为设计原子光泵磁力仪中的高屏蔽效能磁屏蔽体,修正了多层磁屏蔽筒轴向屏蔽效能公式,并对比验证多层磁屏蔽筒各尺寸参数对轴向屏蔽效能的影响。对3层磁屏蔽筒模型应用Ansoft Maxwell建模仿真得到中心点磁屏蔽效能159.77 d B,公式计算结...为设计原子光泵磁力仪中的高屏蔽效能磁屏蔽体,修正了多层磁屏蔽筒轴向屏蔽效能公式,并对比验证多层磁屏蔽筒各尺寸参数对轴向屏蔽效能的影响。对3层磁屏蔽筒模型应用Ansoft Maxwell建模仿真得到中心点磁屏蔽效能159.77 d B,公式计算结果为167.5 d B,研究结果表明修正的磁屏蔽筒轴向屏蔽系数公式比现阶段研究中的屏蔽筒轴向屏蔽系数公式(170.5 d B)具有更高的准确度,且参数对磁屏蔽效能的影响趋势与仿真具有较高的一致性。在其他尺寸参数相同情况下,3层磁屏蔽筒轴向长度间隔为46.5 mm时,轴向屏蔽效能存在最优值167.486 d B,在地磁场环境中剩磁小于0.6 p T,对磁屏蔽筒的尺寸设计具有重要指导意义。展开更多
In this paper, based on the mean field dynamo theory, the influence of the electromagnetic boundary condition on the dynamo actions driven by the small scale turbulent flows in a cylindrical vessel is investigated by ...In this paper, based on the mean field dynamo theory, the influence of the electromagnetic boundary condition on the dynamo actions driven by the small scale turbulent flows in a cylindrical vessel is investigated by the integral equation approach. The numerical results show that the increase of the electrical conductivity or magnetic permeability of the walls of the cylindrical vessel can reduce the critical magnetic Reynolds number. Furthermore, the critical magnetic Reynolds number is more sensi- tive to the varying electrical conductivity of the end wall or magnetic permeability of the side wall. For the anisotropic dynamo which is the mean field model of the Karlsruhe experiment, when the relative electrical conductivity of the side wall or the rel- ative magnetic permeability of the end wall is less than some critical value, the m=l (m is the azimuthal wave number) mag- netic mode is the dominant mode, otherwise the m=0 mode predominates the excited magnetic field. Therefore, by changing the material of the walls of the cylindrical vessel, one can select the magnetic mode excited by the anisotropic dynamo.展开更多
文摘为设计原子光泵磁力仪中的高屏蔽效能磁屏蔽体,修正了多层磁屏蔽筒轴向屏蔽效能公式,并对比验证多层磁屏蔽筒各尺寸参数对轴向屏蔽效能的影响。对3层磁屏蔽筒模型应用Ansoft Maxwell建模仿真得到中心点磁屏蔽效能159.77 d B,公式计算结果为167.5 d B,研究结果表明修正的磁屏蔽筒轴向屏蔽系数公式比现阶段研究中的屏蔽筒轴向屏蔽系数公式(170.5 d B)具有更高的准确度,且参数对磁屏蔽效能的影响趋势与仿真具有较高的一致性。在其他尺寸参数相同情况下,3层磁屏蔽筒轴向长度间隔为46.5 mm时,轴向屏蔽效能存在最优值167.486 d B,在地磁场环境中剩磁小于0.6 p T,对磁屏蔽筒的尺寸设计具有重要指导意义。
基金supported by the National Natural Science Foundation of China(Grant No.11272187)
文摘In this paper, based on the mean field dynamo theory, the influence of the electromagnetic boundary condition on the dynamo actions driven by the small scale turbulent flows in a cylindrical vessel is investigated by the integral equation approach. The numerical results show that the increase of the electrical conductivity or magnetic permeability of the walls of the cylindrical vessel can reduce the critical magnetic Reynolds number. Furthermore, the critical magnetic Reynolds number is more sensi- tive to the varying electrical conductivity of the end wall or magnetic permeability of the side wall. For the anisotropic dynamo which is the mean field model of the Karlsruhe experiment, when the relative electrical conductivity of the side wall or the rel- ative magnetic permeability of the end wall is less than some critical value, the m=l (m is the azimuthal wave number) mag- netic mode is the dominant mode, otherwise the m=0 mode predominates the excited magnetic field. Therefore, by changing the material of the walls of the cylindrical vessel, one can select the magnetic mode excited by the anisotropic dynamo.