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Numerical study of hydrodynamic and salinity transport processes in the Pink Beach wetlands of the Liao River estuary, China

机译:辽河口粉红海滩湿地水动力和盐分运移过程的数值研究

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Interaction studies of vegetation within flow environments are essential for the determination of bank protection, morphological characteristics and ecological conditions for wetlands. This paper uses the MIKE 21 hydrodynamic and salinity model to simulate the hydrodynamic characteristics and salinity transport processes in the Pink Beach wetlands of the Liao River estuary. The effect of wetland plants on tidal flow in wetland areas is represented by a varying Manning coefficient in the bottom friction term. Acquisition of the vegetation distribution is based on Landsat TM satellites by remote sensing techniques. Detailed comparisons between field observation and simulated results of water depth, salinity and tidal currents are presented in the vegetated domain of the Pink Beach wetlands. Satisfactory results were obtained from simulations of both flow characteristics and salinity concentration, with or without vegetation. A numerical experiment was conducted based on variations in vegetation density, and compared with the tidal currents in non-vegetated areas; the computed current speed decreased remarkably with an increase in vegetation density. The impact of vegetation on water depth and salinity was simulated, and the findings revealed that wetland vegetation has an insignificant effect on the water depth and salinity in this wetland domain. Several stations (from upstream to downstream) in the Pink Beach wetlands were selected to estimate the longitudinal variation of salinity under different river runoff conditions; the results showed that salinity concentration decreases with an increase in river runoff. This study can consequently help increase the understanding of favourable salinity conditions for particular vegetation growth in the Pink Beach wetlands of the Liao River estuary. The results also provide crucial guidance for related interaction studies of vegetation, flow and salinity in other wetland systems.
机译:流动环境中植被的相互作用研究对于确定河岸保护,形态特征和湿地生态条件至关重要。本文利用MIKE 21水动力和盐度模型来模拟辽河口粉红海滩湿地的水动力特性和盐分迁移过程。湿地植物对湿地地区潮汐流的影响由底部摩擦项中变化的曼宁系数表示。植被分布的获取基于Landsat TM卫星的遥感技术。在粉红海滩湿地的植被域中,进行了野外观察与水深,盐度和潮流模拟结果的详细比较。通过模拟流动特性和盐度浓度(有或没有植被)均获得令人满意的结果。根据植被密度的变化进行了数值试验,并与非植被区的潮流进行了比较。随着植被密度的增加,计算出的电流速度显着下降。模拟了植被对水深和盐度的影响,研究结果表明,湿地植被对该湿地域的水深和盐度影响不显着。选择了粉红海滩湿地中的几个站点(从上游到下游),以估算不同河流径流条件下盐度的纵向变化。结果表明,随着河流径流的增加,盐分浓度降低。因此,这项研究可以帮助人们了解辽河河口粉红海滩湿地中特定植被生长的有利盐分条件。研究结果也为其他湿地系统中植被,水流和盐分的相互作用研究提供了重要的指导。

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