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应用三维频域电场计算方法确定高压输电线路铁塔ADSS光缆的悬挂位置 被引量:2
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作者 崔翔 王福昌 +3 位作者 卢铁兵 钟成 吴茂林 张波 《电力系统通信》 2004年第2期12-16,共5页
介绍了将三维频域电场计算方法应用于高压输电线路铁塔附近三维工频电场计算,通过对500kV输电线路6种不同铁塔结构附近的三维工频电场分布的测量,确认了所用方法的有效性。应用上述方法对河北南网220kV输电线路10种和110kV输电线路18种... 介绍了将三维频域电场计算方法应用于高压输电线路铁塔附近三维工频电场计算,通过对500kV输电线路6种不同铁塔结构附近的三维工频电场分布的测量,确认了所用方法的有效性。应用上述方法对河北南网220kV输电线路10种和110kV输电线路18种不同铁塔结构附近的三维工频电场进行了详细计算和分析,获得了各种铁塔附近三维工频电场的空间分布,找出了适于ADSS光缆悬挂的低场强空间。该研究成果已用于指导河北南网多条高压输电线路铁塔ADSS光缆悬挂位置的选择。 展开更多
关键词 高压输电线路 ADSS光缆 铁塔 三维频域 电场计算方法 电力系统
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Finite element solution based on fast numerical technique for large-scale electromagnetic computation
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作者 赵阳 储家美 Satish Udpa 《Journal of Southeast University(English Edition)》 EI CAS 2006年第4期470-474,共5页
A numerical technique of the target-region locating (TRL) solver in conjunction with the wave-front method is presented for the application of the finite element method (FEM) for 3-D electromagnetic computation. F... A numerical technique of the target-region locating (TRL) solver in conjunction with the wave-front method is presented for the application of the finite element method (FEM) for 3-D electromagnetic computation. First, the principle of TRL technique is described. Then, the availability of TRL solver for nonlinear application is particularly discussed demonstrating that this solver can be easily used while still remaining great efficiency. The implementation on how to apply this technique in FEM based on magnetic vector potential (MVP) is also introduced. Finally, a numerical example of 3-D magnetostatic modeling using the TRL solver and FEMLAB is given. It shows that a huge computer resource can be saved by employing the new solver. 展开更多
关键词 finite element method electromagnetic computation numerical technique fast solver
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Three-dimensional forward modeling for magnetotelluric sounding by finite element method 被引量:3
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作者 童孝忠 柳建新 +3 位作者 谢维 徐凌华 郭荣文 程云涛 《Journal of Central South University》 SCIE EI CAS 2009年第1期136-142,共7页
A finite element algorithm combined with divergence condition was presented for computing three-dimensional(3D) magnetotelluric forward modeling. The finite element equation of three-dimensional magnetotelluric forwar... A finite element algorithm combined with divergence condition was presented for computing three-dimensional(3D) magnetotelluric forward modeling. The finite element equation of three-dimensional magnetotelluric forward modeling was derived from Maxwell's equations using general variation principle. The divergence condition was added forcedly to the electric field boundary value problem, which made the solution correct. The system of equation of the finite element algorithm was a large sparse, banded, symmetric, ill-conditioned, non-Hermitian complex matrix equation, which can be solved using the Bi-CGSTAB method. In order to prove correctness of the three-dimensional magnetotelluric forward algorithm, the computed results and analytic results of one-dimensional geo-electrical model were compared. In addition, the three-dimensional magnetotelluric forward algorithm is given a further evaluation by computing COMMEMI model. The forward modeling results show that the algorithm is very efficient, and it has a lot of advantages, such as the high precision, the canonical process of solving problem, meeting the internal boundary condition automatically and adapting to all kinds of distribution of multi-substances. 展开更多
关键词 magnetotelluric sounding three-dimensional forward modeling finite element method general variation principle divergence condition
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