Wu Ray-Shyan, Liu Wen-Cheng, Hsieh Wen-Hsiung
Department of Civil Engineering, National Central University, Jung-Li, Taiwan.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2004;39(6):1455-77. doi: 10.1081/ese-120037846.
Based on the measured data, including total phosphorus, chlorophyll a, and Secchi disk depth, the Shihmen Reservoir in the state of mesotrophic to eutrophic. A two-dimensional, laterally averaged, finite-difference hydrodynamic, and water quality model was applied to simulate water quality conditions in the reservoir to determine appropriate strategies for the management of water quality. Data collected in the field for a two-year period were utilized to calibrate and verify the model. The model calibration and verification were achieved with water surface elevation, temperature, and water quality constituents such as nutrients, dissolved oxygen, and chlorophyll a. Then the model was used to simulate chlorophyll a concentrations under several scenarios corresponding to various waste load reduction ratios. A 90% reduction of nutrient loadings will upgrade the existing eutrophic/mesotrophic conditions to oligotrophic condition in both 2001 and 2002, exception January in 2001. The modeling effort had yielded valuable information that can be used by decision maker for the evaluation of different management strategies of reduction of nutrients coming from the catchment area.
根据总磷、叶绿素a和塞氏盘深度等实测数据,石门水库处于中营养至富营养状态。应用二维横向平均有限差分水动力和水质模型来模拟水库中的水质状况,以确定合适的水质管理策略。利用两年期间在实地收集的数据对模型进行校准和验证。通过水面高程、温度以及营养物质、溶解氧和叶绿素a等水质成分实现了模型的校准和验证。然后,该模型用于模拟对应于各种废水负荷削减率的几种情景下的叶绿素a浓度。营养负荷减少90%将在2001年和2002年将现有的富营养/中营养状态提升为贫营养状态,但2001年1月除外。建模工作产生了有价值的信息,决策者可利用这些信息评估减少来自集水区营养物质的不同管理策略。