Impact of rigid vegetation on wave attenuation and flow structure
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    Abstract:

    Flume experiments were carried out to study the effect of vegetation on wave attenuation and turbulence. Wood cylinders were used to simulate the rigid vegetation. Wave height attenuation and flow structures were analyzed for five vegetation configuration types and four kinds of wave conditions. The results show that vegetation density has great influence on wave attenuation. With the wave propagating inside the vegetation zone, the rate of wave attenuation decreases. The attenuation of short waves is larger than that of long waves. The relationship between the drag coefficient of vegetation(CD)and Keulegan-Carpenter number(KC)is fitted with a quadratic function, and CD decreases with the increase of KC with a decreasing variation rate. Turbulent kinetic energy(ETK)in the vegetation zone increases with the wave height and vegetation density. ETK induced by submerged vegetation is larger than that by emerged vegetation. Under the effect of submerged vegetation, ETK increases from the vegetation bottom to water surface, and the highest ETK occurs near the top of vegetation canopy.

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陈明,刘曙光,娄厦,等.刚性植物对波高衰减和水流结构的影响[J].水利水电科技进展,2018,38(6):37-42.(CHEN Ming, LIU Shuguang, LOU Sha, et al. Impact of rigid vegetation on wave attenuation and flow structure[J]. Advances in Science and Technology of Water Resources,2018,38(6):37-42.(in Chinese))

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History
  • Received:November 22,2017
  • Revised:
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  • Online: November 15,2018
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