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1)  thermal evolution
热演化
1.
Thermal anomaly and thermal evolution of source rocks in Mesozoic,Ordos Basin;
鄂尔多斯盆地中生代热异常及烃源岩热演化特征
2.
Application of EASY%R_o model to the research of thermal evolution in Binbei;
EASY%R_o法在滨北地区热演化史中的应用
3.
Importance of the study of the basin thermal history and source rock thermal evolution in the investigation and evaluation of strategic petroleum area selection in China;
浅谈盆地热历史及烃源岩热演化研究在中国油气资源战略选区调查评价中的意义
2)  Thermal evolution history
热演化史
1.
Study on reconstruction of palaeo geothermal and thermal evolution history in Jiyuan Depression, South Huabei Basin;
南华北盆地济源凹陷古地温及热演化史恢复
2.
Relationship between thermal evolution history and stage of hydrocarbon generation of Upper Paleozoic in the Dongpu Sag;
东濮凹陷上古生界热演化史与生烃期关系
3.
On the basis of the strata compaction correction of different rocks, history of Xiangxi group in upper Trassic and thermal evolution history of hydrocarbon has been reconstructed in 163 we.
在不同岩性地层压实校正基础上,应用盆地模拟方法对163口井上三叠统香溪群的埋藏史和有机质的热演化史进行模拟计算。
3)  thermal history
热演化史
1.
Relations between geothermal history and hydrocarbon generation in Jiyuan-Zhongmou-Huangkou depression belt;
济源-中牟-黄口坳陷带热演化史与油气的关系
2.
Relations between the thermal history and petroleum generation in the Huh Lake depression, Hailar basin;
海拉尔盆地呼和湖凹陷热演化史与油气关系
3.
Aim To reconstruct the paleotemperature and thermal history of north Jiangsu Basin,obtain the time of petroleum generating.
目的恢复苏北盆地古地温场,进行热演化史研究,确定主要的生烃时期。
4)  adiabatic evolution
绝热演化
1.
Nongeometric conditional phase shift via adiabatic evolution of dark eigenstate: a new approach to quantum computation;
利用暗本征态的绝热演化实现非几何条件相位移动:一种实现量子计算的新方法
2.
A geometric phase is found for the adiabatic evolution of a general quantum state;it reduces to Berry phase when applied to eigenstates.
在绝热演化中的几何相位(即Berry相位)被推广到包括非本征态的一般量子态。
5)  thermal evolutional history
热演化史
1.
Progresses are made according to research of paleogeothermal field and present geothermal field and thermal evolutional history in the Ordos basin.
应用镜质体反射率、包裹体测温、磷灰石裂变径迹等多种古地温研究方法,结合盆地构造演化史,恢复了鄂尔多斯盆地热演化史。
2.
Due to strong post-sedimentary alternation and structural deformation, the basin has high thermal evolution degree and it is very difficult to recover the thermal evolutional history of Chuxiong Basin.
因后期改造强烈,多期次构造变形叠加,导致盆地热演化程度高、热演化史恢复难度大。
3.
Progresses are made according to research of thermal evolutional history and oil-gas reservoirs generation history in the Hailaer basin.
本论文按照盆地分析整体、动态、综合的原则,综合应用地质、数学、地球物理及地球化学新方法,对海拉尔盆地热演化史及油气成藏历史进行了深入的研究,取得了一些新的认识。
6)  evolution of hydrothermal fluid
热液演化
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。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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