1) rock mass of granite

花岗岩岩体
1.
The measurement and application of joint roughness coefficient for rock mass of granite;

甘肃北山花岗岩岩体结构面粗糙度系数(JRC)研究
2) granite mass

花岗岩体
1.
Permeability test of granite mass by using pressure pulse test method;

利用压力脉冲试验测定某地花岗岩体的渗透系数
2.
Petrology of the Lenghu granite mass,northwestern Qaidam basin,China;

柴达木盆地冷湖花岗岩体岩石学初步研究
3.
Pre-selection research on granite mass for high level radioactive waste repository

高放废物地质处置库花岗岩体预选研究
3) granitic body

花岗岩体
1.
Based on comparison of wallrock,alterations,ores and chemical compositions of Laowan granitic body such as gold content,rare elements,rare earth elements,it is inferred that Laowan granite is a dominant factor causing formation of Laowan gold deposit.
河南桐柏老湾金矿床赋存于龟山岩组地层中,通过对围岩、蚀变、矿石与老湾岩体的金含量、微量元素、稀土元素等化学成分进行对比,推测老湾花岗岩是引起老湾金矿形成的主导因素;通过对同位素特征及成矿流体的研究成果,说明老湾金矿床的成矿物质部分源自于老湾花岗岩;通过对老湾矿床矿石、围岩与老湾花岗岩的40Ar/39Ar年龄资料的分析,得知矿床的形成稍晚于花岗岩体,具有同期特征。
2.
The Nalang granitic body located in the middle of the north edge of the Gandise terrane in Northern Tibet has always been regarded as a large batholith bedrock body,but now the practical research work indicates that it is not a whole rock body,but parted by many rock units in two periods.
藏北冈底斯地体北缘中段的那朗花岗岩体以前被认为是一个大岩基,实际调查表明,它不是一个完整的岩体,可分为两期多个岩石单元,Rb-Sr同位素年龄表明其成岩时代为燕山晚期。
4) granitic pluton

花岗岩体
1.
Geochemical characteristics of Yonghe—Taibao granitic pluton in western Nanling and its tectonic setting;
南岭西段永和—太保花岗岩体的地球化学特征及其大地构造环境
2.
Granitic plutons might be regarded as good tectonic objects, such as faults and folds.

变形花岗岩体是一种区域尺度的应变标志体,可以进行岩石有限应变测量和流变学参数估算,为分析区域构造变形特征提供应变参数。
5) granite
[英]['ɡrænɪt] [美]['grænɪt]

花岗岩体
1.
This paper studies primarily the geologic setting, engineering geology, and physical chemical characteristic of the Jiaocheng granite.
本论文对交城花岗岩体的地质环境、工程力学和理化特征作了初步研究。
6) Granitoid pluton

花岗岩体
1.
Granitoid plutons generally consist of units, sequences or small plutons, so they have growth patterns and process.
秦岭造山带核部某些晋宁期H 型花岗岩体具南北向极性生长特点,反映了构造块体垂直造山带方向的运动特点;加里东—海西期很多H 型花岗岩体生长呈侵位中心东移的极性生长,揭示了秦岭杂岩平行造山带的侧向运移及剪刀状双向俯冲的板块构造动力学特
补充资料:高温岩体发电
利用地表深层高温干岩体所含的热量发电(见高温岩体电站)。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条