Published 1989 | Version v1
Journal article

Sources and flow of north Canterbury Plains groundwater, New Zealand

  • 1. Institute of Nuclear Sciences, Department of Scientific and Industrial Research, Lower Hutt (New Zealand)
  • 2. 7 Paulus Terrace, Christchurch (New Zealand)
  • 3. Groundwater Consultants NZ Limited, Auckland (New Zealand)

Description

Geological, hydrological, isotope (tritium and 18 O) and chemical evidence is interpreted to give a mutually consistent picture of the recharge sources and flow patterns of the important groundwater resource in the deep Quaternary deposits of the Canterbury Plains between Selwyn R. and Ashley R. The study period for tritium measurements extends over 27 years, encompassing the peak and decline of thermonuclear tritium fallout in this region. Major rivers emerging from mountain catchments to the west of the Plains are depleted in 18 O relative to average low-level precipitation. Most of the groundwater is river-recharged, but some areas with significant local precipitation recharge are clearly identified by 18 O and chemical concentrations. Artesian groundwater underlying Christchurch ascends from deeper aquifers into the shallowest aquifer via gaps in the confining layers; much of this flow is induced by withdrawal. The Christchurch aquifers are recharged by infiltration from Waimakariri R. in its central Plains reaches, and the resulting flow regime is E- and SE-directed; satisfactory water quality of the deeper Christchurch aquifer appears to be guaranteed for the future provided the river can be maintained in its present condition. Shallow groundwater, and water recharged to depth by other rivers, irrigation and local precipitation on the unconfined western areas of the Plains, are more susceptible to agricultural and other pollutants; none of this water is encountered in the deeper aquifers under Christchurch. (author). 15 refs., 12 figs

Additional details

Publishing Information

Journal Title
Journal of Hydrology (Lower Hutt)
Journal Issue
no.106,3/4
Journal Page Range
p. 311-340
ISSN
0022-1694

Optional Information

Notes
Also known as INS-Repr--417