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1)  Tectono thermal evolution
构造-热演化
2)  tectono-thermal evolution
构造-热演化
1.
The tectono-thermal evolution since Triassic for the northeastern Sichuan Basin was modelled by using combined vitrinite reflectance and apatite and zircon(U-Th)/He dating methods.
利用镜质组反射率和磷灰石与锆石的(U-Th)/He年龄一起模拟了川东北地区三叠纪以来的构造-热演化特征。
2.
New multi-disciplinary study indicates that the tectono-thermal evolution a.
根据新近多学科研究成果,综合揭示出胶辽吉造山带古元古代的构造-热演化和深部地质作用过程如下:早期底侵可能与深部地幔柱相关,发生于2。
3)  tectonic-thermal evolution
构造-热演化
4)  tectonic-thermal evolution
构造热演化
1.
The relationship between tectonic-thermal evolution and sandstone-type uranium ore-formation in Ordos basin;
鄂尔多斯盆地构造热演化与砂岩型铀成矿
5)  tectonothermal evolution
构造热演化
1.
Fission track analytical res ults about tectonothermal evolution and metallogenic processes show that Lanping Basin at least undergoes three stages of tectonothermal events, accompanied by three stages of metallogenic processes which develop gradually from western edg e to the center of the basin.
裂变径迹法对兰坪盆地构造热演化与成矿作用的研究结果表明 :盆地自中生代以来 ,至少经历了三次构造热事件 ,出现了三次成矿作用过程 ,成矿作用是由盆地西缘向中央地带逐渐发展
2.
Four tectonothermal evolution stages can be recognised in Huabei Basin,two stages including four periods inOrdos Basin, five stages in Qaidam Basin and four stages in Tarim Basin.
华北盆地构造热演化史可以划分为四个阶段,鄂尔多斯盆地构造热演化史包括两个阶段四个发展期,柴达木盆地构造热演化过程分五个阶段,塔里木盆地则经历了四个阶段的构造热演化历程。
3.
On the basin scale thermal history is derived from multiple thermal indi-cators by direct or indirect inversion,while on the lithosphere scale it is estimated usingforward modelling of basin tectonothermal evolution,In this paper the progresses in kinet-ic models of three main thermal indicators(R,AFT and I/S)and in basin formation.
在盆地尺度下,热历史是通过地层中古温标(直接或间接的)反演而获得的;在岩石圈尺度下,则是通过盆地构造热演化模拟正演而获得的。
6)  Tectono-thermal evolution
构造热演化
1.
Numerical models of the tectono-thermal evolution of rift basins and their applications to the Northern South China Sea
裂谷盆地构造热演化的数值模型及在南海北部的应用
补充资料:负温度系数热敏电阻陶瓷(见热敏陶瓷)


负温度系数热敏电阻陶瓷(见热敏陶瓷)
thermo-sensitive ceramics with negative temperature coefficient

负温度系数热敏电阻陶瓷thermo一sensitiveeeramies with negative temperature eoeffieient在某一特定温度范围,电阻率随温度的升高而明显减小的热敏陶瓷。简称NTC陶瓷。
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