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Research on Outcrop Sequence Stratigraphy of Permian in Middle-Lower Yangtze Region
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作者 zhangkexin HeWeihong 《Journal of China University of Geosciences》 SCIE CSCD 2002年第2期192-202,共11页
According to the latest International Chronostratigraphic Scheme (ICS, 2000), the Permian in the Middle Lower Yangtze region of South China can be divided into three series and nine stages relevant to the traditional... According to the latest International Chronostratigraphic Scheme (ICS, 2000), the Permian in the Middle Lower Yangtze region of South China can be divided into three series and nine stages relevant to the traditional six stages of South China. From Assellian to Changxingian of Permian, 44 Ma in age range, the strata are composed of 14 third order sequences, each of which is 3.14 Ma in average age range. There is one third order sequence of Zisongian, equivalent to middle and upper Chuanshan Formation or equal to Asselian and two thirds of Sakmarian. There are two third order sequences, corresponding to Liang shan Formation or Zhenjiang Formation and upper Chuanshan Formation, which are assigned to Longlingian, coinciding with Artinskian and one third of Sakmarian. In addition, three third order sequences, equal to Qixia Formation, are attributed to Chihsian, corresponding to Kubergandian and one third of Roadian. Four third order sequences, comprising Gufeng, Maokou, Yanqiao, Yinping and Wuxue formations, are assigned to Maokouan, equivalent to two thirds of Roadian, Wordian and Capitanian. Two third order sequences, equal to Longtan Formation or Wujiaping Formation, are included in Wuchiapingian. Other two third order sequences, corresponding to Changxing Formation or Dalong Formation, are assigned to Changhsingian. In brief, these above third order sequences can be incorporated into 4 sequences sets. 展开更多
关键词 systems tract third order sequence sea level changes PERMIAN Middle Lower Yangtze region.
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基于儒科夫斯基变换的液力变矩器泵叶参数化集成
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作者 范文林 张可馨 孙烨辉 《成都航空职业技术学院学报》 2024年第2期70-73,86,共5页
针对LB46型导叶可调式液力变矩器泵轮叶片形状的研究,借鉴风力机翼型型线参数化描述的思想,在儒科夫斯基变换原理的基础上,通过四个不同阶次的数值拟合,找到最优的三阶拟合结果,建立参数化模型。通过计算流体力学方法,计算变矩器内流场... 针对LB46型导叶可调式液力变矩器泵轮叶片形状的研究,借鉴风力机翼型型线参数化描述的思想,在儒科夫斯基变换原理的基础上,通过四个不同阶次的数值拟合,找到最优的三阶拟合结果,建立参数化模型。通过计算流体力学方法,计算变矩器内流场,得到参数化模型原始特性曲线与实验测量结果一致,验证了这种集成方法的可行性,为变矩器结构创新提供了新思路。 展开更多
关键词 LB46液力变矩器泵轮叶片 风力机翼型型线参数化 儒科夫斯基变换
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