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Technical note: On the importance of a three-dimensional approach for modelling the transport of neustic microplastics

机译:技术说明:关于一种三维方法模拟灌冻微塑料运输的重要性

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Understanding and estimating the distribution and transport of microplastics in marine environments has been recognized as a major global research issue. Most of the existing research on transport modelling has focused on low-density particles floating in surface waters, using a 2-D Lagrangian approach and ignoring the vertical displacement of particles. In this work, we evaluate to what extent the vertical movement of particles within surface waters by mixing processes may affect the horizontal transport and fate of microplastics. The aim is to determine whether a 2-D approach is sufficient for the accurate modelling of neustic-microplastics transport or whether a 3-D approach is necessary. For this purpose, we compare visually and statistically the microplastics transport patterns of three simulations in a coastal system: one using a 2-D approach; and two using a 3-D approach with weak and strong vertical turbulence, respectively. The 2-D simulation roughly reproduced the transport and accumulation patterns, but accurate results required a 3-D approach. This was particularly important for strong vertical turbulence and regions characterized by strong vertical current shear. Moreover, a 2-D approach can lead to errors in the results even with negligible turbulence due to simplifications in the velocity field. A 3-D modelling approach is therefore key to an accurate estimation and prediction of microplastics distribution in coastal systems and consequently for planning mitigation and cleaning programmes.
机译:理解和估算海洋环境中微塑料的分布和运输已被认为是一个主要的全球研究问题。大多数现有的运输建模研究专注于漂浮在表面水中的低密度颗粒,使用2-D拉格朗日方法并忽略颗粒的垂直位移。在这项工作中,我们评估在多大程度上通过混合过程在表面水域内的垂直运动在多大程度上可能影响微塑料的水平传输和命运。目的是确定2-D方法是否足以用于令人内菌 - 微塑料传输的准确建模或是否需要3-D方法。为此目的,我们在视觉上和统计上进行比较沿海系统中的三种模拟的微型塑料传输模式:一种使用2-D方法;两者使用三维方法,分别具有弱和强度垂直湍流。 2-D仿真大致再现了传输和累积模式,但是精确的结果需要3d方法。这对于具有强大垂直电流剪切的强大垂直湍流和区域尤其重要。此外,即使在速度场中的简化,2-D接近也可以导致结果中的误差。因此,三维建模方法是对沿海系统中微型估计和预测的准确估计和预测,从而进行了规划缓解和清洁程序。

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