(Proceedings of Symposium HS1001 at IUGG2007, Perugia, July 2007 – IAHS Publication 312, 2007 pp. 75)
The purpose of this study is to reveal the basin-wide groundwater flow system in a Quaternary pyroclastic bedrock aquifer by using several hydrological methods: catchment hydrometric observations, environmental isotope study of the spring water and observation borehole levels including inland, onshore and offshore boreholes, basin-wide groundwater potential monitoring, geophysical methods to understand the aquifer distribution, water balance for the representative paired catchments in the study basin including micro-meteorological evapotranspiration measurements, direct submarine groundwater discharge (SGD) measurements by automatic seepage meters, and three-dimensional groundwater flow simulations based on observed hydrological data. The results clearly show that topographically driven groundwater flow systems with different flow dynamics and residence times exist in the study catchments and strongly support the hydrological characteristics of local springs and a river discharge system including coastal SGD. Also, a stagnant fresh groundwater system exists under the present sea bed which is completely separate from the land-based groundwater flow systems, and is thought to be a kind of remant palaeo groundwater recharged during the previous repression era. This has no direct relation to the present SGD in the area.
Groundwater flow system, Environmental isotopes, Groundwater potential, Submarine groundwater discharge, Observation borehole, Remnant palaeo groundwater