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首页> 外文期刊>Limnology and oceanography, methods >A low-cost underwater particle tracking velocimetry system for measuring in situ particle flux and sedimentation rate in low-turbulence environments
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A low-cost underwater particle tracking velocimetry system for measuring in situ particle flux and sedimentation rate in low-turbulence environments

机译:低成本水下粒子跟踪速度系统,用于测量低湍流环境中的原位粒子通量和沉降速率

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We describe a low-cost three-dimensional underwater particle tracking velocimetry system to directly measure particle settling rate and flux in low-turbulence aquatic environments. The system consists of two waterproof cameras that acquire stereoscopic videos of sinking particles at 48 frames s~(-1) over a tunable sampling volume of about 45 × 25 × 24 cm. A dedicated software package has been developed to allow evaluation of particle velocities, concentration and flux, but also of morphometric parameters such as particle area, sinking angle, shape irregularity, and density. Our method offers several advantages over traditional approaches, like sediment trap or expensive in situ camera systems: (1) it does not require beforehand particle collection and handling; (2) it is not subjected to sediment trap biases from turbulence, horizontal advection, or presence of swimmers, that may alter particulate load and flux; (3) the camera system enables faster data processing and flux computation at higher spatial resolution; (4) apart from the particle settling rates, the particle size distribution, and morphology is determined. We tested the camera system in Lake Stechlin (Germany) in low turbulence and mean flow, and analyzed the morphological properties and settling rates of particles to determine their sinking behavior. The particle flux assessed from conventional sediment trap measurements agreed well with that determined by our system. By this, the low-cost approach demonstrated its reliability in low turbulence environments and a strong potential to provide new insights into particulate carbon transport in aquatic systems. Extension of the method to more turbulent and advective conditions is also discussed.
机译:我们描述了一种低成本的三维水下粒子跟踪速度系统,可直接测量低湍流水生环境中的粒子稳定率和助焊剂。该系统由两个防水相机组成,可在约45×25×24厘米的可调采样体积上以48帧S〜(-1)在48帧S〜(-1)上获取立体视频。已经开发了一种专用的软件包,以允许评估粒子速度,浓度和助熔剂,而且还具有形态学参数,例如粒子区域,下沉角度,形状不规则和密度。我们的方法提供了与传统方法相比的若干优点,如沉积物陷阱或昂贵的原位摄像头系统:(1)它不需要预先粒子收集和处理; (2)不受湍流,水平平流或游泳剂的存在的沉积物陷阱偏差,这可能会改变颗粒载荷和助焊剂; (3)相机系统可在更高的空间分辨率下实现更快的数据处理和磁通计量; (4)除了颗粒沉降速率之外,确定粒度分布和形态。我们在低湍流和平均流动中测试了在斯隆林(德国)的相机系统,分析了颗粒的形态学性质和沉降率,以确定其沉没行为。从常规沉积物陷阱测量评估的粒子通量与我们的系统决定的差异很好。由此,低成本方法证明了其低湍流环境的可靠性以及强大的潜力,以便为水生系统中的颗粒碳运输提供新的洞察力。还讨论了更湍流和平流条件的方法的延伸。

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