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岩体生长过程的传热学制约及其岩浆熔融效应
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作者 白俊豪 朱丹 黄智龙 《矿物岩石地球化学通报》 CAS CSCD 北大核心 2011年第2期204-209,共6页
研究岩体生长过程的传热学制约及其引起的岩浆熔融效应能为我们认知地壳演化提供新的思路和手段。本文从年代学和测量技术两个方面综述岩体(或者岩浆房)逐渐长大的证据,然后运用Heat-3D程序简单模拟了Mount Stuart和Tenpeak岩体逐渐长... 研究岩体生长过程的传热学制约及其引起的岩浆熔融效应能为我们认知地壳演化提供新的思路和手段。本文从年代学和测量技术两个方面综述岩体(或者岩浆房)逐渐长大的证据,然后运用Heat-3D程序简单模拟了Mount Stuart和Tenpeak岩体逐渐长大过程的传热学制约,结合年代学证据证明Mount Stuart岩体是逐渐长大的,并且每期次岩浆之间有很长的时间间隔,而Tenpeak岩体的长大可能是岩浆连续不断侵入或者各期次岩浆的短时间间隔所致。岩体逐渐长大过程引起的岩浆熔融效应是很明显的,模拟实验表明,岩浆多期次侵入地壳时生成的酸性熔体量更接近于地质观察事实。 展开更多
关键词 岩体生长 传热学 浆熔融效应
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SEM/EBSD analysis of quartz cementation and compaction microstructures during diagenesis of sandstone 被引量:4
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作者 ZHANG Bo YAN ShuYu +1 位作者 GU ZhiDong ZHANG JinJiang 《Science China Earth Sciences》 SCIE EI CAS 2013年第8期1281-1293,共13页
Compaction and silicon cementation are the dominant processes reducing porosity and permeability in quartzose sandstones during diagenesis. Despite the wealth of information about quartz cementation, there are still u... Compaction and silicon cementation are the dominant processes reducing porosity and permeability in quartzose sandstones during diagenesis. Despite the wealth of information about quartz cementation, there are still unanswered questions related to mechanisms of growth of quartz cement and the diagenesis processes. In this study we present an electron backscatter diffraction (EBSD) analysis, combined with optics and cathodoluminescence (CL) information, for the quartz sandstones from the Upper Triassic Xujiahe Formation of Sichuan Basin, in order to reveal the microstructural and crystallographic features of the silica cementation and detrital grain during the compaction. The EBSD is a crucial technique to provide essential crystallographic data on the quartz grain and its cement. Quartz cement is shown to be syntaxial to its host quartz grain. EBSD data-based orientation maps show dauphin6 twinning and low angle boundary to be common in the host grains and quartz cement of the samples. The dauphin6 twins occurred in grain-grain contacts and in cement-crystal boundaries, and commonly crossed grain cement boundaries. These features indicate that there may be two types of dauphin6 twins, one inherited twins from the source area and the other developed by compaction-induced grain boundary deformation. These investigations suggest that strong mechanical compaction may occur after and/or during quartz cement growth in the later diagenesis of the Xujiahe sandstones. EBSD has a capability of revealing microstructural information and regarding mechanisms of diagenesis crystal growth in quartzose sandstones. 展开更多
关键词 SANDSTONE quartz cement COMPACTION dauphin~ twins low angle boundary electron backscatter diffraction
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