大型实验地球流体力学旋转平台的设计与实现

Design and implementation of a large-scale experimental rotating platformfor geophysical fluid dynamics

  • 摘要: 地球流体力学是一门研究自然界中流体宏观运动规律的学科,在气候研究等领域有着广泛的应用。旋转水池在模拟自然流体运动中发挥了重要作用,通过比例缩放和地形模拟,能够再现旋转条件下层化流体的多尺度物理过程,捕捉海洋和大气环境的基本特征。本文重点介绍了南京信息工程大学国际地球流体力学研究中心已建成的大型旋转水池的设计原理和系统组成,该水池是全球第二个内径超过10 m的旋转水池(内径14 m,外径18 m),由大型水池主体、多密度水体交换系统和观测系统3个部分组成,其中观测系统采用了自动升降装置并采用了最新的光学测高技术,这是以往大型旋转平台所未具备的,将成为世界上最大的旋转水池。此外,还展示了在其他旋转平台上开展的讨论涡旋演化和涡-涡相互作用的中尺度涡旋实验,以及探索河口羽流分类及稳定性的实验。该大型旋转水池平台旨在服务全球科研人员,促进国内外科研机构的深度合作,推动地球流体力学研究的未来发展。

     

    Abstract: Geophysical Fluid Dynamics is a discipline that studies the macroscopic motion laws of fluids in nature, with broad applications in climate research and related fields. Rotating tanks play a crucial role in simulating natural fluid motions by employing scaling principles and topographic modeling to reproduce multiscale physical processes of stratified fluids under rotating conditions, and capturing fundamental features of oceanic and atmospheric environments. This paper focuses on the design principles and system composition of the large-scale rotating tank constructed at the international Geophysical Fluid Dynamics Laboratory (iGFDL), Nanjing University of Information Science and Technology. With an inner diameter of 14 m and an outer diameter of 18 m, it is the second rotating tank globally to exceed an inner diameter of 10 m. The system comprises three main components: the large tank body, a multi-density water exchange system, and an observation system. Notably, the observation system incorporates an automated lifting device and employs state-of-the-art optical altimetry technology, features unprecedented in previous large-scale rotating platforms, making it the world's largest rotating tank. Additionally, this paper presents mesoscale vortex experiments conducted on other rotating platforms, including studies on vortex evolution and vortex-vortex interactions, as well as experiments exploring the classification and stability of estuarine plumes. This large rotating tank platform aims to serve researchers worldwide, foster in-depth collaboration between domestic and international institutions, and advance the future development of geophysical fluid dynamics research.

     

/

返回文章
返回