Brightness of point application of fluorescent quinine tracer for surface waters

IF 0.4 4区 环境科学与生态学 Q4 WATER RESOURCES Engenharia Sanitaria E Ambiental Pub Date : 2023-07-28 DOI:10.1590/s1413-415220220212
J. D. de Lima, Soheil Zehsaz, J. L. Tavares, M. P. D. de Lima
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Abstract

Abstract Fluorescent tracers have been widely used in hydrology. Recently, quinine started to be used as a fluorescent tracer for estimating the velocity of surface sheet flows over various soil surface conditions and environments. In the present work, the visibility of the fluorescent tracer (quinine) was assessed for various applications’ forms of the tracer (liquid, ice cube with quinine and soaked sponge). The brightness intensity of all tracer forms was estimated for different hydraulic conditions (hydrostatic, linear, and rotational flows) and for clear water, and water with medium and high suspended sediment loads. Results show that, when used as a flow velocity tracer, liquid quinine solution has to be applied carefully into the water and should better be used on sheet flows, shallow overland flows or shallow still waters. Its visibility in deep and muddy flows is insufficient for surface velocity estimations. The sponge soaked with quinine solution, which partially floats, is better visible in clear waters or low-medium suspended sediment loads, regardless of the water depth. However, for high turbulence and rotational flows, the soaked sponge sinks and is no longer visible. The ice cubes showed better visibility in all tested flow water depths and suspended sediment loads, although, in very shallow depths (of millimetres), ice cubes cannot be used because they might not follow adequately the fluid motion, which also applies to the sponge.
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荧光奎宁示踪剂在地表水中的点敷亮度
荧光示踪剂在水文学研究中有着广泛的应用。最近,奎宁开始被用作荧光示踪剂,用于估计各种土壤表面条件和环境下表面片流的速度。在本工作中,对荧光示踪剂(奎宁)的各种应用形式(液体、奎宁冰块和浸泡海绵)的可见性进行了评估。所有示踪剂形式的亮度强度在不同的水力条件下(静水、线性流和旋转流)、清水、中等和高悬浮泥沙负荷的水中进行了估计。结果表明,液体奎宁溶液作为流速示踪剂使用时,必须谨慎地将其应用于水中,最好应用于片状流、浅层流或浅层静水中。它在深流和浊流中的可见度不足以估计地表速度。用奎宁溶液浸泡的海绵部分漂浮,无论水深如何,在清澈的水域或低-中等悬浮沉积物负荷中更明显。然而,对于高湍流和旋转流,浸泡的海绵下沉,不再可见。在所有测试的水流深度和悬浮沉积物载荷中,冰块都显示出更好的可视性,尽管在非常浅的深度(毫米)中,冰块不能被使用,因为它们可能不能充分地跟随流体运动,这也适用于海绵。
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来源期刊
CiteScore
0.90
自引率
20.00%
发文量
101
审稿时长
>12 weeks
期刊介绍: Information not localized
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