期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
轴对称射流中涡运动的三维涡丝模拟 被引量:1
1
作者 刘中秋 林建忠 石兴 《科技通报》 北大核心 2002年第4期270-275,280,共7页
用三维涡丝法对轴对称不可压射流进行了数值模拟 ,描述了轴对称射流在外加扰动下产生的拟序结构随时间的发展 .文中应用了涡丝的增加与合并技术 ,模拟了在基波扰动作用下涡的卷起 ,以及在扰动中加入次谐波后涡的配对 .通过对不同时刻涡... 用三维涡丝法对轴对称不可压射流进行了数值模拟 ,描述了轴对称射流在外加扰动下产生的拟序结构随时间的发展 .文中应用了涡丝的增加与合并技术 ,模拟了在基波扰动作用下涡的卷起 ,以及在扰动中加入次谐波后涡的配对 .通过对不同时刻涡量图的比较与分析 ,说明扰动中的基波导致涡的卷起 ,次谐波控制着涡的配对 。 展开更多
关键词 轴对称射流 中涡运动 三维 拟序结构 数值模拟
下载PDF
The structural characteristics, age of origin, and tectonic attribute of the Erguna Fault, NE China 被引量:5
2
作者 ZHENG Han SUN XiaoMeng +4 位作者 ZHU DeFeng TIAN JingXiong HE Song WANG YingDe ZHANG XuQing 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第9期1553-1565,共13页
The Erguna Fault runs along the east bank of the Erguna River in NE China and is a large-scale ductile shear zone comprising granitic mylonites. This paper reports on the geometry, kinematic indicators, and 40Ar/39 Ar... The Erguna Fault runs along the east bank of the Erguna River in NE China and is a large-scale ductile shear zone comprising granitic mylonites. This paper reports on the geometry, kinematic indicators, and 40Ar/39 Ar biotite ages of the granitic mylonites, to constrain the structural characteristics, forming age, and tectonic attribute of the Erguna ductile shear zone. The zone strikes NE and records a top-to-the-NW sense of shear. A mylonitic foliation and stretching lineation are well developed in the mylonites, which are classified as S-L tectonites. Logarithmic flinn parameters(1.18–2.35) indicate elongate strain which approximates to plane strain. Kinematic vorticity numbers are 0.42–0.92 and 0.48–0.94, based on the polar Mohr diagram and the oblique foliation in quartz ribbons, respectively, suggesting that the ductile shear zone formed under general shear, or a combination of simple and pure shear. According to finite strain and kinematic vorticity analyses, the Erguna Fault is a lengthening-thinning ductile shear zone that formed by extension. The deformation behavior of minerals in the mylonites indicates that the fault was the site of three stages of deformation: an initial stage of middle- to deep-level, high-temperature shear, a post-stress recovery phase of high-temperature static recrystallization, and a final phase of low-temperature uplift and cooling. The 40Ar/39 Ar plateau ages of biotite from the granitic mylonites are 106.16 ± 0.79 and 111.55 ± 0.67 Ma, which constrain the timing of low-temperature uplift and cooling but are younger than the ages of metamorphic core complexes(MCCs) in the Transbaikalia-northeast Mongolia region. Using measured geological sections, microtectonics, estimates of finite strain and kinematic vorticity, and regional correlations and geochronology, we conclude that the Erguna Fault is an Early Cretaceous, NNE-trending, large-scale, sub-horizontal, and extensional ductile shear zone. It shares a similar tectonic background with the MCCs, volcanic fault basins, and large and super-large volcanic-hydrothermal deposits in Transbaikalia-northeast Mongolia and the western Great Khingan Mountains, all of which are the result of overthickened crust that gravitationally collapsed and extended in the Early Cretaceous after plate collision along the present-day Sino-Russia-Mongolia border tract. 展开更多
关键词 Erguna Fault ductile shear zone MYLONITE 40^Ar/39^Ar plateau age tectonic attribute
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部