 3 D models. Besides, by combining the specific advantages of the two kinds of Green's functions, the method is well suitable for handling coupled topographies with high accuracy. The method is validated by comparison with published results for a single valley as well as a single hill topography. The effects of height-to-width ratio of hill and layering on dynamic responses are further parametrically investigated by numerical implementations in frequency domain. Results show that the interaction between valley and hills can lead to a more significant amplification within the valley region, and dynamic responses are deeply influenced by the height-towidth of hill, simultaneously depending on incident angle and frequency. Besides, the site effects become more complex when the stratification feature is taken into account.  相似文献   

20.
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