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八家子铅锌矿硫同位素特征及其地质意义 被引量:3
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作者 杨占兴 刘素英 《国土资源》 1990年第2期137-148,共12页
八家子铅锌矿位于虹螺山—五指山成矿带的南端,矿床赋存于长城系高于庄组及大红峪组中。本文通过130件硫同位素资料对全矿区的硫同位素特征,不同成矿阶段,不同组构以及不同矿物的硫同位素组成进行了系统研究。全区δ^(34)S分布范围为+1... 八家子铅锌矿位于虹螺山—五指山成矿带的南端,矿床赋存于长城系高于庄组及大红峪组中。本文通过130件硫同位素资料对全矿区的硫同位素特征,不同成矿阶段,不同组构以及不同矿物的硫同位素组成进行了系统研究。全区δ^(34)S分布范围为+16.4‰—-19.1‰,δ^(34)S(?)s为2.16‰,硫同位素具有水平分带及垂直分带特征。同时还对矿床的硫同位素平衡温度和平衡程度进行了计算和估计,并结合包体测温结果确定矿床的成矿温度介于低温到高温之间,主成矿期温度以中温(300—400℃)为主。上述研究表明,本区的硫同位素组成特征是沉积岩和岩浆热液共同作用的结果,成矿作用应以岩浆热液作用为主。 展开更多
关键词 八家子 铅锌矿 硫同位素 塔式效应 热液作用
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The Coupling Effect of Spatial Reticulated Shell Structure with Cables
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作者 马骏 周岱 符旭晨 《Journal of Shanghai Jiaotong university(Science)》 EI 2005年第1期52-56,共5页
The spatial reticulated shell structure with cables (RSC) is a kind of coupling working system, which consists of flexible cables, reticulated shell structure (RS) and tower columns. The dynamic analysis of RSC based ... The spatial reticulated shell structure with cables (RSC) is a kind of coupling working system, which consists of flexible cables, reticulated shell structure (RS) and tower columns. The dynamic analysis of RSC based on the coupling model was carried out. Three kinds of elements such as the spatial bar element, cable element and beam element were introduced to analyze the reticulated shell, cable and tower column respectively. Furthermore, such parameter influences as structural boundary conditions, grid configuration, the span-to-depth ratio and the arrangement of cable system upon structural dynamics were analyzed. The structural vibration modes can be divided into four groups based on some numerical examples. And the frequencies in the same group are very close while the frequencies in different groups are different from each other obviously. It is clear that the sequence of the appearance of the each mode group heavily depends on the comparative stiffness of the tower column system, RS and cables. 展开更多
关键词 reticulated shell structure CABLE tower column coupling effect vibration mode
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Wind-induced response analysis of a wind turbine tower including the blade-tower coupling effect 被引量:7
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作者 Xiao-bo CHEN Jing LI Jian-yun CHEN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2009年第11期1573-1580,共8页
To analyze wind-induced response characteristics of a wind turbine tower more accurately, the blade-tower coupling effect was investigated. The mean wind velocity of the rotating blades and tower was simulated accordi... To analyze wind-induced response characteristics of a wind turbine tower more accurately, the blade-tower coupling effect was investigated. The mean wind velocity of the rotating blades and tower was simulated according to wind shear effects, and the fluctuating wind velocity time series of the wind turbine were simulated by a harmony superposition method. A dynamic finite element method (FEM) was used to calculate the wind-induced response of the blades and tower. Wind-induced responses of the tower were calculated in two cases (one included the blade-tower coupling effect, and the other only added the mass of blades and the hub at the top of the tower), and then the maximal displacements at the top of the tower of the tow cases were compared with each other. As a result of the influence of the blade-tower coupling effect and the total base shear of the blades, the maximal displacement of the first case increased nearly by 300% compared to the second case. To obtain more precise analysis, the blade-tower coupling effect and the total base shear of the blades should be considered simultaneously in the design of wind turbine towers. 展开更多
关键词 Fluctuating wind velocity Mean wind velocity TOWER BLADE COUPLING Wind shear effect VIBRATION
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