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Parameterization of ocean wave-induced mixing processes for finite water depth 被引量:6

Parameterization of ocean wave-induced mixing processes for finite water depth
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摘要 Three dimensional wave-induced mixing plays an important role in shallow water area. A quite direct approach through the Reynolds average upon characteristic length scale is proposed to parameterize the horizontal and vertical shallow water mixing. Comparison of finite depth case with infinite depth results indicates that the difference of the wave-induced mixing strength is evident. In the shallow water condition, the infinite water depth approximation overestimates the mixing strength in the lower layers. The nonzero horizontal wave-induced mixing presents anisotropic property near the shore. The Prandtl's mixing length theory underestimated the wave-induced mixing in the previous studies. Three dimensional wave-induced mixing plays an important role in shallow water area. A quite direct approach through the Reynolds average upon characteristic length scale is proposed to parameterize the horizontal and vertical shallow water mixing. Comparison of finite depth case with infinite depth results indicates that the difference of the wave-induced mixing strength is evident. In the shallow water condition, the infinite water depth approximation overestimates the mixing strength in the lower layers. The nonzero horizontal wave-induced mixing presents anisotropic property near the shore. The Prandtl's mixing length theory underestimated the wave-induced mixing in the previous studies.
出处 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2009年第4期16-22,共7页 海洋学报(英文版)
基金 supported by the national young scientist fund of China under contract under contract No 40206003 special fund for fundamental scientific research under contract (No 2007G15)
关键词 Reynolds average Characteristic length scale Wave-induced mixing parameter Reynolds average, Characteristic length scale, Wave-induced mixing parameter
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