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1.
��Դң�������ڶ��ѹ�������е�Ӧ��   总被引:3,自引:0,他引:3  
????ETM+???SPOT5????DEM????????????????????????????????о???????????????????????????????????????飬????????????????????????????????????ETM+???????????????????????????????SPOT5????????????????????????????????DEM??????????????????????????ò/???ò????????????????  相似文献   

2.
??????????λ?????????????????λ????????????????????????????????????????????GPS????α??????????????????????????GPS???????????λ???????????ü?????????????????????????????CSCORS???????????ε?λ????????????????β??λ??????????????仯????????????λ???????????????????GPS????????????ò????????ò????λ???????  相似文献   

3.
����DEM�Ŀ�˹�������ò���͵�ʶ��   总被引:1,自引:0,他引:1  
????????ASTER???????RS??GIS???????DEM???????DEM?????TM????CBERS????????????29???????????????????ò?????????5????????????24?????????Spss??Matlab?????????????????????????????????????????ò????????????????????????????????????飬?ó????????Ч????  相似文献   

4.
??????????????????????????????SMR?????????????????????SMR?????????????????????λ?ò??????????????????????????????????????  相似文献   

5.
???GRACE?????л??????????????????????????????????????????ò?????????????????????????????????????????????????????????????????????????????????????????????????????Ч???????  相似文献   

6.
????Ω???????????????????????????????ò???????????????????????????????? ???????????????????????Ω?????????????????????????????????????????????????????????????÷????????????????????????????з??????????  相似文献   

7.
???????????????SVM?????????????????·?????????GPS???????????????ò????????????????????????????????????????????????Ч????  相似文献   

8.
????????????????д????????ò???????????????????????????ε??????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????????硢??????????????????Ч??????????????????????????????????????????С??  相似文献   

9.
����ˮ׼�����е������쳣����   总被引:2,自引:0,他引:2  
????????????????????????о???????????????????????????????????????????????????????????????????????????λ????????????????????????????????ò??????????????????????????ж??????????,?????????????????????λ??????????й??????????λ????????????????????????????????????????  相似文献   

10.
??????????????????????????????????ò????????г?????м?????????о???????????????????г?????17~19??????????????????????????????????????????????????  相似文献   

11.
????????ò?????????????????????????????,?????????????жι?????Ρ??????????????????????????????????????????,?????????;????????????????????????????????????????0.64~0.85 mma -1;???????????????,??????????????????????;??????????????С?????????????????????,????????????????й???????????  相似文献   

12.
On the basis of field survey, microscope sighting, TL dating and scanning electron microscope analysis, the characteristics of Quaternary deposits near Songjianghe Town on the west slope of Changbai Mountain are analyzed and described. There were two phases of volcanism during Mid-Late Quaternary. One occurred before 15.22 × 104 aB.P. and the other happened between 14.27 × 104 aB.P. and 1.41 × 104 aB.P. Volcanism is a landform-making process which makes the rough relief in the studied area become higher and higher. Flow water is a main erosion agency and it cuts into the basalts making river valleys. The Quaternary fluvial deposits distributed on terraces first come from the weathered debris of basement rocks, then they are transported and deposited by flow water. After 1.41 × 104 aB.P, the river water quickly cuts into the newly formed basalts making a deep valley. Volcanism in the studied area is a main landform-making event in Mid-Late Quaternary.  相似文献   

13.
????????-????????жι????ò???????????????????飬???????????????????????????????????????о????????????????棬?????????-????????жι?????λ????????????????????-???????ж???????????????и??????Ъ??????????????м???????,??????????????,??????????????????????ж??????????λ???2~3 km???????????????????????????????γ?????????棻?????????????????NE-NEE???????????????????????????????????????  相似文献   

14.
��ˮ�Ӷ��Ѵ��ֽ������о�   总被引:4,自引:0,他引:4  
?????????????????????α????????????????????????????????????????????? ?????????????????????????λ????????????????????????????????????α?????? ????????????????????????????????????ж???????????????????????????????????????????????????????????????????????С??????????????????????????????  相似文献   

15.
通过遥感解译、现场地质地貌调查,获得了房县盆地内及控盆边界断裂活动、河流阶地、夷平面等基础资料,并在此基础上讨论了盆地新构造运动特征。综合分析认为,盆地内断裂早第四纪有一定的活动,晚第四纪以来未见明显活动迹象;控盆断裂第四纪以来有过活动,晚第四纪活动稍强,活动性质以正断为主,表现为隆起背景下的伸展构造环境;盆地新构造活动的显著特征表现为南北差异隆升,新生代地层整体往南倾斜。  相似文献   

16.
通过卫星象片解释、实地调查测量和查阅历史文献,本文较全面地研究了渭河盆地的水系及其所反映的现代构造运动特征。水系平面组合形态、渭河河型、水系转折及冲沟错位、河流密度、渭河河床的迁移、历史水涝灾害都一致地反映本区现代构造运动继承了第四纪以来的特点。水系历史演变又表明现代构造运动具有周期性。据水系错位和河流流向的统计分析确定本区现代构造应力场主压应力方向为N50°~60°E。本文最后还讨论了根据水系研究现代构造运动的意义以及应注意的问题。  相似文献   

17.
基于负位错模型,结合粒子群算法反演龙门山中央断裂段的三维滑动速率。反演结果表明,龙门山断裂带的现今构造运动整体而言为右旋逆冲断层,滑动速率较小,其运动特征具有显著的分段性。断裂带南段以逆冲为主,兼有左旋特征;在向北延展过程中逐渐转化为右旋走滑,且走滑分量逐渐加大;龙门山断裂带南北两端具有挤压特征,其中段显示一定的拉张。由此推断,龙门山断裂带现今构造活动,在青藏块体整体移动的影响下,还与其区域应力场和内部地壳结构有关。基于负位错模型,结合粒子群算法反演龙门山中央断裂段的三维滑动速率。反演结果表明,龙门山断裂带的现今构造运动整体而言为右旋逆冲断层,滑动速率较小,其运动特征具有显著的分段性。断裂带南段以逆冲为主,兼有左旋特征;在向北延展过程中逐渐转化为右旋走滑,且走滑分量逐渐加大;龙门山断裂带南北两端具有挤压特征,其中段显示一定的拉张。由此推断,龙门山断裂带现今构造活动,在青藏块体整体移动的影响下,还与其区域应力场和内部地壳结构有关。  相似文献   

18.
通过野外地质调查,结合地球物理探测手段,研究两郧断裂郧县盆地段地质与地球物理特征;参照两郧断裂带多个位置采集断层物质的SEM、TL测试成果,并结合本次对断层上断点沉积物OSL测年数据,对两郧断裂该段第四纪活动性进行分析。研究结果表明,两郧断裂在郧县盆地段埋深相对较深;断裂特征主要为逆断层,部分分支断裂显示为正断性质;断裂带最新活动时代为中更新世晚期-晚更新世早期。  相似文献   

19.
According to well logs, core, seismic and other geological data, the authors studied the tectonic evolution stages, trap formation stages, fault and fracture development in the Bashituo area, and furthermore, analyzed the time of hydrocarbon accumulation, hydrocarbon migration pathways and related controversial issues in the study area. It is believed that the tectonic evolution in the study area can be divided into three stages, namely Late Hercynian, the Early Himalayan and the Late Himalayan. In the Late Hercynian, tectonic movement led to folding and faulting, resulting in the embryonic form of anticlinal traps. In the Early Himalayan, affected by both tectonic movement and transformation, deep faults reactivated and cut through the Lower Tertiary strata. After the Early Himalayan tectonic movement, faulting stopped and no vertical migration pathway was available. Then hydrocarbon migrated laterally along the sand bodies in the Bachu Formation and accumulated in the Carboniferous reservoirs. However, the Carboniferous accumulation was formed late, and the tectonic movement was weak at the Late Himalayan, and faults were underdeveloped, so the reservoirs in the deep Bachu Formation were not disturbed.  相似文献   

20.
通过对老灌河河流阶地水平错断幅度和垂直错断幅度的测量 ,证实自晚更新世中期以来黑沟大断裂的构造活动十分强烈 ,主要表现为水平方向上的大规模左旋走滑活动 ,在垂直方向上的活动相对来说比较微弱。不管是水平方向还是垂直方向的活动 ,都表现有加速的趋势。  相似文献   

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