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国家自然科学基金(40806001)

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潮滩动力过程影响下扩散边界层和沉积物-水界面扩散通量的变化被引量:7
2012年
扩散边界层(DBL)控制了沉积物和上覆水间物质的交换,在潮流底边界层(BBL)的动力过程影响下,海洋DBL的厚度变化很大,溶解物质的扩散通量也有很大变化.因此探究影响DBL厚度和扩散通量变化的动力机制是准确估算扩散通量的关键前提,对近海水体营养盐补充和环境二次污染等问题的准确估计有重要意义.利用微尺度剖面仪和高频流速仪等对BBL的动力结构和DBL进行了联合观测.运用线性分布、剖面拐点和浓度方差法较准确地判识了DBL厚度.分别从水体和沉积物一侧计算了扩散通量,两者相差不超过6%.使用PROFILE模式对溶解氧剖面进行了精确模拟,获得了分层的单位体积耗氧速率.结果显示DBL厚度(0.10~0.35mm)和扩散通量(15.4~53.6mmolm2d1)在一个潮周期内均变化了3.5倍.通过进一步分析动力强迫对DBL厚度和扩散通量的影响,发现在平均流速控制DBL厚度占优的潮滩系统中,DBL厚度δDBL和平均流速大小U成反比,通过拟合得到了两者的关系式δDBL=1686.1DU1+0.1(其中D为分子扩散系数).扩散通量的变化分阶段受到了沉积物上覆海水和湍流混合强度变化的影响.在主要受湍流混合影响的阶段,扩散通量和湍动能耗散率、摩擦速度和湍动能的变化都有一定的正相关关系.
汪嘉宁赵亮魏皓
关键词:扩散通量动力过程溶解氧
Variable diffusion boundary layer and diffusion flux at sediment-water interface in response to dynamic forcing over an intertidal mudflat被引量:6
2012年
The diffusion boundary layer (DBL) significantly limits the exchange between sediment and overlying water and therefore becomes a bottleneck of diffusive vertical flux at the sediment-water interface (SWI). Variable DBL thickness and diffusion flux in response to dynamic forcing may influence replenishment of nutrients and secondary pollution in coastal waters. In situ measurements of velocity in the bottom boundary layer (BBL) and oxygen concentration in the DBL were made over an intertidal mudflat, using an acoustic Doppler current and mini profiler. A linear distributed zone in the oxygen profile, the profile slope discontinuity and variance of concentration can be used to derive accurate DBL thickness. Diffusion fluxes calculated from the water column and sediment are identical, and their bias is less than 6%. A numerical model PROFILE is used to simulate the in situ dissolved oxygen profile, and layered dissolved oxygen consumption rates in the sediment are calculated. The DBL thickness (0.10-0.35 mm) and diffusion flux (15.4-53.6 mmol m 2 d 1) vary with a factor of 3.5 during a tidal period. Over an intertidal mudflat, DBL thickness is controlled by flow speed U in the BBL, according to δDBL=1686.1DU 1+0.1 (D is the molecular diffusion coefficient). That is, the DBL thickness δDBL increases with decreasing flow speed U. Changes of diffusion flux at the SWI are caused by variations in the water above the sediment and the turbulent mixing intensity. The diffusion flux is positively related to the turbulent dissipation rate, friction velocity and turbulent energy. Under the influence of dynamics in the BBL, DBL thickness and flux vary significantly.
WANG JiaNingZHAO LiangWEI Hao
关键词:扩散通量潮间带水界面
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