期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
使用“隔振结构”接口实现感应电机磁振动的宽频带减小
1
作者 莱昂内尔·杜兰泰 周维良 《电机译文集》 2001年第71期64-72,共9页
在定子铁心和机座之间使用隔振结构以宽频带减小感应电机的磁振动,该装置设计成具有很强的切向刚性和较弱的径向刚性,提出了二维有限元(FE)动力响应,首先,它是以在定子内径上的半极距上采用探测线圈对磁力进行的实验确定为基础的... 在定子铁心和机座之间使用隔振结构以宽频带减小感应电机的磁振动,该装置设计成具有很强的切向刚性和较弱的径向刚性,提出了二维有限元(FE)动力响应,首先,它是以在定子内径上的半极距上采用探测线圈对磁力进行的实验确定为基础的,其次,确定了绕组相对于温度与频率的所有特性,并用线性混合法则对其均匀化。再次,优化了对以基于实验自然频率的目标函数进行的FE模态分析,以识别绕线槽的等效力学参数。 展开更多
关键词 隔振结构 感应电机 磁振动 宽频带 槽力学模型 结构原理
下载PDF
Maximum heat transfer capacity of high temperature heat pipe with triangular grooved wick 被引量:4
2
作者 沈妍 张红 +2 位作者 许辉 于萍 白穜 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期386-391,共6页
A mathematical model was developed to predict the maximum heat transfer capacity of high temperature heat pipe with triangular grooved wick. The effects of the inclination angle and geometry structure were considered ... A mathematical model was developed to predict the maximum heat transfer capacity of high temperature heat pipe with triangular grooved wick. The effects of the inclination angle and geometry structure were considered in the proposed model.Maximum heat transfer capacity was also investigated experimentally. The model was validated by comparing with the experimental results. The maximum heat transfer capacity increases with the vapor core radius increasing. Compared with the inclination angle of0°, the maximum heat transfer capacity increases at the larger inclination angle, and the change with temperature is larger. The performance of heat pipe with triangular grooved wick is greatly influenced by gravity, so it is not recommended to be applied to the dish solar heat pipe receiver. 展开更多
关键词 high temperature heat pipe triangular grooved wick heat transfer capacity
下载PDF
Hydrodynamic Performance of Multiple-Row Slotted Breakwaters 被引量:1
3
作者 Moussa S. Elbisy Ehab M. Mlybari Medhat M. Helal 《Journal of Marine Science and Application》 CSCD 2016年第2期123-135,共13页
This study examines the hydrodynamic performance of multiple-row vertical slotted breakwaters. We developed a mathematical model based on an eigenfunction expansion method and a least squares technique for Stokes seco... This study examines the hydrodynamic performance of multiple-row vertical slotted breakwaters. We developed a mathematical model based on an eigenfunction expansion method and a least squares technique for Stokes second-order waves. The numerical results obtained for limiting cases of double-row and triple-row walls are in good agreement with results of previous studies and experimental results. Comparisons with experimental measurements of the reflection, transmission, and dissipation coefficients (CR, Cr, and CE) for double-row walls show that the proposed mathematical model adequately reproduces most of the important features. We found that for double-row walls, the CR increases with increasing wave number, kd, and with a decreasing permeable wall part, din. The Cr follows the opposite trend. The CE slowly increases with an increasing kd for lower kd values, reaches a maximum, and then decreases again. In addition, an increasing porosity of dm would significantly decrease the CR while increasing the Cr. At lower values of kd, a decreasing porosity increases the CE, but for high values of kd, a decreasing porosity reduces the Ce. The numerical results indicate that, for triple-row walls, the effect of the arrangement of the chamber widths on hydrodynamic characteristics is not significant, except when kd〈0.5 Double-row slotted breakwaters may exhibit a good wave-absorbing performance at kd〉0.5, where by the horizontal wave force may be smaller than that of a single wall. On the other hand, the difference between double-row and triple-row vertical slotted breakwaters is marginal. 展开更多
关键词 slotted breakwaters Stokes second-order waves transmission coefficient reflection coefficient dissipation coefficient horizontal wave force
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部