Japan Geoscience Union Meeting 2023

Presentation information

[E] Online Poster

M (Multidisciplinary and Interdisciplinary) » M-GI General Geosciences, Information Geosciences & Simulations

[M-GI25] Near Surface Investigation and Modeling for Groundwater Resources Assessment and Conservation

Fri. May 26, 2023 10:45 AM - 12:15 PM Online Poster Zoom Room (22) (Online Poster)

convener:Jui-Pin Tsai(National Taiwan University, Taiwan), Ping-Yu Chang(National Central University), Hwa-Lung Yu(National Taiwan University), Makoto Taniguchi(Research Institute for Humanity and Nature)

On-site poster schedule(2023/5/25 17:15-18:45)

10:45 AM - 12:15 PM

[MGI25-P05] Delineating a volcanic aquifer using groundwater-induced gravity changes in the Tatun Volcano Group, Taiwan

*Tzuyi LIEN1 (1.National Taipei University)

Keywords:Gravity change, Tatun Volcano Group, Aquifer, Water table

The Tatun Volcanic Group (TVG) is an active volcanic system that poses potential volcanic hazards to northern Taiwan. Groundwater migration can be sensitive to volcanic activities and can induce temporal gravity changes. Here we conducted four gravity measurement campaigns in 2012 with two CG5 relative gravimeters at a total of 31 gravity monitoring sites to probe the spatiotemporal groundwater variability in the TVG area. With careful adjustments to the gravity measurements, the standard point gravity error was approximately 8 microGal on average. The observed gravity changes were compared with the groundwater-induced gravity variations derived from two hydrological models: the continuous flow model that consisted of one permeable layer (Model A) and a dynamic groundwater flow model that used the hydrological solver MODFLOW (Model B). The results show that only gravity observations in the central TVG match the simulated gravity pattern, i.e., the hydrology in the central TVG follows free groundwater flows within the interconnected and porous strata. On the other hand, inconsistencies between simulated and observed gravity changes range from 40 (positive) to 80 (negative) microGal. The discrepancies were located at the eastern and western areas in the TVG and showed opposite variations over time. This pattern of temporal variability cannot be attributed to the use of shallow aquifer models that merely reflect the surface recharges and discharges. We infer that the pattern stems from deep flows, such as hydrothermal fluids alternately replenishing aquifers to the east and west of the TVG, i.e., deep fluid conduits may have developed to the east and west of the TVG and bypassed the central area.