Jökull


Jökull - 01.01.2014, Side 44

Jökull - 01.01.2014, Side 44
J. Helgason and R. Duncan Figure 2. Hafrafell mountain viewed from west with the peaks of Efri-Menn (center) and Neðri-Menn fur- ther right. The Hrútfjallstindar peaks are seen behind Efri-Menn and the Öræfajökull volcano to the far right. Numerous gullies in Illuklettar, coincide with a dike swarm. Prominent dikes are shown in red. Stratigraphic profiles and some erosion surfaces and rock formations are also colored. Yellow lines near the base of Hafrafell, in sections HL and HLHM, indicate southward dipping lava lobe units. A blue line in Illuklettar, at the base of formation HF11, underlines a thick lava flow, unit HP32, that ponded at the onset of interglacial I5. Erosion horizons HR1 to HR3 are shown with pink and cyan lines. – Hafrafell séð úr vestri, tinda Efri- og Neðri-Manna ber við himinn. Hrútfjallstindar sjást að baki Hafrafells en lengst til hægri gnæfa tindar eldstöðvarinnar í Öræfajökli. Fjölmörg gil í Illuklettum í Hafrafelli fara saman við gangasveim. Nokkrir áberandi berggangar eru merktir með rauðum línum. Jarðlagasnið ásamt upplýsingum um nokkra roffleti (HR) og myndanir (HF) eru einnig merkt á myndina. Gular línur nálægt neðri mörkum Hafrafells, í sniðum HL og HLHM, marka hrauna- linsur með suðlægum halla. Blá lína í Illuklettum markar upphaf þykkrar hraunamyndunar HF11 á hlýskeiði I5, þar sem neðsta lagið, eining HP32, er óvenjuþykk vegna tjarnarmyndunar. Roffletir HR1 til HR3 eru sýndir með bleikum og ljósbláum línum. the lavas are within the laumontite zone where deeper crustal levels are exposed. Dikes in Hafrafell are typ- ically of basalt composition (Prestvik, 1985). Lava tilt and faults Lava flows exposed at the southern part of Hafrafell dip gently about 1◦ toward N35◦E but further north dip increases up to 20◦ toward the NW. High local dip values are associated with rhyolite intrusions ex- posed on Hafrafell’s northeast side. Onyx banding in lava vesicles reveals progressive tilting. In one case within profile HAF (360 m a.s.l.) a tholeiite lava flow dips 18◦/336◦ but a layered onyx amygdale dips only 7◦/358◦. Presumably, the intrusion of rhyolite caused the lava flow to dip 7◦ in addition to a previous dip of 11◦ (Walker, 1974). Two-stage dipping of layers, revealed in opal and onyx fillings, is not uncommon within lava flows on the north side of Hafrafell. On the NE side of Hafrafell (e.g. section HS) lava flows thicken toward the base of Hrútfjallstindar and in- crease in dip toward 45◦. Faults are rare in Hafrafell but a few normal faults with a throw of up to 10 m were mapped. Faulting is not regarded a process that has influenced relief to any extent at Hafrafell. Lava flow direction Several cases are found in Hafrafell where lobes of lavas have flowed abruptly down slope. Although ex- amples of such depositional dip are local they provide an indicator of past relief. The earliest case of this kind found in Hafrafell is at the base of section HL (Figure 6). Here lobes of a basaltic lava flow of forma- tion HF3 interfinger with an underlying conglomerate or breccia with dip parameters 32◦/202◦ suggesting a source slightly east of true north. Higher up in section HL, within formation HF9, lava lenses dip between 16–30◦/165◦, suggesting a lava source slightly west of true north. The steep depositional dips were only noted locally. 44 JÖKULL No. 64, 2014
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