Search results for "Shore"

showing 10 items of 263 documents

Mapping of subsurface shell midden components through percussion coring: examples from the Dundas Islands

2009

Following earlier examples of mapping the subsurface of shell bearing sites using augering, we employ percussion coring to identify early Holocene shell midden components at two types of sites on the Northwest Coast of North America. We describe a method for mapping subsurface components at shell bearing sites including basal deposits, paleosols and transitions between distinct cultural components. Our research was undertaken for the purpose of identifying early Holocene shell middens above the modern shore, and as components below large shell midden villages. Our results augment the developmental trajectory of shell middens on the Northwest Coast by suggesting that pre-5000 BP forms of the…

ShoreArcheologygeographygeography.geographical_feature_categoryShell (structure)PaleosolCoringArchaeologyMiddenPaleontologySequence (geology)RepartitionGeologyHoloceneJournal of Archaeological Science
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2008

Abstract. Airborne in-situ observations of carbon dioxide (CO2) were made during 7 intensive measurement campaigns between November 2001 and April 2003 as part of the SPURT project. Vertical profiles and latitudinal gradients in the upper troposphere/lowermost stratosphere were measured along the western shore of Europe from the subtropics to high northern latitudes during different seasons. In the boundary layer, CO2 exhibits a strong seasonal cycle with the maximum mixing ratios in winter and minimum values in summer, reflecting the strength of CO2 exchange with vegetation. Seasonal variations are strongest in high latitudes and propagate to the free troposphere and lowermost stratosphere…

ShoreAtmospheric Sciencegeographygeography.geographical_feature_categoryVegetationSubtropicsAtmospheric sciencesLatitudeTropospherechemistry.chemical_compoundAltitudechemistryClimatologyCarbon dioxideEnvironmental scienceStratosphereAtmospheric Chemistry and Physics
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Random wave run-up with a physically-based Lagrangian shoreline model

2014

Abstract In the present paper the run-up of random waves was calculated by means of a numerical method. In situ measurements based on a video imaging technique have been used for the validation of the present numerical model. The on-site run-up measurements have been carried out at Lido Signorino beach, near Marsala, Italy,along a transect, normal to the shore. A video camera and a linear array of rods have been used to obtain field data. Numerical simulations with a 1DH Boussinesq-type of model for breaking waves which takes into account the wave run-up by means of a Lagrangian shoreline model have been carried out. In such simulations random waves of given spectrum have been propagated in…

ShoreBoussinesq numerical modelgeographygeography.geographical_feature_categoryMeteorologyNumerical analysisBreaking waveVideo cameraGeneral Medicineirregular wave run-upGeodesyirregular wave run-up; Boussinesq numerical model; shorelineRandom waveslaw.inventionSettore ICAR/01 - IdraulicaFlumesymbols.namesakeshorelinelawsymbolsTransectGeologyLagrangianEngineering(all)
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Present-day use of an empirical wave prediction method

2016

Knowledge of the offshore wave climate is key to the design of coastal engineering structures and to the study of shoreline evolution. To date, the available wave data have been limited both in time and space; even though there are several options for obtaining wave data calculated using complex numerical models at basin scale, design issues can in some cases be solved by means of simpler models. This paper shows whether, under certain conditions and in an enclosed basin, an old empirical model can provide results that are good enough to determine the design condition necessary for engineering purposes. The empirical model chosen to answer this question is called Sverdrup–Munk–Bretschneide…

ShoreEngineeringgeographygeography.geographical_feature_categoryBuoySpacetimebusiness.industrySettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologia0211 other engineering and technologiesDesign methods and aidOcean Engineering02 engineering and technologyStructural basinPresent dayCivil engineeringCoastal engineeringSettore ICAR/01 - Idraulica021105 building & constructionCoastal engineeringSubmarine pipelineMathematical modelingbusinessBasin scale021101 geological & geomatics engineering
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Smart grid for offshore wind farms: Towards an information model based on the IEC 61400-25 standard

2012

Nowadays, wind energy is one of the most recognized renewable energy sources. Onshore wind farms have been built in many countries, such as Denmark, Norway, UK, Italy, Brazil and the US. To utilize the more stable wind resources, wind farms have moved off the shore, first to shallow waters near shore and now extending to deeper waters and far off the shore. Deep-water offshore solutions will give access to large areas with high wind, and less sensitivity to noise, visual impacts and size. However, the cost of developing and operating an offshore wind farm is many times larger than onshore due to large water depths and harsh offshore environments. Hence, the needs for fast and automatic data…

ShoreEngineeringgeographygeography.geographical_feature_categoryWind powerIEC 61400-25business.industryCivil engineeringRenewable energyOffshore wind powerSmart gridSea breezeSubmarine pipelinebusinessMarine engineering2012 IEEE PES Innovative Smart Grid Technologies (ISGT)
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A Shoreline model for breaking waves

2011

In order to simulate the wave motion and, in turn, the flow, within the nearshore region, in the last decades the derivation and the application of depth-integrated type of models have been widely investigated and developed. However, in such models, the problems of facing wave breaking and the moving shoreline are not trivial and therefore several approaches have been proposed. About wave breaking, approaches both based on the adoption of an artificial eddy viscosity Zelt (1991) and on the concept of roller Veeramony (2000), Karambas (2003), Musumeci (2005) have been implemented. As regards the shoreline boundary condition, a couple of numerical techniques have been mainly adopted, namely t…

ShoreEngineeringgeographygeography.geographical_feature_categorybusiness.industryFlow (psychology)Settore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaTurbulence modelingExtrapolationBreaking waveMechanicsGridGeneral Earth and Planetary Sciencesshoreline boussinesq model breaking wavesGeotechnical engineeringBoundary value problembusinessGeneral Environmental ScienceSwash
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Shoreline Evolution and Environmental Changes at the NW Area of the Gulf of Gela (Sicily, Italy)

2021

Coastal areas are among the most biologically productive, dynamic and valued ecosystems on Earth. They are subject to changes that greatly vary in scale, time and duration and to additional pressures resulting from anthropogenic activities. The aim of this work was to investigate the shoreline evolution and the main environmental changes of the coastal stretch between the towns of Licata and Gela (in the Gulf of Gela, Sicily, Italy). The methodology used in this work included the analysis of: (i) shoreline changes over the long- and medium-term periods (1955–2019 and 1989–2019, respectively), (ii) dune system fragmentation and (iii) the impact of coastal structures (harbours and breakwaters…

ShoreGlobal and Planetary Changegeographygeography.geographical_feature_categoryEcologySFragmentation (computing)Agriculturedune fragmentationshoreline changesShoreline changecoastal armouringSedimentary depositional environmentOceanographyBreakwaterHarbourPeriod (geology)ErosionDSAScomputerGeologyNature and Landscape ConservationAccretion (coastal management)computer.programming_languageLand
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Book Review: Northern Shores: A History of the Baltic Sea and Its Peoples

2006

ShoreHistorygeographygeography.geographical_feature_categoryBaltic seaTransportationAncient historyArchaeologyInternational Journal of Maritime History
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A revision of the shore-fly genus Hydrochasma Hendel (Diptera, Ephydridae)

2013

A revision of the shore-fly genus Hydrochasma Hendel. The species of the genus Hydrochasma Hendel are revised, including 27 new species (type locality in parenthesis): H. andeum (Ecuador. Guayas: Boliche (02°07.7'S, 79°35.5'W)), H. annae (United States. Utah. Grand: Swasey Beach (15.3 km N Green River; 39°07'N, 110°06.6'W; Green River; 1255 m)), H. capsum (Ecuador. Orellana: RíoTiputini (0°38.2'S, 76°8.9'W)), H. castilloi (Ecuador. Loja: Catamayo (03°59'S, 79°21'W)), H. crenulum (Peru. Cuzco: Paucartambo, Atalaya (Río Alto Madre de Dios; 12°53.3'S, 71°21.6'W; 600 m)), H. denticum (Ecuador…

ShoreHydrochasma sp. n.geography.geographical_feature_categorybiologyAtalayaDipteraEphydridaeNew WorldDiscocerinabiology.organism_classificationArchaeologyArticleEphydridaeGeographyEnvironmental protectionGenuslcsh:ZoologyKey (lock)Animal Science and ZoologyType localitylcsh:QL1-991Ecology Evolution Behavior and SystematicsZooKeys
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Coupling a hydro-maritime model and remotely sensed techniques to assess the shoreline positioning uncertainty: the Marsala coast study case

2010

The severe erosion phenomena affecting the Mediterranean coasts are strictly related to geophysical characteristics and socio-economic pressures. This suggests the need of monitoring and modelling the phenomenon in order to quantify its strength. In fact, the shoreline position, as well as its temporal evolution, provides important information for designing defence structures and for the development of a coastal management plan. The shoreline has a dynamic nature as it changes both in the short and long period. Those changes are caused by geo-morphological (e.g. bars and barrier island development etc.) and hydrodynamic (wave motion, tides and flows) processes, as well as by sudden and fast…

ShoreHydrologygeographygeography.geographical_feature_categoryBuoyPhysical oceanographycoast sandy beach shoreline motion waves run-up tides.Coastal erosionBarrier islandSubmarine pipelineCoastal managementGeomorphologyGeologyAccretion (coastal management)Remote Sensing for Agriculture, Ecosystems, and Hydrology XII
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