HR: 0800h
AN: V41A-0389 [Abstracts]
TI: The Iceland Deep Drilling Project (IDDP): (I) A New Era in Geothermal Development?
AU: * Elders, W A
EM: elders@ucr.edu
AF: Univ. of California-Riverside, Dept. of Earth Sciences, Riverside, CA 92521, United States
AU: Fridleifsson, G O
AF: Hitaveita Sudurnesja Ltd, Brekkustig 36, Reykjanesbaer, IS 260, Iceland
AU: Bird, D K
AF: Stanford Univ., Dept. of Geological and Environmental Sciences, Stanford, CA 94305,
United States
AU: Reed, M H
AF: Univ. of Oregon, Dept. of Geological Sciences, Eugene, Or 97403, United States
AU: Schiffman, P
AF: Univ. of California-Davis, Dept. of Geology, Davis, CA 95616, United States
AU: Zierenberg, R
AF: Univ. of California-Davis, Dept. of Geology, Davis, CA 95616, United States
AB:
The Iceland Deep Drilling Project (IDDP) announced in September 2007 that an international industrial
consortium has signed a new contract to collaborate in exploratory deep drilling in Iceland. The main objective of
the IDDP is to investigate whether it is economically feasible to produce energy from geothermal systems at
supercritical conditions. This will require drilling to depths of 4 to 5 km in order to reach temperatures of 400 to
600°C. Today, geothermal wells in Iceland typically range up to 2.5 km in depth and produce steam at about
300°C, or less, at a rate sufficient to generate about 4 to 7 megawatts of electricity. It is estimated that producing
steam from a well penetrating a reservoir with temperatures >450°C, and at a rate of 0.67 cubic meters a
second, could generate 40 to 50 MWe. If IDDP's test of this concept proves successful, it could lead to major
improvements in the development of high-temperature geothermal resources worldwide.
The consortium collaborating to fund this investigation of supercritical geothermal energy consists of three
leading Icelandic power companies, Hitaveita Sudurnesja Ltd., Landsvirkjun, Orkuveita Reykjavikur, together with
Orkustofnun (the National Energy Authority) and Alcoa Inc. (an international aluminum company). The three
power companies financed a feasibility study for the project that was completed in 2003. Each of the three power
companies is committed to drill, at their own cost, a 3.5 to 4.0 km deep well in a geothermal field that they
operate. The design of these wells will permit them to be deepened to 4.5 or 5.0 km by the IDDP, and funded by
the consortium with additional funds from international scientific agencies. The first deep IDDP well will be drilled
in the latter part of 2008 in the Krafla geothermal field near the northern end of the central rift zone of Iceland,
within a volcanic caldera that has had recent volcanic activity. Two new wells, ~4 km deep, will then be drilled at
the Hengill and the Reykjanes geothermal fields during 2009-2010, and subsequently deepened. In contrast to
the fresh water systems at Krafla and Hengill, the Reykjanes geothermal system produces hydrothermally
modified seawater on the Reykjanes peninsula, in southern Iceland, where the Mid-Atlantic Ridge comes on land
in southern Iceland. Processes at depth at Reykjanes should be similar to those responsible for black smokers
on ocean spreading centers.
The IDDP has engendered considerable international scientific interest. The US National Science Foundation
and the International Continental Scientific Drilling Program will jointly fund the coring and sampling for scientific
studies. In preparation for studying the data and samples that will be recovered by deep drilling research is
underway on samples from existing wells in the target geothermal fields, and on exposed "fossil" geothermal
systems and active mid-ocean ridge systems that have conditions believed to be similar to those that will be
encountered in deep drilling by the IDDP. Some of these initial scientific studies by US investigators are reported
in the accompanying papers.
UR: http://www.iddp.is
DE: 1032 Mid-oceanic ridge processes (3614, 8416)
DE: 1034 Hydrothermal systems (0450, 3017, 3616, 4832, 8135, 8424)
DE: 8137 Hotspots, large igneous provinces, and flood basalt volcanism
DE: 8416 Mid-oceanic ridge processes (1032, 3614)
DE: 8424 Hydrothermal systems (0450, 1034, 3017, 3616, 4832, 8135)
SC: Volcanology, Geochemistry, Petrology [V]
MN: 2007 Fall Meeting