Dıscrete-tıme dynamıc water qualıty ındex model ın coastal water

H. Hapoglu, Şule Camcıoğlu, B. Özyurt, Pelin Yıldırım, L. Balas
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Abstract

BACKGROUND AND OBJECTIVES: It is important to develop dynamic water quality index software that reflected accurately the state of enclosed coastal water quality. This study explored water quality index model software including the third-order and daily based discrete-time transfer function in Simulink-MATLAB environment to predict the past and future water quality index changes versus discrete-time by using the data measured approximately once a month. METHODS: A modelling software for daily based discrete-time water quality index was developed to evaluate the pollution level in enclosed coastal water bodies affected by marinas. Measurements were done at three different stations near marina entrances in Bucak, Kas, and Fethiye Bays located at the south western Mediterranean coast of Turkey. The computed water quality index values and the sampled indicators data defined in terms of the deviation variables were used to identify the proposed third-order transfer function parameters. The proposed software is applicable for past and future estimates, where inputs may include some missing measurements. The input data are interpolated to estimate daily based inputs by using the developed model in the Simulink-MATLAB environment. For model verifications, monthly measured water quality parameters are used. FINDINGS: The software including the daily based discrete-time transfer function and the input sources was successfully applied to predict past and future water quality index changes with 4.2 percent, 4.3 percent, and 7.1 percent of the absolute maximum errors respectively in Fethiye, Kas, and Bucak stations. In three stations studied, seasonal comparison of the enclosed coastal water quality showed that the quality in winter (72±2) is lower than the one (82±8) in other seasons. The past and future daily predictions of water quality index changes versus discrete-time were realized successfully by using the proposed software and the data measured approximately once a month. CONCLUSION: By determining similar transfer functions and selecting some adequate indicators, the software proposed can be adapted for quality assessment in other enclosed water bodies.==========================================================================================COPYRIGHTS©2021 The author(s). This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY 4.0), which permits unrestricted use, distribution, and reproduction in any medium, as long as the original authors and source are cited. No permission is required from the authors or the publishers.==========================================================================================
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海岸水动态水汽温度模型的解密
背景与目的:开发能够准确反映近海封闭水域水质状况的动态水质指标软件具有重要意义。本研究利用Simulink-MATLAB环境下的三阶离散时间传递函数和基于日的离散时间传递函数,利用大约一个月一次的测量数据预测过去和未来的水质指数相对于离散时间的变化。方法:开发了基于日的离散时间水质指数建模软件,以评估受码头影响的封闭沿海水体的污染水平。测量是在位于土耳其地中海西南海岸的Bucak、Kas和Fethiye海湾码头入口附近的三个不同站点进行的。利用计算得到的水质指标值和用偏差变量定义的采样指标数据来识别所提出的三阶传递函数参数。建议的软件适用于过去和未来的估计,其中输入可能包括一些缺失的测量。通过在Simulink-MATLAB环境中使用所开发的模型,对输入数据进行插值,以估计每日的基础输入。为了验证模型,使用每月测量的水质参数。结果:该软件包括基于日的离散时间传递函数和输入源,成功地应用于预测过去和未来水质指数的变化,Fethiye、Kas和Bucak站的绝对最大误差分别为4.2%、4.3%和7.1%。3个站点封闭海岸水质的季节对比表明,冬季水质(72±2)低于其他季节水质(82±8)。通过使用所提出的软件和大约每月测量一次的数据,成功地实现了水质指数变化相对于离散时间的过去和未来的每日预测。结论:通过确定相似的传递函数,选择适当的指标,所建软件可适用于其他封闭水体的水质评价。========================================================================================== 版权©2021年作者(年代)。这是一篇根据知识共享署名协议(CC BY 4.0)发布的开放获取文章,该协议允许在任何媒体上不受限制地使用、分发和复制,只要引用原作者和来源。不需要许可从作者和出版商 .==========================================================================================
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来源期刊
CiteScore
7.90
自引率
2.90%
发文量
11
审稿时长
8 weeks
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