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2.
  • Alexanderson, Helena, et al. (författare)
  • Depositional history of the North Taymyr ice-marginal zone, Siberia - a landsystem approach
  • 2002
  • Ingår i: Journal of Quaternary Science. - : Wiley. - 1099-1417 .- 0267-8179. ; 17:4, s. 361-382
  • Tidskriftsartikel (refereegranskat)abstract
    • The sediment-landform associations of the northern Taymyr Peninsula in Arctic Siberia tell a tale of ice sheets advancing from the Kara Sea shelf and inundating the peninsula, probably three times during the Weichselian. In each case the ice sheet had a margin frozen to its bed and an interior moving over a deforming bed. The North Taymyr ice-marginal zone (NTZ) comprises ice-marginal and supraglacial landsystems dominated by thrust-block moraines 2-3 km wide and large-scale deformation of sediments and ice. Large areas are still underlain by remnant glacier ice and a supraglacial landscape with numerous ice-walled lakes and kames is forming even today. The proglacial landsystem is characterised by subaqueous (e.g. deltas) or terrestrial (e.g. sandar) environments, depending on location/altitude and time of formation. Dating results (OSL, C-14) indicate that the NTZ was initiated ca. 80 kyr BP during the retreat of the Early Weichselian ice sheet and that it records the maximum limit of a Middle Weichselian glaciation (ca. 65 kyr BP). During both these events, proglacial lakes were dammed by the ice sheets. Part of the NTZ was occupied by a thin Late Weichselian ice sheet (20-12 kyr BP), resulting in subaerial proglacial drainage. Copyright (C) 2002 John Wiley Sons, Ltd.
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3.
  • Alexanderson, Helena, et al. (författare)
  • The north Taymyr ice-marginal zone, arctic Siberia—a preliminary overview and dating
  • 2001
  • Ingår i: Global and Planetary Change. - 1872-6364. ; 31:1, s. 427-445
  • Tidskriftsartikel (refereegranskat)abstract
    • he North Taymyr ice-marginal zone (NTZ) is a complex of glacial, glaciofluvial and glaciolacustrine deposits, laid down on the northwestern Taymyr Peninsula in northernmost Siberia, along the front of ice sheets primarily originating on the Kara Sea shelf. It was originally recognised from satellite radar images by Russian scientists; however, before the present study, it had not been investigated in any detail. The ice sheets have mainly inundated Taymyr from the northwest, and the NTZ can be followed for 700-750 km between 75 degrees N and 77 degrees N, mostly 80-100 km inland from the present Kara Sea coast. The ice-marginal zone is best developed in its central parts, ca. 100 km on each side of the Lower Taymyr River, and has there been studied by us in four areas. In two of these, the ice sheet ended on land, whereas in the two others, it mainly terminated into ice-dammed lakes. The base of the NTZ is a series of up to 100-m-high and 2-km-wide ridges, usually consisting of redeposited marine silts. These ridges are still to a large extent ice-cored; however, the present active layer rarely penetrates to the ice surface. Upon these main ridges, smaller ridges of till and glaciofluvial material are superimposed. Related to these are deltas corresponding to two generations of ice-dammed lakes, with shore levels at 120-140 m and ca. 80 m a.s.l. These glacial lakes drained southwards, opposite to the present-day pattern, via the Taymyr River valley into the Taymyr Lake basin and, from there, most probably westwards to the southern Kara Sea shelf. The basal parts of the NTZ have not been dated; however, OSL dates of glaciolacustrine deltas indicate an Early-Middle Weichselian age for at least the superimposed ridges. The youngest parts of the NTZ are derived from a thin ice sheet (less than 300 m thick near the present coast) inundating the lowlands adjacent to the lower reaches of the Taymyr River. The glacial ice from this youngest advance is buried under only ca. 0.5 m of melt-out till and is exposed by hundreds of shallow slides. This final glaciation is predated by glacially redeposited marine shells aged ca. 20,000 BP ( (super 14) C) and postdated by terrestrial plant material from ca. 11,775 and 9500 BP ( (super 14) C)-giving it a last global glacial maximum (LGM; Late Weichselian) age.
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4.
  • Andersson, Arne, et al. (författare)
  • Ottenby fågelstation : Årsrapport 1999
  • 1999
  • Rapport (övrigt vetenskapligt/konstnärligt)abstract
    • Decenniets, seklets och milleniets sista år blev ett år av stora förändringar vid Ottenby fågelstation. Deföregående tre-fyra åren hade präglats av mycket dålig ekonomi och därtill personalproblem. Under 1998blev situationen akut. Som ett första led i att förbättra situationen ombildades Ottenbykommittén (avSveriges Ornitologiska Förening satt att sköta fågelstationen) under hösten 1998. Den störstaförändringen blev sedan att Jan Pettersson, platschef sedan 1978, sades upp. Därtill kom uppsägning,pensionering, dödsfall (se nedan) och sedan tidigare överflyttade tjänster till OFAB, vilket innebar detatt den “fast” anställda personalstyrkan, som 1992 var 7 personer, reducerades till noll!Ottenbykommittén har nu fått en mycket mer aktiv roll i stationens arbete. Olika verksamhetsdelar haridentifierats och ledamöterna har getts olika ansvarsområden.Kommittén bestod under året av :Åke Lindström (ordförande)Christian Hjort (sekreterare, utlandsverksamheten)Dennis Kraft (ekonomi)Arne Andersson (datafrågor)Dennis Hasselquist (samordning av ansökningar)Anders Hedenström (forskningssamordnare)Niclas Jonzén (personal)Lars Lindell (SOF:s styrelse).Aktiviteterna inom dessa olika områden redovisas nedan och här skallbara de generella linjerna i arbetet läggas fram.Tvivelsutan förbättrades arbetsklimatet för den ideellt arbetandepersonalen på fågelstationen och glädjande nog var tillströmningen storav arbetsvilliga ungdomar. Stationen blev på många sätt öppnare, inteminst mot fågelskådarleden. Fler personer besökte stationen och pådetta sätt kan många fler känna sig delaktiga och trivas. Nackdelen äratt det rent praktiskt blir svårare att driva verksamheten med mångamänniskor närvarande och relativt stor omsättning på personer.Genom mycket hård åtstramning på utgiftssidan kunde ett förväntat rejält underskott i budgeten vändastill en liten vinst. Alla inblandade skall ha stor ära av detta eftersom både stora som små uppoffringarkrävts för att styra ekonomin rätt. Den lilla vinsten användes till att börja täcka det underskott somunder många år ackumulerats. Även om det nu känns som att vi har en god kontroll över den löpandeekonomin så måste vi på lång sikt hitta fler finansieringskällor till stationens verksamhet. Det är tillexempel mycket otillfredsställande att vi nu inte har någon heltidsanställd personal, något som på siktmåste lösas.Fågelstationens gamla dröm om att ha en egen filial söder om Sahara gick i uppfyllelse under 1999 meden månads försöksverksamhet i Nigeria under våren. Denna slog väl ut på alla sätt och verksamhetenskall nu intensifieras under 2000.Datahanteringen fick sig en rejäl skjuts framåt under året och kan vi bara snart förnya maskinparken finnsgrunden för en smidig och effektiv datahantering vid stationen. Detta kommer att underlätta bådeutåtriktad verksamhet (Internet) och eget analysarbete.Ottenby Försäljnings AB (OFAB), som drivit den affärsmässiga delen av stationens verksamhet sedan1995, fortsatte sin verksamhet parallellt med fågelstationens ideella verksamhet. Genom verksamheten iNaturum och restaurang Fågel Blå svarar OFAB för en viktig del av fågelstationens publika aktiviteter.Det är av stor vikt för framtiden att behålla och utveckla det goda samarbetet mellan fågelstationen ochOFAB.Figur 1. Åke LindströmFigur 2. Patrik Rhönnstad, platschef 1999Kontinuiteten i det praktiska arbetet på stationen blev naturligtvis något lidande av att den rutineradepersonalen försvunnit. Situationen hjälptes dock upp signifikant av att OFABs personal fanns på plats(Håkan och Annika Lundkvist, Gösta Friberg) samt att nye platschefen och många av de ideelltarbetande hade erfarenhet från tidigare år.
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6.
  • Castañeda Lozano, Roberto, 1986-, et al. (författare)
  • Combinatorial Register Allocation and Instruction Scheduling
  • 2018
  • Rapport (övrigt vetenskapligt/konstnärligt)abstract
    • This paper introduces a combinatorial optimization approach to register allocation and instruction scheduling, two central compiler problems. Combinatorial optimization has the potential to solve these problems optimally and to exploit processor-specific features readily. Our approach is the first to leverage this potential in practice: it captures the complete set of program transformations used in state-of-the-art compilers, scales to medium-sized functions of up to 1000 instructions, and generates executable code. This level of practicality is reached by using constraint programming, a particularly suitable combinatorial optimization technique. Unison, the implementation of our approach, is open source, used in industry, and integrated with the LLVM toolchain.An extensive evaluation of estimated speed, code size, and scalability confirms that Unison generates better code than LLVM while scaling to medium-sized functions. The evaluation uses systematically selected benchmarks from MediaBench and SPEC CPU2006 and different processor architectures (Hexagon, ARM, MIPS). Mean estimated speedup ranges from 1% to 9.3% and mean code size reduction ranges from 0.8% to 3.9% for the different architectures. Executing the generated code on Hexagon confirms that the estimated speedup indeed results in actual speedup. Given a fixed time limit, Unison solves optimally functions of up to 647 instructions, delivers improved solutions for functions of up to 874 instructions, and achieves more than 85% of the potential speed for 90% of the functions on Hexagon.The results in this paper show that our combinatorial approach can be used in practice to trade compilation time for code quality beyond the usual compiler optimization levels, fully exploit processor-specific features, and identify improvement opportunities in existing heuristic algorithms.
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7.
  • Castaneda Lozano, Roberto, et al. (författare)
  • Combinatorial register allocation and instruction scheduling
  • 2019
  • Ingår i: ACM Transactions on Programming Languages and Systems. - : Association for Computing Machinery. - 0164-0925 .- 1558-4593. ; 41:3
  • Tidskriftsartikel (refereegranskat)abstract
    • This article introduces a combinatorial optimization approach to register allocation and instruction scheduling, two central compiler problems. Combinatorial optimization has the potential to solve these problems optimally and to exploit processor-specific features readily. Our approach is the first to leverage this potential in practice: it captures the complete set of program transformations used in state-of-the-art compilers, scales to medium-sized functions of up to 1,000 instructions, and generates executable code. This level of practicality is reached by using constraint programming, a particularly suitable combinatorial optimization technique. Unison, the implementation of our approach, is open source, used in industry, and integrated with the LLVM toolchain. An extensive evaluation confirms that Unison generates better code than LLVM while scaling to medium-sized functions. The evaluation uses systematically selected benchmarks from MediaBench and SPEC CPU2006 and different processor architectures (Hexagon, ARM, MIPS). Mean estimated speedup ranges from 1.1% to 10% and mean code size reduction ranges from 1.3% to 3.8% for the different architectures. A significant part of this improvement is due to the integrated nature of the approach. Executing the generated code on Hexagon confirms that the estimated speedup results in actual speedup. Given a fixed time limit, Unison solves optimally functions of up to 946 instructions, nearly an order of magnitude larger than previous approaches. The results show that our combinatorial approach can be applied in practice to trade compilation time for code quality beyond the usual compiler optimization levels, identify improvement opportunities in heuristic algorithms, and fully exploit processor-specific features.
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8.
  • Castañeda Lozano, Roberto, 1986-, et al. (författare)
  • Constraint-based Code Generation
  • 2013
  • Ingår i: Proceedings of the 16th International Workshop on Software and Compilers for Embedded Systems, M-SCOPES 2013. - New York, NY, USA : Association for Computing Machinery (ACM). - 9781450321426 ; , s. 93-95
  • Konferensbidrag (refereegranskat)abstract
    • Compiler back-ends generate assembly code by solving three main tasks: instruction selection, register allocation and instruction scheduling. We introduce constraint models and solving techniques for these code generation tasks and describe how the models can be composed to generate code in unison. The use of constraint programming, a technique to model and solve combinatorial problems, makes code generation simple, flexible, robust and potentially optimal.
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9.
  • Castañeda Lozano, Roberto, 1986-, et al. (författare)
  • Register allocation and instruction scheduling in Unison
  • 2016
  • Ingår i: Proceedings of CC 2016. - New York, NY, USA : Association for Computing Machinery (ACM). - 9781450342414 ; , s. 263-264
  • Konferensbidrag (refereegranskat)abstract
    • This paper describes Unison, a simple, flexible, and potentially optimal software tool that performs register allocation and instruction scheduling in integration using combinatorial optimization. The tool can be used as an alternative or as a complement to traditional approaches, which are fast but complex and suboptimal. Unison is most suitable whenever high-quality code is required and longer compilation times can be tolerated (such as in embedded systems or library releases), or the targeted processors are so irregular that traditional compilers fail to generate satisfactory code.
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10.
  • Fagerström, Anton, et al. (författare)
  • Large scale bio electro jet fuel production integration at CHP-plant in Östersund, Sweden
  • 2021. - B 2407
  • Rapport (övrigt vetenskapligt/konstnärligt)abstract
    • This document reports the findings of the project “Large scale bio electro jet fuel production integration at CHP-plant in Östersund, Sweden”. BEJF is an electrofuel produced in a synthesis process where biogenic carbon dioxide (CO2) is the main carbon source and hydrogen from electrolysis of water using renewable electricity is the main energy source. The project is a feasibility study for a factory for such fuel located at Jämtkraft's facility for CHP in Östersund. Thus, the aim of the project is to assess the feasibility for producing renewable aviation fuel at a specific location considering and evaluating e.g., different processes, operations and integrations, costs, environmental impact, business models and actors.IVL The Swedish Environmental Research Institute, Jämtkraft (JK), Chalmers University (CU), Lund University (LU), Nordic Initiative for Sustainable Aviation (NISA), and Fly Green Fund (FGF) have been the primary implementers in this project. Other project stakeholders (AFAB, and The Power Region), have provided relevant data to the various working groups. The project has included experimental work, modelling and calculations, as well as literature-based studies but not the construction of any facilities.
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