利用QSWAT模拟拉古纳帕拉帕金湖的弥漫性养分和沉积物污染

Jaztine Danielle Linato, F. Sarte, Frederico B. Dela Peña
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引用次数: 0

摘要

-帕拉巴津湖易受营养物和沉积物污染,导致富营养化和淤积。尽管现有的研究确定了污染物并检测了它们在湖中的浓度,但它们的来源通常被归因于农业活动,被认为是一种非点源。利用土壤和水分析工具(SWAT)模拟了拉古纳圣巴勃罗市帕拉帕金湖的弥漫性沉积物和营养物污染。该模型是基于物理的,需要DEM、土壤图、LULC图、坡度图和气象数据作为输入,模拟与水运动、泥沙运动、养分循环等相关的物理过程。由于水文资料不足,校正模型的统计结果不能令人满意,故采用未校正模拟。结果表明,土壤中no3 -N和po4的主要来源是农业用地和粘土和粘土壤土下垫区。沿着连接Palakpakin湖和Laguna de Bay的河流也发现了关键的源头。同时,在Sampaloc湖和其他湖泊的出水口以及农业和城市地区,产沙量明显增加。此外,模型显示降水的增加与泥沙的增加是一致的
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling Diffuse Nutrient and Sediment Pollution affecting Lake Palakpakin, Laguna using QSWAT
- Lake Palakpakin is vulnerable to nutrient and sediment pollution, leading to eutrophication and siltation. Despite existing studies identifying the pollutants and detecting their concentration within the lake, their sources were generally attributed to agricultural activities, considered a nonpoint source. This research modelled the diffuse sediment and nutrient pollution affecting Lake Palakpakin, San Pablo City, Laguna using Soil and Water Analysis Tool (SWAT). This model is physically based, requiring DEM, soil map, LULC map, slope map, and meteorological data as inputs to model physical processes associated with water movement, sediment movement, nutrient cycling, etc. Due to the unsatisfactory statistical results of the calibrated model caused by insufficient hydrological data, the uncalibrated simulation was used. It revealed that the critical source areas for NO 3 -N and PO 4 are found in agricultural lands and areas that are underlain by clay and clay loam. Critical source areas were also found along the stream connecting Palakpakin lake to Laguna de Bay. Meanwhile, higher sediment yields were distinct around Sampaloc Lake and the outlet of the other lakes and in agricultural and urban areas. Moreover, the model exhibited that an increase in precipitation coincides with an increase in sediment
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