首页> 外文期刊>Journal of industrial and management optimization >PARAMETER IDENTIFICATION AND NUMERICAL SIMULATION FOR THE EXCHANGE COEFFICIENT OF DISSOLVED OXYGEN CONCENTRATION UNDER ICE IN A BOREAL LAKE
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PARAMETER IDENTIFICATION AND NUMERICAL SIMULATION FOR THE EXCHANGE COEFFICIENT OF DISSOLVED OXYGEN CONCENTRATION UNDER ICE IN A BOREAL LAKE

机译:冰层下冰中溶解氧浓度交换系数的参数识别和数值模拟

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摘要

Dissolved oxygen (DO) is one of the main parameters to assess the quality of lake water. This study is intended to construct a parabolic distributed parameter system to describe the variation of DO under the ice, and identify the vertical exchange coefficient K of DO with the field data. Based on the existence and uniqueness of the weak solution of this system, the fixed solution problem of the parabolic equation is transformed into a parameter identification model, which takes K as the identification parameter, and the deviation of the simulated and measured DO as the performance index. We prove the existence of the optimal parameter of the identification model, and derive the first order optimality conditions. Finally, we construct the optimization algorithm, and have carried out numerical simulation. According to the measured DO data in Lake Valkea-Kotinen (Finland), it can be found that the orders of magnitude of the coefficient K varying from 10(-6) to 10(-1) m(2) s(-1), the calculated and measured DO values are in good agreement. Within this range of K values, the overall trends are very similar. In order to get better fitting, the formula needs to be adjusted based on microbial and chemical consumption rates of DO.
机译:溶解氧(DO)是评估湖水质量的主要参数之一。这项研究旨在构建一个抛物线形分布参数系统,以描述冰层下DO的变化,并利用野外数据确定DO的垂直交换系数K。基于该系统弱解的存在性和唯一性,将抛物方程的固定解问题转化为参数识别模型,该模型以K为识别参数,以模拟和实测DO的偏差作为性能指标。指数。我们证明了辨识模型最优参数的存在,并推导了一阶最优条件。最后,我们构造了优化算法,并进行了数值模拟。根据在瓦尔基亚-科蒂宁湖(芬兰)测得的溶解氧数据,可以发现系数K的数量级从10(-6)到10(-1)m(2)s(-1)不等,计算出的DO值与测量值相吻合。在此K值范围内,总体趋势非常相似。为了获得更好的拟合度,需要根据溶解氧的微生物和化学消耗率来调整公式。

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