Jökull


Jökull - 01.12.1984, Side 114

Jökull - 01.12.1984, Side 114
Figure 5. The tectonic features of the Reykholt thermal system. 5. mynd. Höggun og hverir í Reykholtsdal og nágrenni. northeasterly trending faults operate as main channels for regional flow from the highlands towards the thermal fields. Where these aquifers are intersected in the lowlands by open fractures the water flows to the surface. The best example is the Deildartunga hot spring (Georgsson et al. 1978). The spring is located at the intersection of a fracture trending N20°W and a dyke trending N30°E (Fig. 5). The dyke was traced up to the hills by a ground magnetic survey, showing a combined anomaly of a dyke and a fault. About 1 km northwards the anomaly from the dyke disappeared. The fault was traced further north where it is exposed at the surface. The close relation between active faults and the flow of hot water was emphasized in the Borgarfjördur earthquakes in 1974. The active seismic zone was 15-20 km north of Reykholtsdal- ur. The main epicentral zone showed a westerly trend, but was intersected by a secondary zone with a northeasterly trend (Einarsson et al. 1977). The latter coincides with the northern part of the 20 Qm low resistivity anomaly of the Reykholt thermal system. The Deildartunga fault stretches to northeast towards the same area. The effect of the earthquakes on thermal activity was most notable at Helgávatn. The thermal water disap- peared for three weeks, reappearing with sub- stantially increased discharge and slightly higher temperature. Increased discharge was also noted at the Lundahver hot spring, and at Varmaland flow measurements indicate an increase of around 50%. In numerous springs the water turned milky, gradually returning to normal in a few weeks time. The active tectonics play an important role in the existence of the Reykholt thermal system. 112 JÖKULL 34. ÁR
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