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粗有机固体的沉降速度。

Settling velocities of coarse organic solids.

作者信息

Pietsch Aaron J, Chapman John A

机构信息

Department of Bioproducts and Biosystems Engineering, University of Minnesota, Twin Cities, 1390 Eckles Ave, Saint Paul, MN, 55108, USA.

出版信息

Sci Rep. 2023 Aug 1;13(1):12436. doi: 10.1038/s41598-023-39645-x.

Abstract

The settling velocity of a particle is an integral parameter in stormwater modeling and design. The settling velocity can be used to predict the fate and transport of stormwater particles and if the particles contribute to nutrient loading in a watershed. Prediction of settling velocity for inorganic particles is generally well-researched and well-understood. Organic particles tend to vary widely in their physical properties and there are currently no set standards or empirical equations for estimating the settling velocity of organic particles. This paper presents data from tree leaves and seeds settling velocity experiments to better understand how organic particles settle in the context of settling velocity equations such as the one developed by Ferguson and Church. Analysis of the collected data showed that the second of the two drag coefficients (C) used in the Ferguson and Church Equation was sensitive to particle type and shape. By averaging C by particle type and species, there was a correlation between the observed settling velocity and the settling velocity predicted by the Ferguson and Church Equation (R = 0.83). With these results, stormwater modelers and designers are equipped with a better understanding of how to represent common organic particles in terms of settling velocity. Additional research on a wider variety of organic particle types and species would expand on the dataset presented here.

摘要

颗粒的沉降速度是雨水模型和设计中的一个综合参数。沉降速度可用于预测雨水颗粒的归宿和迁移,以及这些颗粒是否会导致流域内的养分负荷。对于无机颗粒沉降速度的预测,通常已有充分的研究和理解。有机颗粒的物理性质往往差异很大,目前尚无估算有机颗粒沉降速度的既定标准或经验方程。本文展示了树叶和种子沉降速度实验的数据,以便更好地理解在诸如弗格森和丘奇所提出的沉降速度方程的背景下,有机颗粒是如何沉降的。对收集到的数据进行分析表明,弗格森和丘奇方程中使用的两个阻力系数(C)中的第二个对颗粒类型和形状敏感。通过按颗粒类型和种类对C进行平均,观测到的沉降速度与弗格森和丘奇方程预测的沉降速度之间存在相关性(R = 0.83)。有了这些结果,雨水模型师和设计师就能更好地理解如何根据沉降速度来表示常见的有机颗粒。对更多种类的有机颗粒类型和种类进行进一步研究,将在此处展示的数据集基础上加以扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76ce/10393945/807030854682/41598_2023_39645_Fig1_HTML.jpg

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