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Physical and mathematical modeling in the field of high-velocity hydrodynamics in the experimental base of the krasnoyarsk hydroelectric plant

机译:克拉斯诺亚尔斯克水电站实验基地高速流体动力学领域的物理和数学建模

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摘要

Improvement of advanced technologies in the field of high-velocity hydrodynamics is strategically significant in terms of national security and stable and long-term growth of the economy due to regional development in Siberia and the Arctic, as well as support of Russia's scientific and technological authority in the global arena. The practice of creating and operating large gravitational hydrodynamic tunnels with small Euler numbers is generalized to study cavitation processes under natural conditions and the motion of bodies in fluids at high velocities. Some results of model and field studies conducted in laboratories of the dam of the Krasnoyarsk hydroelectric plant are described. The authors suggest directions for follow-up studies and justify the need to set up a high-velocity hydrodynamics research center part of the High-Pressure Hydraulic Laboratory at the Krasnoyarsk hydroelectric plant, which is a completely unique facility.
机译:由于西伯利亚和北极地区的发展,以及俄罗斯在全球舞台上的科学技术权威的支持,高速流体动力学领域先进技术的改进在国家安全和经济稳定和长期增长方面具有战略意义。创建和运行具有较小欧拉数的大型引力流体动力学隧道的做法被推广到研究自然条件下的空化过程和高速流体中物体的运动。描述了在克拉斯诺亚尔斯克水电站大坝实验室进行的模型和实地研究的一些结果。作者提出了后续研究的方向,并证明了在克拉斯诺亚尔斯克水电站建立高压液压实验室的一部分的高速流体动力学研究中心的必要性,这是一个完全独特的设施。

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