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- . - - - . -. � ..;/, AGE MILL.YEAR$ ;YE basalt �- OUATERNARY votcanoes CENOZOIC \....t TERTIARY ·· basalt/// 65 CRETACEOUS -� 145 MESOZOIC JURASSIC " 210 � TRIAS SIC 245 " PERMIAN 290 CARBONIFEROUS /I/ Å 360 \....t DEVONIAN � PALEOZOIC � 410 SILURIAN 440 /I/ ranite � ORDOVICIAN T 510 z CAM BRIAN � w :::;: 570 w UPPER (J) PROTEROZOIC � c( " 1000 Ill /// PRECAMBRIAN MIDDLE AND LOWER PROTEROZOIC I /// 2500 ARCHEAN /(/folding \....tfaulting x metamorphism '- subduction POLARHÅNDBOK NO. 7 AUDUN HJELLE GEOLOGY.OF SVALBARD OSLO 1993 Photographs contributed by the following: Dallmann, Winfried: Figs. 12, 21, 24, 25, 31, 33, 35, 48 Heintz, Natascha: Figs. 15, 59 Hisdal, Vidar: Figs. 40, 42, 47, 49 Hjelle, Audun: Figs. 3, 10, 11, 18 , 23, 28, 29, 30, 32, 36, 43, 45, 46, 50, 51, 52, 53, 54, 60, 61, 62, 63, 64, 65, 66, 67, 68, 69, 71, 72, 75 Larsen, Geir B.: Fig. 70 Lytskjold, Bjørn: Fig. 38 Nøttvedt, Arvid: Fig. 34 Paleontologisk Museum, Oslo: Figs. 5, 9 Salvigsen, Otto: Figs. 13, 59 Skogen, Erik: Fig. 39 Store Norske Spitsbergen Kulkompani (SNSK): Fig. 26 © Norsk Polarinstitutt, Middelthuns gate 29, 0301 Oslo English translation: Richard Binns Editor of text and illustrations: Annemor Brekke Graphic design: Vidar Grimshei Omslagsfoto: Erik Skogen Graphic production: Grimshei Grafiske, Lørenskog ISBN 82-7666-057-6 Printed September 1993 CONTENTS PREFACE ............................................6 The Kongsfjorden area ....... ..........97 Smeerenburgfjorden - Magdalene- INTRODUCTION ..... .. .... ....... ........ ....6 fjorden - Liefdefjorden................ 109 Woodfjorden - Bockfjorden........ 116 THE GEOLOGICAL EXPLORATION OF SVALBARD .... ........... ....... .......... ..9 NORTHEASTERN SPITSBERGEN AND NORDAUSTLANDET ........... 123 SVALBARD, PART OF THE Ny Friesland and Olav V Land .. .123 NORTHERN POLAR REGION ...... ... 11 Nordaustlandet and the neigh- bouring islands........................... 126 WHA T TOOK PLACE IN SVALBARD - WHEN? .... -
Petroleum, Coal and Research Drilling Onshore Svalbard: a Historical Perspective
NORWEGIAN JOURNAL OF GEOLOGY Vol 99 Nr. 3 https://dx.doi.org/10.17850/njg99-3-1 Petroleum, coal and research drilling onshore Svalbard: a historical perspective Kim Senger1,2, Peter Brugmans3, Sten-Andreas Grundvåg2,4, Malte Jochmann1,5, Arvid Nøttvedt6, Snorre Olaussen1, Asbjørn Skotte7 & Aleksandra Smyrak-Sikora1,8 1Department of Arctic Geology, University Centre in Svalbard, P.O. Box 156, 9171 Longyearbyen, Norway. 2Research Centre for Arctic Petroleum Exploration (ARCEx), University of Tromsø – the Arctic University of Norway, P.O. Box 6050 Langnes, 9037 Tromsø, Norway. 3The Norwegian Directorate of Mining with the Commissioner of Mines at Svalbard, P.O. Box 520, 9171 Longyearbyen, Norway. 4Department of Geosciences, University of Tromsø – the Arctic University of Norway, P.O. Box 6050 Langnes, 9037 Tromsø, Norway. 5Store Norske Spitsbergen Kulkompani AS, P.O. Box 613, 9171 Longyearbyen, Norway. 6NORCE Norwegian Research Centre AS, Fantoftvegen 38, 5072 Bergen, Norway. 7Skotte & Co. AS, Hatlevegen 1, 6240 Ørskog, Norway. 8Department of Earth Science, University of Bergen, P.O. Box 7803, 5020 Bergen, Norway. E-mail corresponding author (Kim Senger): [email protected] The beginning of the Norwegian oil industry is often attributed to the first exploration drilling in the North Sea in 1966, the first discovery in 1967 and the discovery of the supergiant Ekofisk field in 1969. However, petroleum exploration already started onshore Svalbard in 1960 with three mapping groups from Caltex and exploration efforts by the Dutch company Bataaffse (Shell) and the Norwegian private company Norsk Polar Navigasjon AS (NPN). NPN was the first company to spud a well at Kvadehuken near Ny-Ålesund in 1961. -
Climate in Svalbard 2100
M-1242 | 2018 Climate in Svalbard 2100 – a knowledge base for climate adaptation NCCS report no. 1/2019 Photo: Ketil Isaksen, MET Norway Editors I.Hanssen-Bauer, E.J.Førland, H.Hisdal, S.Mayer, A.B.Sandø, A.Sorteberg CLIMATE IN SVALBARD 2100 CLIMATE IN SVALBARD 2100 Commissioned by Title: Date Climate in Svalbard 2100 January 2019 – a knowledge base for climate adaptation ISSN nr. Rapport nr. 2387-3027 1/2019 Authors Classification Editors: I.Hanssen-Bauer1,12, E.J.Førland1,12, H.Hisdal2,12, Free S.Mayer3,12,13, A.B.Sandø5,13, A.Sorteberg4,13 Clients Authors: M.Adakudlu3,13, J.Andresen2, J.Bakke4,13, S.Beldring2,12, R.Benestad1, W. Bilt4,13, J.Bogen2, C.Borstad6, Norwegian Environment Agency (Miljødirektoratet) K.Breili9, Ø.Breivik1,4, K.Y.Børsheim5,13, H.H.Christiansen6, A.Dobler1, R.Engeset2, R.Frauenfelder7, S.Gerland10, H.M.Gjelten1, J.Gundersen2, K.Isaksen1,12, C.Jaedicke7, H.Kierulf9, J.Kohler10, H.Li2,12, J.Lutz1,12, K.Melvold2,12, Client’s reference 1,12 4,6 2,12 5,8,13 A.Mezghani , F.Nilsen , I.B.Nilsen , J.E.Ø.Nilsen , http://www.miljodirektoratet.no/M1242 O. Pavlova10, O.Ravndal9, B.Risebrobakken3,13, T.Saloranta2, S.Sandven6,8,13, T.V.Schuler6,11, M.J.R.Simpson9, M.Skogen5,13, L.H.Smedsrud4,6,13, M.Sund2, D. Vikhamar-Schuler1,2,12, S.Westermann11, W.K.Wong2,12 Affiliations: See Acknowledgements! Abstract The Norwegian Centre for Climate Services (NCCS) is collaboration between the Norwegian Meteorological In- This report was commissioned by the Norwegian Environment Agency in order to provide basic information for use stitute, the Norwegian Water Resources and Energy Directorate, Norwegian Research Centre and the Bjerknes in climate change adaptation in Svalbard. -
Terrestrial Inputs Govern Spatial Distribution of Polychlorinated Biphenyls (Pcbs) and Hexachlorobenzene (HCB) in an Arctic Fjord System (Isfjorden, Svalbard)*
Environmental Pollution 281 (2021) 116963 Contents lists available at ScienceDirect Environmental Pollution journal homepage: www.elsevier.com/locate/envpol Terrestrial inputs govern spatial distribution of polychlorinated biphenyls (PCBs) and hexachlorobenzene (HCB) in an Arctic fjord system (Isfjorden, Svalbard)* * Sverre Johansen a, b, c, Amanda Poste a, Ian Allan c, Anita Evenset d, e, Pernilla Carlsson a, a Norwegian Institute for Water Research, Tromsø, Norway b Norwegian University of Life Sciences, Ås, Norway c Norwegian Institute for Water Research, Oslo, Norway d Akvaplan-niva, Tromsø, Norway e UiT, The Arctic University of Norway, Tromsø, Norway article info abstract Article history: Considerable amounts of previously deposited persistent organic pollutants (POPs) are stored in the Received 20 July 2020 Arctic cryosphere. Transport of freshwater and terrestrial material to the Arctic Ocean is increasing due to Received in revised form ongoing climate change and the impact this has on POPs in marine receiving systems is unknown This 11 March 2021 study has investigated how secondary sources of POPs from land influence the occurrence and fate of Accepted 13 March 2021 POPs in an Arctic coastal marine system. Available online 17 March 2021 Passive sampling of water and sampling of riverine suspended particulate matter (SPM) and marine sediments for analysis of polychlorinated biphenyls (PCBs) and hexachlorobenzene (HCB) was carried out Keywords: Particle transport in rivers and their receiving fjords in Isfjorden system in Svalbard. Riverine SPM had low contaminant < S e Terrestrial runoff concentrations ( level of detection-28 pg/g dw PCB14,16 100 pg/g dw HCB) compared to outer marine Environmental contaminants sediments 630-880 pg/g dw SPCB14,530e770 pg/g dw HCB). -
Seasonal Dynamics of the Marine CO System in Adventfjorden, a West
RESEARCH ARTICLE Seasonal dynamics of the marine CO2 system in Adventfjorden, a west Spitsbergen fjord Ylva Ericson1,2, Melissa Chierici1,3, Eva Falck1,2, Agneta Fransson4, Elizabeth Jones3 & Svein Kristiansen5 1Department of Arctic Geophysics, University Centre in Svalbard, Longyearbyen, Norway; 2Geophysical Institute, University of Bergen, Bergen, Norway; 3Institute of Marine Research, Fram Centre, Tromsø, Norway; 4Norwegian Polar Institute, Fram Centre, Tromsø, Norway; 5Department of Arctic and Marine Biology, UiT—The Arctic University of Norway, Tromsø, Norway Abstract Keywords Marine carbonate system; aragonite; Time series of the marine CO2 system and related parameters at the IsA Sta- net community production; Arctic fjord tion, by Adventfjorden, Svalbard, were investigated between March 2015 biogeochemistry; Svalbard and November 2017. The physical and biogeochemical processes that govern changes in total alkalinity (TA), total dissolved inorganic carbon (DIC) and the Correspondence Ylva Ericson, Department of Arctic saturation state of the calcium carbonate mineral aragonite (ΩAr) were assessed on a monthly timescale. The major driver for TA and DIC was changes in salin- Geophysics, University Centre in Svalbard, ity, caused by river runoff, mixing and advection. This accounted for 77 and PO Box 156, NO-9171 Longyearbyen, Norway. E-mail: [email protected] 45%, respectively, of the overall variability. It contributed minimally to the variability in ΩAr (5%); instead, biological activity was responsible for 60% of Abbreviations the monthly variations. For DIC, the biological activity was also important, con- ArW: Arctic water; AW: Atlantic water; tributing 44%. The monthly effect of air–sea CO2 fluxes accounted for 11 and CC: coastal current; CTD: conductivity– temperature–depth instrument; DIC: 15% of the total changes in DIC and ΩAr, respectively. -
Checklist of Lichenicolous Fungi and Lichenicolous Lichens of Svalbard, Including New Species, New Records and Revisions
Herzogia 26 (2), 2013: 323 –359 323 Checklist of lichenicolous fungi and lichenicolous lichens of Svalbard, including new species, new records and revisions Mikhail P. Zhurbenko* & Wolfgang von Brackel Abstract: Zhurbenko, M. P. & Brackel, W. v. 2013. Checklist of lichenicolous fungi and lichenicolous lichens of Svalbard, including new species, new records and revisions. – Herzogia 26: 323 –359. Hainesia bryonorae Zhurb. (on Bryonora castanea), Lichenochora caloplacae Zhurb. (on Caloplaca species), Sphaerellothecium epilecanora Zhurb. (on Lecanora epibryon), and Trimmatostroma cetrariae Brackel (on Cetraria is- landica) are described as new to science. Forty four species of lichenicolous fungi (Arthonia apotheciorum, A. aspicili- ae, A. epiphyscia, A. molendoi, A. pannariae, A. peltigerina, Cercidospora ochrolechiae, C. trypetheliza, C. verrucosar- ia, Dacampia engeliana, Dactylospora aeruginosa, D. frigida, Endococcus fusiger, E. sendtneri, Epibryon conductrix, Epilichen glauconigellus, Lichenochora coppinsii, L. weillii, Lichenopeltella peltigericola, L. santessonii, Lichenostigma chlaroterae, L. maureri, Llimoniella vinosa, Merismatium decolorans, M. heterophractum, Muellerella atricola, M. erratica, Pronectria erythrinella, Protothelenella croceae, Skyttella mulleri, Sphaerellothecium parmeliae, Sphaeropezia santessonii, S. thamnoliae, Stigmidium cladoniicola, S. collematis, S. frigidum, S. leucophlebiae, S. mycobilimbiae, S. pseudopeltideae, Taeniolella pertusariicola, Tremella cetrariicola, Xenonectriella lutescens, X. ornamentata, -
First Record of Vulgarogamasus Immanis (Acari, Mesostigmata) in Svalbard
vol. 33, no. 1, pp. 35–39, 2012 doi: 10.2478/v10183−012−0001−8 First record of Vulgarogamasus immanis (Acari, Mesostigmata) in Svalbard Dariusz J. GWIAZDOWICZ 1, Torstein SOLHØY 2, Stephen J. COULSON 3, Natalia V. LEBEDEVA4 and Elena N. MELEKHINA5 1 Uniwersytet Przyrodniczy w Poznaniu, Zakład Ochrony Lasu, ul. Wojska Polskiego 71c, 60−625 Poznań, Poland <e−mail: [email protected]> 2 Department of Biology, University of Bergen, Box 7800, 5200 Bergen, Norway 3 University Centre in Svalbard, P.O. Box 156, 9171 Longyearbyen, Norway 4 Russian Academy of Sciences, Southern Scientific Center, Chekhov str., 344006 Rostov on Don, Russia 5Russian Academy of Science, Institute of Biology, Komi Science Center, Kommunisticheskaya str., 28, 167928 Syktyvkar, Russia Abstract: The mesostigmatid mite Vulgarogamasus immanis (Berlese, 1904) is reported in Svalbard for the first time. The gamasid mite community of Svalbard is amongst the best known of invertebrate groups of the archipelago due to recent revisions based on fresh sam− pling campaigns. Nonetheless, a hitherto unrecorded species of gamasid mite was recently found along the strandline in Barentsburg. This record brings the total gamasid mite inven− tory of Svalbard to 23 species. The current inventory of Svalbard is bedeviled with syn− onyms and misidentifications. Nevertheless, resolving these confusions and maintaining an accurate and updated species inventory is of prime importance in understanding the ecology of this region. Especially in a period of rapid environmental change. Key words: Arctic, Spitsbergen, Barentsburg, mite, Gamasida. Introduction Svalbard lies in the high Arctic between latitudes 74° N and 81° N and longi− tudes 10° E and 35° E, some 700 km north of the Norwegian mainland. -
P-092 Cornice Dynamics Above Nybyen in Svalbards High Arctic
2010 International Snow Science Workshop P-092 Cornice dynamics above Nybyen in Svalbards high arctic landscape Stephan C. Vogel1 Markus Eckerstorfer1 Hanne Christiansen1, 2 1. Arctic Geology Department, University Centre in Svalbard, Longyearbyen, Norway; 2. Department of Geosciences, University of Oslo, Oslo, Norway The development of cornices, their cracking and consequent failures largely controlled by meteorology along the Gruvefjellet plateau ridge was investigated in the two consecutive snow seasons of 2009 and 2010. These natural processes endanger life and infrastructure in Longyearbyen, Svalbard’s main settlement in the High Arctic. Two automatic time lapse cameras provided up to 6 daily pictures of the entire Gruvefjellet slope from the valley bottom and monitored the cornice development and tension cracking from the ridgeline. Further- more stakes on the plateau were used to record snow depth distribution and cornice growth. 45 field trips up the plateau were carried out to study the processes and to manually measure cornice crack opening rates. Meteorological data were recorded by an automatic weather station situated on the Gruvefjellet plateau source area. Both snow seasons indicated that cornices were built up by a low number of distinct storm events and that cornice scouring due to high wind speeds is rather limited. In 2009 the first cornice cracks were observed in mid April, while in 2010, probably due to persistent warm weather in combination with large amounts of rain, cornice cracks were already developing at the end of January. Cornice crack measurements showed a linear de- velopment, indicating the major influence of gravity. 177 cornice failures have been recorded, whereof 11 were “D3-R3” and “D3-R4” avalanches which nearly reached housing infrastructure. -
ESG Perspectives June 2019 Svalbard Sojourn an Arctic
June 2019 ESG Perspectives ™ SVALBARD SOJOURN: AN ARCTIC EXPERIENCE by Bob Smith, President & CIO islands are 60% glaciated with some of the world’s fastest-moving glaciers. The balance of the region is 30% barren ground, and 10% is covered with very low ground vegetation. In contrast to other Arctic regions, the Svalbard has no indigenous population and there is no historical evidence that the Vikings settled in the area during their time. In fact, it was the 1596 Dutch expedition of Willem Barents who discovered and drew maps of the region before his ship was crushed by freezing sea ice leading to his untimely death. However, the work of this expedition survived, and it led to the exploration of the region by other European countries over the Photo of Bob Smith in Kungsfjord, Svalbard centuries. This eventually gave rise to the exploitation It is said that what happens in the Arctic doesn’t stay of the natural resources of the region as a destination in the Arctic. That is because this region provides for whalers, fur trappers, and seal hunters, as well as essential global climate regulation and substantial other animal-based products. With the industrialization ecosystem benefits to humanity outside and beyond of Europe and the arrival of steel-hulled ships in the its boundaries. Indeed, the Arctic environment, and early 1900s, this region also eventually became a source human society and its economic activities are deeply for industrial minerals and, in particular, coal. connected to each other, representing a pivotal link in a complex adaptive global ecosystem. -
Written Exam SH-201 the History of Svalbard the University Centre in Svalbard, Monday 6 February 2012
Written exam SH-201 The History of Svalbard The University Centre in Svalbard, Monday 6 February 2012 The exam is a 3 hour written test. It consists of two parts: Part I is a multiple choice test of factual knowledge. Note: This sheet with answers to part I shall be handed in. Part II (see below) is an essay part where you write extensively about one of two alternative subjects. No aids except dictionary are permitted. You may answer in English, Norwegian, Swedish or Danish. 1 2 Part I counts approximately /3 and part II counts /3 of the grade at the evaluation, but adjustment may take place. Both parts must be passed in order to pass the whole exam. Part I: Multiple choice test. Make only one cross for each question. In what year was Bjørnøya discovered by Willem 1. 1569 1596 1603 Barentsz? 2. When did land-based whaling end on Svalbard? ca. 1630 ca. 1680 ca. 1720 Which geographical region did most Russian 3. Pechora Murmansk White Sea hunters and trappers come from? When did Norwegian hunters and trappers start 4. ca. 1700 the 1750s the 1820s going to Svalbard regularly? From when dates the first map to show the whole 5. 1598 1714 1872 Svalbard archipelago? A famous scientific expedition visited Svalbard in 6. Chichagov Fram 1838–39. Which name is it known under? Recherche Svalbard was for a long time a no man’s land. In 7. Norway Sweden Russia 1871, who took an initiative to annex the islands? 8. When did Norway formally take over sovereignty? 1916 1920 1925 When was the Sysselmann (Governor of Svalbard) 9. -
Arctic Territories Svalbard As a Fluid Territory Contents
ARCTIC TERRITORIES SVALBARD AS A FLUID TERRITORY CONTENTS Introduction ........................................................................... 01 Part I Study trip ................................................................................ 04 Site visits ................................................................................ 05 Fieldwork ............................................................................... 07 Identifying themes/subjects of interest ................................... 11 Introducing short sections ...................................................... 14 Part II Sections: Introduction ............................................................. 17 Sections: Finding a narrative .................................................. 19 Sections: Introducing time ...................................................... 20 Describing forces through glossaries ......................... 21 Describing forces through illustrations ....................... 22 Long sections .................................................................... 24 Part III Interaction Points: Introduction ............................................... 40 Interaction Points: Forces overlay .......................................... 41 Interaction points: Revealing archives .................................... 42 Model making - terrain model ................................................ 52 SVALBARD STUDIO - FALL SEMESTER 2015 MASTER OF LANDSCAPE ARCHITECTURE Part IV TROMSØ ACADEMY OF LANDSCAPE AND TERRITORIAL STUDIES Return to -
Longyear Spitsbergen Collection MS-031 Finding Aid Prepared by Elizabeth Russell
Longyear Spitsbergen Collection MS-031 Finding aid prepared by Elizabeth Russell This finding aid was produced using the Archivists' Toolkit October 23, 2013 Describing Archives: A Content Standard Michigan Technological University Archives and Copper Country Historical Collections 8/23/2011 1400 Townsend Drive Houghton, Michigan, 49931 906-487-2505 [email protected] Longyear Spitsbergen Collection MS-031 Table of Contents Summary Information ................................................................................................................................. 3 Biography.......................................................................................................................................................4 Collection Scope and Content Summary...................................................................................................... 4 Administrative Information .........................................................................................................................4 Controlled Access Headings..........................................................................................................................5 Collection Inventory...................................................................................................................................... 6 Correspondence and Business Records...................................................................................................6 Photographs..............................................................................................................................................8