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Development and testing of a micro wind tunnel for on-site wind erosion simulations

机译:用于现场风蚀模拟的微型风洞的开发和测试

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摘要

Wind erosion processes affect soil surfaces across all land uses worldwide. Understanding the spatial and temporal scales of wind erosion is a challenging undertaking because these processes are diverse and highly variable. Wind tunnels provide a useful tool as they can be used to simulate erosion at small spatial scales. Portable wind tunnels are particularly valued because erosion can be simulated on undisturbed soil surfaces in the field. There has been a long history of use of large portable wind tunnels, with consensus that these wind erosion simulation tools can meet real world aerodynamic criteria. However, one consequence of striving to meet aerodynamic reality is that the size of the tunnels has increased, making them logistically difficult to work with in the field and resulting in a tendency to homogenise naturally complex soil surfaces. This homogenisation is at odds with an increasing awareness of the importance that small scale processes have in wind erosion. To address these logistical and surface homogenisation issues we present here the development and testing of a micro wind tunnel (MWT) designed to simulate wind erosion processes at high spatial resolution. The MWT is a duct-type design-0.05 m tall 0.1 m wide and with a 1.0 m working section. The tunnel uses a centrifugal motor to suck air through a flow-conditioning section, over the working section and then through a sediment collection trap. Simulated wind velocities range from 5 to 18 m s(-1), with high reproducibility. Wind speeds are laterally uniform and values of u(*) at the tunnel bed (calculated by measuring the pressure gradients within the MWT) are comparable with those of larger tunnels in which logarithmic profiles can be developed. Saltation sediment can be added. The tunnel can be deployed by a single person and operated on slopes ranging from 0 to 10 degrees. Evidence is presented here that the MWT provides new and useful understanding of the erodibility of rangelands, claypans and ore stockpiles.
机译:风蚀过程会影响全球所有土地利用的土壤表面。了解风蚀的时空尺度是一项艰巨的任务,因为这些过程是多种多样且高度可变的。风洞提供了一种有用的工具,因为它们可用于模拟小空间尺度的侵蚀。便携式风洞特别受重视,因为可以在田地的未扰动土壤表面模拟侵蚀。使用大型便携式风洞已有很长的历史,并一致认为这些风蚀模拟工具可以满足现实世界的空气动力学标准。然而,努力满足空气动力学现实的一个结果是,隧道的尺寸增加了,这使得它们在后勤上难以在野外工作,并导致使自然复杂的土壤表面均质化的趋势。这种均质化与人们日益意识到小规模工艺在风蚀中的重要性的认识不一致。为了解决这些物流和表面均质化问题,我们在此介绍微风洞(MWT)的开发和测试,该风洞旨在模拟高空间分辨率的风蚀过程。 MWT是一种风管式设计,高0.05 m,宽0.1 m,工作截面为1.0 m。该隧道使用离心电动机通过流动调节段,工作段上方的空气,然后通过沉积物收集阱来吸入空气。模拟风速范围从5到18 m s(-1),具有很高的可重复性。风速在横向上是均匀的,并且在隧道床处的u(*)值(通过测量MWT内的压力梯度来计算)与可以形成对数分布的大型隧道相当。可以添加盐分沉淀物。隧道可以由一个人部署,并且可以在0到10度的斜坡上操作。此处提供的证据表明,MWT对牧场,黏土锅和矿石堆的可蚀性提供了新的有用的理解。

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