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Turbulence Research in the 1920s and 1930s between Mathematics, Physics, and Engineering

机译:20世纪20年代和20世纪30年代的湍流研究数学,物理和工程

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During the interwar period research on turbulence met with interest from different areas: in aeronautical engineering turbulence became a subject of experimental study in wind tunnels; in naval architecture and hydraulic engineering turbulence research was on the agenda because of its role for skin friction; applied mathematicians and theoretical physicists struggled with the problem to determine the onset of turbulence from the fundamental hydrodynamic equations; experimental physicists developed techniques to measure the velocity fluctuations of turbulent flows. In this paper I describe the rise of turbulence in the 1920s and 1930s as a research field under the label of applied mechanics. Although the focus is on Germany, the international development of this research field is illuminated by the role which Ludwig Prandtl played as its acknowledged “chief” (G. I. Taylor). I argue that the multifaceted character of this research field calls for an epistemology and historiography which intrinsically takes the interaction of science and engineering into account.
机译:在交织期间,关于湍流的研究与不同领域的兴趣相得益彰:在航空工程湍流中成为风隧道实验研究的主题。在海军建筑和液压工程湍流研究中是在议程上,因为它对皮肤摩擦的作用;应用数学家和理论物理学家争夺问题,以确定基本流体动力学方程的湍流发作;实验物理学家开发了测量湍流流动速度波动的技术。在本文中,我描述了20世纪20年代和1930年代的湍流的兴起,作为应用力学标签下的研究领域。虽然重点是德国,但这项研究领域的国际发展是由Ludwig Prandtl作为其承认的“首席”(G.I.Taylor)发挥的作用而被照亮。我认为这项研究领域的多方面特征呼吁认识论和史学,其本质上是考虑科学和工程的互动。

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