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首页> 外文期刊>Journal of marine science and technology >FLOW CHARACTERISTICS OF SPILLING AND PLUNGING BREAKERS IN THE SURF ZONE
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FLOW CHARACTERISTICS OF SPILLING AND PLUNGING BREAKERS IN THE SURF ZONE

机译:冲浪区中冲撞和突水的流动特性

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摘要

Fundamental flow characteristics in the surf zone of spilling (SP) and plunging (PL) breakers are compared using a well-validated numerical model named COBRAS. The main objective is to investigate how beach slope affects flow characteristics (streamline topography, vorticity evolution processes, TKE dynamics and reverse flow) in the surf zone of plunging (PL) and spilling (SP) breakers. The major results are of four categories: (1) the streamline topography of PL waves is mostly similar to that of SP. For both types of breaker, a convergent stagnation point (CSP) always appears in the offshore direction after the generation of a divergent stagnation point (DSP). The location of a DSP is generally underneath the front face of wave crest. Both DSP and CSP move to the inner surf zone following wave propagation. (2) the main difference of vortices evolution is that clockwise (CW) vortices after wave breaking are stronger for PL waves but mild for SP waves. The CW vortices of SP decay upstream directly but those of PL waves advect toward the bottom slope and then degenerate upstream. (3) The TKE generated by PL waves is much larger than that generated by SP waves. The distributions of generated TKE values of SP and PL waves are similar to the corresponding vortex motions. (4) The maximum magnitude of reverse flow in surf-zone of PL waves is around 1.4 times that of SP waves.
机译:使用经过充分验证的名为COBRAS的数值模型,对溢漏(SP)和下降(PL)破碎器冲浪区的基本流动特性进行了比较。主要目的是研究在倾斜(PL)和溢出(SP)破碎锤的冲浪区域中,海滩坡度如何影响流动特征(流线形貌,涡度演变过程,TKE动力学和逆流)。主要结果分为四类:(1)PL波的流线形貌与SP波的形貌最相似。对于这两种类型的断路器,在产生发散的停滞点(DSP)之后,收敛的停滞点(CSP)始终出现在海上方向。 DSP的位置通常在波峰的正面下方。随着波传播,DSP和CSP都移至内部冲浪区。 (2)涡旋演化的主要区别在于,破波后的顺时针(CW)涡旋对于PL波较强,而对于SP波则较弱。 SP的CW涡流直接向上游衰减,而PL波的CW涡流向底部倾斜,然后向上游退化。 (3)PL波产生的TKE比SP波产生的TKE大得多。 SP和PL波的生成的TKE值的分布类似于相应的涡旋运动。 (4)PL波冲浪区的逆流最大幅度约为SP波的1.4倍。

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