HR: 0800h
AN: H11C-0648 [Abstracts]
TI: Isotopic approach to understanding the groundwater flow system within an andesitic stratovolcano in a temperate humid region: case study of Ontake volcano, central Japan
AU: * Asai, K
EM: kazuyoshi@geolab.co.jp
AF: Kazuyoshi Asai, Chikyu Kagaku Kenkyusho Inc. 1-608 Ueda Honmachi Tenpaku, Nagoya,
4680007, Japan
AU: Satake, H
EM: satake@sci.u-toyama.ac.jp
AF: Hiroshi Satake, Department of Environmental Biology and Chemistry, University of Toyama,
Toyama, 9308555, Japan
AU: Tsujimura, M
EM: mktsuji@atm.geo.tsukuba.ac.jp
AF: Maki Tsujimura, Graduate School of Life and Environmental Sciences, University of
Tsukuba, Tsukuba, 3058571, Japan
AB:
We used isotope tracer methods to clarify the groundwater flow system within Mt. Ontake: a stratovolcano
consisted of andesite lava and pyroclastic rock, located within a temperate humid region. Precipitation was
collected monthly at 11 sites on the south, east, north, and west slopes of the volcano for a period of 26 months.
The weighted mean delta-value in precipitation show a clear decrease with increasing elevation (altitude effect)
on all slopes and is relatively low on the leeward slope (rain-shadowing effect). The springs collected over the
entire area of the volcano show δ values that are controlled by the altitude effect and the rain-shadowing
effect on precipitation. The average recharge elevation of the individual springs was calculated from their
δ18O values and the equation of the altitude effect of groundwater for corresponding slope. The
average recharge elevation and tritium concentration in springs indicate that the large-scale groundwater flow
systems (vertical drop: ca. 800m) with a relatively long residence time are maintained along the lava flow in the
younger volcano north zone, whereas a relatively small-scale groundwater flow systems (vertical drop: ca. 400m)
distribute across a wide range of elevation in the younger volcano south zone. In older volcano zone at the foot of
the volcano body, it is inferred that local groundwater flow systems (vertical drop: less than 200m) dominate and
that these flow systems are not connected to those in the younger volcano zone. Consequently, the scale of the
groundwater flow system decreases with increasing age of the volcano body. This contraction of the flow system
with time might reflect the progressive erosion of the volcano body, especially within the younger volcano zone.
DE: 0454 Isotopic composition and chemistry (1041, 4870)
DE: 1800 HYDROLOGY
DE: 1829 Groundwater hydrology
SC: Hydrology [H]
MN: 2007 Fall Meeting