论文标题
使用同几何分析,紧凑的直流光电枪的自由形状形状优化
Freeform shape optimization of a compact DC photo-electron gun using isogeometric analysis
论文作者
论文摘要
紧凑型直流高压光电子枪能够满足高电流应用(例如能量回收的Linacs)的复杂需求。此类来源的主要设计参数是电场强度,它取决于电极几何形状,并且受电极材料的场发射阈值的限制。为了最大程度地降低最佳枪支操作的最大场强度,可以使用等几何分析(IGA)来利用轴对称几何形状,并通过不均匀的有理B型序列描述其横截面,其控制点是要优化的参数。这种计算有效的方法能够使用开源软件(Geopdes,Nlopt,八度)来描述CAD生成的几何形状,并且可以简化从设计到仿真的步骤。我们将介绍数学公式,软件工作流程以及基于IGA的形状优化的结果,以针对TU Darmstadt的DC PhotoGun TestStand Photo Catch的计划高压升级。该软件建立在用于等几何分析的一般框架上,并可以轻松适应其他几何或关注数量。假设偏置电压为-300 kV的模拟在倒置绝缘体电极的表面上产生的最大场梯度为9.06 mV/m,而光电电极表面的3 mV/m以下。
Compact DC high-voltage photo-electron guns are able to meet the sophisticated demands of high-current applications such as energy recovery linacs. A main design parameter for such sources is the electric field strength, which depends on the electrode geometry and is limited by the field emission threshold of the electrode material. In order to minimize the maximum field strength for optimal gun operation, isogeometric analysis (IGA) can be used to exploit the axisymmetric geometry and describe its cross section by non-uniform rational B-splines, the control points of which are the parameters to be optimized. This computationally efficient method is capable of describing CAD-generated geometries using open source software (GeoPDEs, NLopt, Octave) and it can simplify the step from design to simulation. We will present the mathematical formulation, the software workflow, and the results of an IGA-based shape optimization for a planned high-voltage upgrade of the DC photogun teststand Photo-CATCH at TU Darmstadt. The software builds on a general framework for isogeometric analysis and allows for easy adaptations to other geometries or quantities of interest. Simulations assuming a bias voltage of -300 kV yielded maximum field gradients of 9.06 MV/m on the surface of an inverted insulator electrode and below 3 MV/m on the surface of the photocathode.