A numerical framework for modeling fate and transport of microplastics in inland and coastal waters

IF 4.9 3区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Marine pollution bulletin Pub Date : 2022-11-01 DOI:10.1016/j.marpolbul.2022.114119
Abolghasem Pilechi, Abdolmajid Mohammadian, Enda Murphy
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引用次数: 5

Abstract

Proliferation of microplastics in rivers, lakes, estuaries, coastal waters and oceans is a major global challenge and threat to the environment, livelihoods and human health. Reliable predictive tools can play an essential role in developing an improved understanding of microplastics behaviour, exposure and risk in water bodies, and facilitate identification of sources and accumulation hot spots, thereby enabling informed decision-making for targeted prevention and clean-up activities. This study presents a new numerical framework (CaMPSim-3D) for predicting microplastics fate and transport in different aquatic settings, which consists of a Lagrangian, three-dimensional (3D) particle-tracking model (PTM) coupled with an Eulerian-based hydrodynamic modeling system (TELEMAC). The 3D PTM has several innovative features that enable accurate simulation and efficient coupling with TELEMAC, which utilizes an unstructured computational mesh. The PTM is capable of considering spatio-temporally varying diffusivity, and uses an innovative algorithm to locate particles within the Eulerian mesh. Model accuracy associated with different advection schemes was verified by comparing numerical predictions to known analytical solutions for several test cases. The implications of choosing different advection schemes for modeling microplastics transport was then investigated by applying the PTM to simulate particle transport in the lower Saint John River Estuary in eastern Canada. The sensitivity of the PTM predictions to the advection scheme was investigated using six numerical schemes with different levels of complexity. Predicted particle distributions and residence times based on the fourth-order Runge–Kutta (RK4) scheme differed significantly (residence times by up to 100 %) from those computed using the traditional first-order (Euler) method. The Third Order Total Variation Diminishing (TVD3) Runge-Kutta method was found to be optimal, providing the closest results to RK4 with approximately 27 % lower computational cost.

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模拟内陆和沿海水域微塑料命运和运输的数值框架
微塑料在河流、湖泊、河口、沿海水域和海洋中的扩散是对环境、生计和人类健康的重大全球性挑战和威胁。可靠的预测工具可以在提高对微塑料在水体中的行为、暴露和风险的了解方面发挥重要作用,并有助于确定来源和积累热点,从而能够为有针对性的预防和清理活动做出明智的决策。本研究提出了一个新的数值框架(CaMPSim-3D),用于预测不同水生环境中微塑料的命运和运输,该框架由拉格朗日三维(3D)粒子跟踪模型(PTM)和基于欧拉的水动力建模系统(TELEMAC)组成。3D PTM具有几个创新功能,可以实现精确的模拟,并与TELEMAC高效耦合,后者利用非结构化计算网格。PTM能够考虑时空变化的扩散率,并使用一种创新的算法来定位欧拉网格中的粒子。通过对几个测试用例的数值预测与已知解析解的比较,验证了与不同平流方案相关的模型精度。然后,通过应用PTM模拟加拿大东部圣约翰河河口下游的颗粒输运,研究了选择不同平流方案对微塑料输运建模的影响。利用6种不同复杂程度的数值格式研究了PTM预报对平流格式的敏感性。基于四阶龙格-库塔(RK4)格式预测的粒子分布和停留时间与使用传统一阶(欧拉)方法计算的粒子分布和停留时间有显著差异(停留时间高达100%)。三阶总变差递减(TVD3)龙格-库塔方法是最优的,提供最接近RK4的结果,计算成本降低约27%。
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来源期刊
Marine pollution bulletin
Marine pollution bulletin 环境科学-海洋与淡水生物学
CiteScore
10.20
自引率
15.50%
发文量
1077
审稿时长
68 days
期刊介绍: Marine Pollution Bulletin is concerned with the rational use of maritime and marine resources in estuaries, the seas and oceans, as well as with documenting marine pollution and introducing new forms of measurement and analysis. A wide range of topics are discussed as news, comment, reviews and research reports, not only on effluent disposal and pollution control, but also on the management, economic aspects and protection of the marine environment in general.
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