Search results for "9"

showing 10 items of 40453 documents

Cooling and societal change during the Late Antique Little Ice Age from 536 to around 660 AD

2016

Societal upheaval occurred across Eurasia in the sixth and seventh centuries. Tree-ring reconstructions suggest a period of pronounced cooling during this time associated with several volcanic eruptions. Climatic changes during the first half of the Common Era have been suggested to play a role in societal reorganizations in Europe1,2 and Asia3,4. In particular, the sixth century coincides with rising and falling civilizations1,2,3,4,5,6, pandemics7,8, human migration and political turmoil8,9,10,11,12,13. Our understanding of the magnitude and spatial extent as well as the possible causes and concurrences of climate change during this period is, however, still limited. Here we use tree-ring…

010506 paleontologygeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesAntiqueHuman migrationbusiness.industrySteppeNorthern HemisphereClimate change37 Earth Sciences3705 Geology3709 Physical Geography and Environmental Geoscience01 natural sciencesRoman EmpireVolcanoPeriod (geology)General Earth and Planetary SciencesPhysical geographybusiness0105 earth and related environmental sciences
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Speleothems from the Middle East: An Example of Water Limited Environments in the SISAL Database

2019

The Middle East (ME) spans the transition between a temperate Mediterranean climate in the Levant to hyper-arid sub-tropical deserts in the southern part of the Arabian Peninsula (AP), with the complex alpine topography in the northeast feeding the Euphrates and Tigris rivers which support life in the Southeastern Fertile Crescent (FC). Climate projections predict severe drying in several parts of the ME in response to global warming, making it important to understand the controls of hydro-climate perturbations in the region. Here we discuss 23 ME speleothem stable oxygen isotope (δ18Occ) records from 16 sites from the SISAL_v1 database (Speleothem Isotope Synthesis and Analysis database), …

010506 paleontologygeology010504 meteorology & atmospheric sciencesPleistoceneδ18OCaveSpeleothemlcsh:GN281-289Palaeoclimatecomputer.software_genre01 natural sciencesMiddle Eastlcsh:StratigraphyIsotopesEarth and Planetary Sciences (miscellaneous)DeglaciationPrecipitationHolocenelcsh:QE640-6990105 earth and related environmental sciencesEarth-Surface Processesgeographygeography.geographical_feature_categoryDatabaseGlobal warmingLast Glacial MaximumSpeleothemlcsh:Human evolutionSISAL databasecomputerGeology
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Economic Conditions in the Area Around the Sea of Galilee in Pre-Hellenistic Times

2017

Abstract In a landscape archaeology project all the fertile fields around the Sea of Galilee (an area of 50 × 30 km) were mapped. The whole territory was subdivided in 5 regions: Jordan valley, Lower Galilee, Upper Galilee, Golan and Transjordanian Hill Country. Additionally all ancient sites from the Neolithic to the Persian period, which are mentioned in archaeological literature, were collected – all together more than 300 sites. These data allow a reconstruction of the economic conditions in antiquity in the area around the Sea of Galilee. Landscape archaeology clearly demonstrates that the economic basis may have been completely diverse in the five sub-regions, and also during differen…

010506 paleontologysettlements060102 archaeologyEcologyisraelEcology (disciplines)06 humanities and the artsManagement Monitoring Policy and Law01 natural sciencesArchaeologyeconomic conditionslandscape archaeologyGeography0601 history and archaeologysea of galileeQH540-549.50105 earth and related environmental sciencesNature and Landscape ConservationJournal of Landscape Ecology
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Modelling circulation in an ice-covered lake

2010

In deep ice-covered lakes with temperatures below 4 °C the heat flux from the bottom sediment results in a horizontal density gradient and a consequent flow along the bottom slope. Measurements in Lake Paajarvi, Finland, show a stable temperature field where a heat gain through the bottom and a heat loss through the ice nearly balance each other. The circulation is thermal with low velocities (less than 1.5 cm s -1 ). We used the 3D hydrodynamic Princeton Ocean Model as a tool to simulate the water circulation and the temperature distribution under the ice. The model forcing was based on field temperature measurements. The model simulations suggest that in midwinter the velocity field of th…

0106 biological sciences010504 meteorology & atmospheric sciences010604 marine biology & hydrobiologyFlow (psychology)lcsh:QE1-996.5SedimentForcing (mathematics)Atmospheric sciences01 natural sciencesPrinceton Ocean ModelCurrent (stream)lcsh:GeologyCirculation (fluid dynamics)Heat fluxhydrodynamic modelling13. Climate actionAnticycloneClimatologyGeneral Earth and Planetary Sciences14. Life underwaterLake Pääjärvi.Geologycurrents0105 earth and related environmental sciencesWater Science and TechnologyEstonian Journal of Earth Sciences
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Summarizing the state of the terrestrial biosphere in few dimensions

2020

Abstract. In times of global change, we must closely monitor the state of the planet in order to understand the full complexity of these changes. In fact, each of the Earth's subsystems – i.e., the biosphere, atmosphere, hydrosphere, and cryosphere – can be analyzed from a multitude of data streams. However, since it is very hard to jointly interpret multiple monitoring data streams in parallel, one often aims for some summarizing indicator. Climate indices, for example, summarize the state of atmospheric circulation in a region. Although such approaches are also used in other fields of science, they are rarely used to describe land surface dynamics. Here, we propose a robust method to crea…

0106 biological sciences010504 meteorology & atmospheric sciencesAtmospheric circulationlcsh:Life0207 environmental engineering02 engineering and technology010603 evolutionary biology01 natural scienceslcsh:QH540-549.5Cryosphere020701 environmental engineeringEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesEarth-Surface ProcessesData stream mininglcsh:QE1-996.5BiosphereGlobal change15. Life on landAlbedolcsh:Geologylcsh:QH501-531Arctic13. Climate actionClimatologyEnvironmental sciencelcsh:EcologyHydrosphere
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A conservation roadmap for the subterranean biome

2021

6 páginas.- 1 figuras.- 17 referencias.- Wynne JJ, Howarth FG, Mammola S, et al. A conservation roadmap for the subterranean biome. Conservation Letters. 2021; e12834. https://doi.org/10.1111/conl.12834

0106 biological sciences010504 meteorology & atmospheric sciencesConvention on biological diversityBiomeBiodiversityHypogeanQH1-199.5hypogean010603 evolutionary biology01 natural sciencesindicator speciescavesCaveEcology Evolution Behavior and Systematics1172 Environmental sciences0105 earth and related environmental sciencesNature and Landscape ConservationbiodiversityConvention on Biological Diversitygeography.geographical_feature_categoryEcologyEcologybiodiversity; caves; convention on biological diversity; hypogean; indicator speciesGeneral. Including nature conservation geographical distributionBiodiversity15. Life on landBiodiversitatCavesGeographyIndicator speciesIndicator speciesconvention on biological diversity
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Invertebrate communities of the High Arctic ponds in Hornsund

2016

How environmental conditions influence current distributions of organisms at the local scale in sensitive high Arctic freshwaters is essential to understand in order to better comprehend the cascading consequences of the ongoing climate change. This knowledge is also important background data for paleolimnological assessments of long-term limnoecological changes and in describing the range of environmental variability. We sampled five limnologically different freshwater sites from the Fuglebergsletta marine terrace in Hornsund, southern Svalbard, for aquatic invertebrates. The invertebrate communities were tested against non-climatic environmental drivers (limnological and catchment variabl…

0106 biological sciences010504 meteorology & atmospheric sciencesEcologyEcology010604 marine biology & hydrobiologyaquatic invertebrateslcsh:QE1-996.5Climate change15. Life on landBiology01 natural scienceslcsh:GeologyArcticclimate changeArctic13. Climate action1181 Ecology evolutionary biologypolar lakes14. Life underwaterbird impactEcology Evolution Behavior and Systematics1172 Environmental sciences0105 earth and related environmental sciencesInvertebratePolish Polar Research
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Complex responses of global insect pests to climate warming

2020

Although it is well known that insects are sensitive to temperature, how they will be affected by ongoing global warming remains uncertain because these responses are multifaceted and ecologically complex. We reviewed the effects of climate warming on 31 globally important phytophagous (plant‐eating) insect pests to determine whether general trends in their responses to warming were detectable. We included four response categories (range expansion, life history, population dynamics, and trophic interactions) in this assessment. For the majority of these species, we identified at least one response to warming that affects the severity of the threat they pose as pests. Among these insect spec…

0106 biological sciences010504 meteorology & atmospheric sciencesEcologyinsect pestsEcologymedia_common.quotation_subjectGlobal warmingfungiVDP::Landbruks- og Fiskerifag: 900::Landbruksfag: 910::Skogbruk: 915levinneisyysInsectBiologyilmastonmuutokset010603 evolutionary biology01 natural sciencespopulaatiodynamiikkaPeer reviewclimate warmingtuhohyönteisethyönteisetAdaptationBiological sciencesEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesmedia_common
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Current and Future Influence of Environmental Factors on Small Pelagic Fish Distributions in the Northwestern Mediterranean Sea

2020

Managing for the Future: Understanding the Relative Roles of Climate and Fishing on Structure and Dynamics of Marine Ecosystems.-- 20 pages, 15 figures, supplementary material https://www.frontiersin.org/articles/10.3389/fmars.2020.00622/full#supplementary-material

0106 biological sciences010504 meteorology & atmospheric sciencesEnvironmental changeclimate changeslcsh:QH1-199.5Species distributionClimate changeOcean EngineeringAquatic Sciencelcsh:General. Including nature conservation geographical distributionOceanography01 natural sciencesClimate changesMediterranean seaFutures scenariosAnchovyClimate refugesEuropean anchovylcsh:Science0105 earth and related environmental sciencesWater Science and TechnologyGlobal and Planetary ChangeBiomass (ecology)biologyspecies distribution model010604 marine biology & hydrobiologyPelagic zoneSpecies distribution modelsmall pelagic fishesclimate refugesbiology.organism_classificationFisherySmall pelagic fishesNW MediterraneanEnvironmental sciencelcsh:Qfutures scenariosFrontiers in Marine Science
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Understanding the uncertainty in global forest carbon turnover

2020

Abstract. The length of time that carbon remains in forest biomass is one of the largest uncertainties in the global carbon cycle, with both recent historical baselines and future responses to environmental change poorly constrained by available observations. In the absence of large-scale observations, models used for global assessments tend to fall back on simplified assumptions of the turnover rates of biomass and soil carbon pools. In this study, the biomass carbon turnover times calculated by an ensemble of contemporary terrestrial biosphere models (TBMs) are analysed to assess their current capability to accurately estimate biomass carbon turnover times in forests and how these times a…

0106 biological sciences010504 meteorology & atmospheric sciencesEnvironmental changelcsh:Life01 natural sciencesCarbon cyclelcsh:QH540-549.5ddc:550Baseline (configuration management)Ecology Evolution Behavior and Systematics0105 earth and related environmental sciencesEarth-Surface Processes[SDU.OCEAN]Sciences of the Universe [physics]/Ocean AtmosphereBiomass (ecology)lcsh:QE1-996.5BiosphereSoil carbon15. Life on landPlant functional typelcsh:GeologyEarth scienceslcsh:QH501-531[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/Climatology13. Climate actionTurnoverlcsh:EcologyPhysical geography010606 plant biology & botanyBiogeosciences
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