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Dynamic simulation of a duckweed-dominated wetland in north China based on a system dynamics model

机译:基于系统动力学模型的华北浮萍为主的湿地动态模拟

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摘要

Duckweed is a common category of floating plant which floats on or beneath the surface of still or slow-moving bodies of wetlands.Its growth has much effect on the hydro-ecological process of wetlands.However, in the existing wetland-ecosystem simulation models which contained floating- or emergent-plant modules, the shading effect of macrophytes and the relationship between macrophytes and phytoplankton in the wetland ecosystem were not considered sufficiently.When these models were directly used in the modeling of duckweed-dominated wetlands, the simulation effects of main state variables such as phytoplankton and dissolved inorganic phosphorus in water were poor and the models could not completely respond to the changes of the external variables. Through a field experiment and parameter calibrations, the shading effect of duckweed and the relationship between duckweed and phytoplankton were considered originally in this study. A duckweed-dominated wetland structurally dynamic (DWSD) model was developed for the Hanshiqiao wetland in Beijing. The development of this model included three procedures. (1) The relationship between the shading effect of duckweed and the biomass of duckweed was investigated based on a field experiment. (2)The equations of transmitted light intensity in water and of the growth of phytoplankton were revised according to the relationship obtained. (3)A module of duckweed was developed, and was incorporated into the structurally dynamic model. The DWSD model was calibrated and verified using the ecological survey data of the Hanshiqiao wetland in 2014. The decisive coefficients (R2) and Nash-Sutcliffe coefficients (ENS) for model calibration were not less than 0.9 in reproducing A and FP, and meanwhile R2and ENSof A and FP for model validation were all above 0.8. They showed that this model had acceptable simulation efficiencies both in calibration and verification. The DWSD model was used to predict changes of main state variables in 2015. As the simulation results showed, the module of duckweed posed significant impacts on the modeling of results, which performed in various aspects. For instance, the precision of this model was increased. The simulated values of phytoplankton and detritus in water for the DWSD model were all closer to the observed values than that without the module of duckweed. The transmitted light intensity in water from July to October was decreased. The growth of phytoplankton was inhibited and the simulated values of the content of detritus and the concentration of phosphorus in water were increased.
机译:浮萍是漂浮在静止或缓慢移动的湿地表面上或下面的浮游植物的一类,其生长对湿地的水生态过程有很大影响,但是在现有的湿地-生态系统模拟模型中在浮游植物模块中,没有充分考虑大型植物的遮荫效应以及湿地生态系统中大型植物与浮游植物之间的关系。当这些模型直接用于浮萍为主的湿地建模时,主要模拟效果浮游植物和水中溶解的无机磷等状态变量差,模型无法完全响应外部变量的变化。通过野外试验和参数校准,本研究最初考虑了浮萍的遮阳效果以及浮萍与浮游植物之间的关系。针对北京的韩石桥湿地开发了以浮萍为主的湿地结构动态(DWSD)模型。该模型的开发包括三个过程。 (1)通过野外试验研究了浮萍的遮阳效果与浮萍生物量之间的关系。 (2)根据得到的关系式,修正了水中的透射光强度和浮游植物生长的方程。 (3)开发了浮萍模块,并将其纳入结构动力学模型。利用2014年汉市桥湿地生态调查数据对DWSD模型进行了校准和验证。模型A的决定性系数(R2)和纳什-萨克克利夫系数(ENS)在繁殖A和FP中均不小于0.9,同时R2和用于模型验证的ENSof A和FP均高于0.8。他们表明,该模型在校准和验证方面均具有可接受的仿真效率。 DWSD模型用于预测2015年主要状态变量的变化。如仿真结果所示,浮萍的模块对结果建模产生了重大影响,该建模在各个方面进行。例如,该模型的精度提高了。与没有浮萍模块的情况相比,DWSD模型的水中浮游植物和碎屑的模拟值都更接近实测值。从7月到10月,水中的透射光强度降低。抑制了浮游植物的生长,增加了水中碎屑含量和磷浓度的模拟值。

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