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Traditional estimation of submarine groundwater discharge (SGD) relies on isotopic mass balance calculation, which is a form of regional box modeling that cannot resolve spatial heterogeneity. This study proposes an entirely new approach by coupling a general marine hydrodynamic simulation model with a global optimization algorithm. The framework simulates the transport and mixing of isotopic tracers in coastal waters, and optimizes spatially distributed SGD fields to best match observed isotope activities.
The results demonstrate that the estimated SGD exhibits strong spatial heterogeneity, a feature that conventional box models systematically miss. Furthermore, the study reveals that isotope sampling time has a significant effect on estimation accuracy. Specifically, fluctuations in seawater level and a time lag in isotope activity response to water level changes must be considered to ensure representativeness of measured isotope activities.
Overall, the proposed simulation-optimization framework adds a versatile and powerful new tool for more detailed SGD estimation. It represents a major methodological advance beyond traditional box-model approaches, enabling spatially explicit quantification of SGD without requiring additional field instrumentation beyond routine isotope sampling.
01月12日
2027
01月15日
2027
初稿截稿日期
注册截止日期
2024年12月11日 中国
第七届厦门海洋环境开放科学大会(XMAS 2025)2023年01月09日 中国 Xiamen
第六届厦门海洋环境科学开放大会
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