C. Monjardin, Raheemah A. Gomez, Marc Noblen G. Dela Cruz, Dennis Limher R. Capili, F. J. Tan, F. A. Uy
{"title":"Sediment Transport and Water Quality Analyses of Naic River, Cavite, Philippines","authors":"C. Monjardin, Raheemah A. Gomez, Marc Noblen G. Dela Cruz, Dennis Limher R. Capili, F. J. Tan, F. A. Uy","doi":"10.1109/SusTech51236.2021.9467420","DOIUrl":null,"url":null,"abstract":"The study aimed to investigate the relationship between sediment transport and water quality change in Naic River, Cavite — a body of water exposed to various environmental and anthropogenic stressors such as urbanization, pollution and flooding. This research seeks to contribute to the limited research-based understanding of the dynamic, and potentially harmful relationship between sediments and water quality. To fill the gap, this study utilized the Hydrologic Engineering Centre-River Analysis System (HEC-RAS) model to forecast the river’s sediment volume and water quality from the period of January 2020-2021 using average weather flow under existing river geometry and characteristics. Additionally, water samples collected from three stations of the river were used for the analyses. This research has found that significan sediment volume will accumulate in the river, BOD will also increased, and the DO on the other hand decreased by the end of the year. Statistical analyses have also revealed a strong inverse relationship between the DO and the cumulative sediment volume; and a weak direct relationship between the cumulative sediment volume and the BOD. A potential increase in sediment volume will be particularly significant in the river's outlet based on the projection made which suggests that the Naic River might receive high amounts of pollutants. Furthermore, there was a strong agreement between the actual data and the HEC-RAS predicted data — which accounts for the efficiency of the method used in the study. Finally, because its water quality falls short of DENR's standards, this research confirms that the river is polluted. The results of this study may be used for close monitoring of the parameters that cause degradation of the water quality in the river. Various engineering solutions such as decentralized wastewater treatment and sustainable sediment management strategies are suggested to improve river water quality.","PeriodicalId":127126,"journal":{"name":"2021 IEEE Conference on Technologies for Sustainability (SusTech)","volume":"42 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-04-22","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2021 IEEE Conference on Technologies for Sustainability (SusTech)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/SusTech51236.2021.9467420","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 3
Abstract
The study aimed to investigate the relationship between sediment transport and water quality change in Naic River, Cavite — a body of water exposed to various environmental and anthropogenic stressors such as urbanization, pollution and flooding. This research seeks to contribute to the limited research-based understanding of the dynamic, and potentially harmful relationship between sediments and water quality. To fill the gap, this study utilized the Hydrologic Engineering Centre-River Analysis System (HEC-RAS) model to forecast the river’s sediment volume and water quality from the period of January 2020-2021 using average weather flow under existing river geometry and characteristics. Additionally, water samples collected from three stations of the river were used for the analyses. This research has found that significan sediment volume will accumulate in the river, BOD will also increased, and the DO on the other hand decreased by the end of the year. Statistical analyses have also revealed a strong inverse relationship between the DO and the cumulative sediment volume; and a weak direct relationship between the cumulative sediment volume and the BOD. A potential increase in sediment volume will be particularly significant in the river's outlet based on the projection made which suggests that the Naic River might receive high amounts of pollutants. Furthermore, there was a strong agreement between the actual data and the HEC-RAS predicted data — which accounts for the efficiency of the method used in the study. Finally, because its water quality falls short of DENR's standards, this research confirms that the river is polluted. The results of this study may be used for close monitoring of the parameters that cause degradation of the water quality in the river. Various engineering solutions such as decentralized wastewater treatment and sustainable sediment management strategies are suggested to improve river water quality.
该研究旨在调查纳伊克河(Naic River, Cavite)的泥沙运移与水质变化之间的关系。纳伊克河是一个暴露于城市化、污染和洪水等各种环境和人为压力源的水体。本研究旨在促进对沉积物和水质之间动态和潜在有害关系的有限研究基础的理解。为了填补这一空白,本研究利用水文工程中心-河流分析系统(HEC-RAS)模型,利用现有河流几何形状和特征下的平均天气流量,预测了2020年1月至2021年1月期间河流的泥沙体积和水质。此外,从该河的三个站点收集的水样用于分析。本研究发现,到年底,河流中会积累大量泥沙,BOD也会增加,而DO则会减少。统计分析还显示,DO与累积泥沙体积呈强烈的负相关;累积泥沙体积与BOD之间的直接关系较弱。根据所作的预测,纳伊克河可能会受到大量污染物的污染,因此河流出水口沉积物量的潜在增加将特别显著。此外,实际数据与HEC-RAS预测数据之间有很强的一致性,这说明了研究中使用的方法的效率。最后,由于其水质没有达到DENR的标准,本研究证实了这条河被污染了。本研究结果可用于密切监测引起河流水质退化的参数。提出了分散污水处理和可持续泥沙管理等工程解决方案,以改善河流水质。