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首页> 外文期刊>Journal of Applied Physics >The Electrostatic Field of a Point Charge Inside a Cylinder, in Connection with Wave Guide Theory
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The Electrostatic Field of a Point Charge Inside a Cylinder, in Connection with Wave Guide Theory

机译:结合波导管理论的圆柱体内点电荷的静电场

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In this paper the field of a point charge inside a hollow, infinitely long circular cylinder is studied. The case of an axial point charge is treated in detail. Three different methods are developed. The first method shows how to calculate the induced charges at the surface of the cylinder without explicit knowledge of the potential itself. The surface charge‐density function is obtained as the solution of a Fourier‐type integral equation. Then the potential caused by these charges is calculated. The second method works in the opposite direction. Here the potential is obtained as solution of a boundary value problem, followed by the calculation of the corresponding charges at the surface of the cylinder. The integral, obtained for the surface charge density, is transformed by contour integration. Although the resulting series is very useful for numerical purposes, a stronger method is necessary, in order to calculate the charge density just opposite the point source. Figure 1 shows the calculated values of the induced surface charge density. Several approximations for the charge‐density function are considered, in connection with recent work of Weber (cf. Table I). The same is done for the field inside the cylinder. Various formulas are given which allow of numerical calculations. In Table II some calculated values of the potential are shown. The third method is based on the theory of Fourier‐Bessel‐Dini series. The potential is developed in terms of discrete normal solutions of the potential equation in cylindrical coordinates. The coefficients in this development can be derived from the behavior of the potential in the immediate neighborhood of the primary source. Furthermore, it is emphasized that the study of the above potential problem can serve as a guide in questions of wave propagation in hollow circular cylinders. In this connection the third method is shown to be extremely useful, as it enables us to calculate direct-nly the fields in the far zone from that in the immediate neighborhood of the exciting source. This new method is demonstrated in case of acoustic waves inside a cylinder, caused by a harmonically vibrating point source.
机译:在本文中,研究了无限长的空心圆柱体内的点电荷场。对轴向点电荷的情况进行了详细处理。开发了三种不同的方法。第一种方法显示了如何在不明确了解电势本身的情况下计算圆柱体表面的感应电荷。表面电荷密度函数是作为傅立叶型积分方程的解而获得的。然后计算由这些电荷引起的电势。第二种方法的工作方向相反。在此获得势能作为边界值问题的解决方案,然后计算圆柱体表面的相应电荷。通过轮廓积分对表面电荷密度获得的积分进行转换。尽管所得的序列对于数值目的非常有用,但是必须使用更强的方法来计算与点源相对的电荷密度。图1显示了感应表面电荷密度的计算值。结合Weber的最新工作,考虑了电荷密度函数的几种近似值(参见表I)。对于圆柱体内的场也是如此。给出了各种允许数值计算的公式。在表II中,示出了一些电势的计算值。第三种方法基于傅立叶-贝塞尔-迪尼级数理论。势是根据势场方程在圆柱坐标系中的离散正解得出的。这种发展中的系数可以从主要来源的直接邻域中的势的行为得出。此外,要强调的是,对上述潜在问题的研究可以作为中空圆柱体中波传播问题的指南。在这方面,第三种方法被证明是非常有用的,因为它使我们能够直接计算出与激发源直接邻域相距较远的区域中的场。这种新方法在由谐振点源引起的圆柱体内声波的情况下得到了证明。

著录项

  • 来源
    《Journal of Applied Physics 》 |1947年第6期| 共16页
  • 作者单位

    Natuurkundig Laboratorium der N. V. Philips' Gloeilampenfabrieken, Eindhoven, Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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