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A new method for designing dual foil electron beam forming systems. Ⅱ. Feasibility of practical implementation of the method

机译:设计双箔电子束形成系统的新方法。 Ⅱ。实际实施该方法的可行性

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In Part Ⅰ of this work a new method for designing dual foil electron beam forming systems was introduced. In this method, an optimal configuration of the dual foil system is found by means of a systematic, automatized scan of system performance in function of its parameters. At each point of the scan, Monte Carlo method is used to calculate the off-axis dose profile in water taking into account detailed and complete geometry of the system. The new method, while being computationally intensive, minimizes the involvement of the designer. In this Part Ⅱ paper, feasibility of practical implementation of the new method is demonstrated. For this, a prototype software tools were developed and applied to solve a real life design problem. It is demonstrated that system optimization can be completed within few hours time using rather moderate computing resources. It is also demonstrated that, perhaps for the first time, the designer can gain deep insight into system behavior, such that the construction can be simultaneously optimized in respect to a number of functional characteristics besides the flatness of the off-axis dose profile. In the presented example, the system is optimized in respect to both, flatness of the off-axis dose profile and the beam transmission. A number of practical issues related to application of the new method as well as its possible extensions are discussed.
机译:在这项工作的第一部分,介绍了一种设计双箔电子束形成系统的新方法。在这种方法中,通过对系统性能根据其参数进行系统的自动扫描,可以找到双箔系统的最佳配置。在扫描的每个点,考虑到系统的详细和完整的几何形状,使用蒙特卡洛方法来计算水中的离轴剂量分布。新方法虽然计算量大,但可以最大程度地减少设计人员的参与。在第二部分的论文中,论证了该新方法实际实施的可行性。为此,开发了原型软件工具并将其用于解决现实生活中的设计问题。事实证明,使用相当适度的计算资源即可在几个小时内完成系统优化。还表明,也许是第一次,设计人员可以深入了解系统行为,从而可以在离轴剂量分布曲线平坦度方面同时针对多种功能特性对结构进行优化。在给出的例子中,系统在离轴剂量分布的平坦度和光束透射率方面都得到了优化。讨论了许多与新方法的应用有关的实际问题及其可能的扩展。

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