Buuren Duco van, Gils Dennis P M van, Bruggert Gert-Wim, Krug Dominik
Physics of Fluids Group, J. M. Burgers Center for Fluid Dynamics and Max Planck Center Twente, Faculty of Science and Technology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.
Institute of Aerodynamics and Chair of Fluid Mechanics, Faculty of Mechanical Engineering, RWTH Aachen University, Wüllnerstrasse 5a, 52062 Aachen, Germany.
Exp Fluids. 2025;66(10):184. doi: 10.1007/s00348-025-04103-z. Epub 2025 Sep 14.
We present a newly constructed jet array with a novel driving scheme for turbulence generation in a vertical water tunnel and measurements of the turbulent flow this jet array establishes. The design of the array allows us to control the mean background flow and the turbulence intensity independently of each other. The array consists of a rectangular arrangement of 112 individually computer-controlled water jets that are aligned streamwise to the measurement section of our 8-m tall vertically recirculating water tunnel. Using solenoid valves, individual jets are activated following predefined protocols that can be tailored to obtain different turbulence statistics within the measurement section. The protocols are based on four-dimensional OpenSimplex noise, a type of gradient noise that features spatial and temporal coherence. Details of the mechanical and electrical designs are presented, together with a detailed description of the protocol generation. We show that the resulting turbulence is near homogeneous and isotropic, with a turbulence intensity of Order 1, an energy dissipation rate of order and . Additionally, we present experiments that show the effects that various system and protocol parameters have on the created flow conditions and address the streamwise development, as well as the homogeneity and isotropy of the flow.
我们展示了一种新构建的射流阵列,其具有用于在垂直水洞中产生湍流的新颖驱动方案,并对该射流阵列建立的湍流进行了测量。阵列的设计使我们能够相互独立地控制平均背景流和湍流强度。该阵列由112个单独的计算机控制水射流组成,呈矩形排列,这些水射流沿流向与我们8米高的垂直循环水洞的测量段对齐。使用电磁阀,按照预定义的协议激活各个射流,这些协议可以进行定制,以在测量段内获得不同的湍流统计数据。这些协议基于四维开放单纯形噪声,这是一种具有空间和时间相干性的梯度噪声。文中介绍了机械和电气设计的细节,以及协议生成的详细描述。我们表明,产生的湍流接近均匀和各向同性,湍流强度为1阶,能量耗散率为 阶 。此外,我们还展示了实验,这些实验显示了各种系统和协议参数对所创建的流动条件的影响,并探讨了流向发展以及流动的均匀性和各向同性。