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Changes in drag and drag coefficient on small Sargassum horneri (Turner) C. Agardh individuals

机译:小Sargassum Horneri(Turner)C. Agardh个人的阻力和拖动系数的变化

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Sargassum horneri (Turner) C. Agardh is used to restore, create, and recreate seaweed beds along the coastlines of East Asia. Drag produced by waves is a bulk force that can detach thalli from substrata during the early growth stages from substrata. In this study we measured drag forces on small S. humeri thalli (10-40 cm long). Unidirectional steady flow was controlled from 20 to 130 cm s(-1) in increments of 10 cm s(-1) in a recirculating water tank. Drag force on individuals ranged from similar to 0.3 N to similar to 3 N. Drag (F-drag) and water velocity (U) produced the following exponential empirical approximations: F-drag = 0.0168 x U-0.8925. The drag coefficient (Cd) was plotted as a function of Reynolds number (Re) as follows: Cd = 4744.7 x Re-0.93. Cd converged to 0.037 at Re of 10(5-6) suggesting that small thalli exhibit optimal morphological adaptations to withstand high current speeds.
机译:Sargassum Horneri(Turner)C. Agardh用于沿着东亚海岸线恢复,创建和重新创建海藻床。 波浪产生的拖动是一种散装力,可以在来自SubStata的早期生长阶段在Substra中分离Zalli。 在这项研究中,我们测量了在小型S. Humeri Thalli(10-40厘米长)上的阻力。 单向稳定流动在再循环水箱中以10cm S(-1)的增量控制20至130cm S(-1)。 拖动的个体上的力量范围类似于0.3 n至类似于3 n。拖动(f-tl)和水速度(u)产生了以下指数经验近似:f-tlag = 0.0168 x U-0.8925。 卷系数(CD)作为雷诺数(RE)的函数,如下所示:CD = 4744.7 x RE-0.93。 CD在RE 10(5-6)的RE融合到0.037,表明小型Thalli表现出最佳的形态适应以承受高电流速度。

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