Spatial decision-making support for geoheritage conservation in the urban and indigenous environment of the Auckland Volcanic Field, New Zealand

Author:

Németh Boglárka1,Németh Károly12345ORCID

Affiliation:

1. Massey University, School of Agriculture and Environment, Palmerston North, New Zealand

2. Institute of Earth Physics and Space Science, Sopron, Hungary

3. The Geoconservation Trust Aotearoa Pacific, Ōpōtiki, New Zealand

4. Saudi Geological Survey, Jeddah, Kingdom of Saudi Arabia

5. Istituto Nazionale di Geofisica e Vulcanologia, Sezione di Bologna, Italy

Abstract

Abstract It is imperative today to make geoheritage conservation an essential part of all environmental standards and operational procedures. This is because geoheritage conservation secures the preservation of in situ geoheritage elements especially in urban environments such as Auckland. Geoheritage in Auckland is strongly associated with both indigenous culture and textbook geology of monogenetic volcanism, and it can play an important role in hazard forecasting and risk mitigation. To date, there has been a lack of policy or any planning tools based explicitly on the current geopreservation inventory. Here, we present an approach to support policy making informed by a spatial multi-criteria analysis that has long been used in environmental decision-making, supported by multi-layer mapping. A systematic literature review was undertaken to define the most accepted assessment criteria used in geoheritage evaluation. We identified six criteria for the base spatial layers of our analysis, highlighting the most suitable areas for geoheritage conservation. For cultural conservation, we used available archaeological shape files, indigenous land ownership data and elevation data (the volcanic cones had multiple roles in the life of first settlers, the ancestors of the Māori). Geographic Information Systems (GIS) multi-objective land use planning is an effective procedure for achieving complex planning and preservation objectives. It allows for outcomes based on quality data and sound analysis while minimizing compromise and conflict between geoheritage, social and cultural values.

Publisher

Geological Society of London

Subject

Geology,Ocean Engineering,Water Science and Technology

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