Search results for " Gradient"

showing 10 items of 575 documents

Attēlu aprakstīšana ar konvolūciju un rekurentajiem neironu tīkliem

2017

Automātiskā attēlu aprakstīšana ir fundamentāla mākslīgās inteliģences problēma, ku- ra apvieno kompjūter-redzes un naturālās valodas apstrādes algoritmus. Šajā darbā tiks apskatīta šī nozare, pielietots apbalvojumus izcīnījis modelis un pētītas šī modeļa variāci- jas. Attēlus aprakstošais modelis ir mākslīgais neironu tīkls, kurš sevī apvieno konvolūciju un rekurento neironu tīklu arhitektūras. Darbā vispirms abas arhitektūras ir apskatītas atsevišķi, kā arī teorija, uz kuru balstās modelis. Apskatītais modelis un tā variācijas tiek salīdzinātas, izmantojot klasiskos mašīnmācīšanās rādītājus un mašīntulkošanā izman- totas metrikas. Pēc dažiem rādītājiem oriģinālā modeļa uzlabojumi izrādījā…

Rekurentie Neironu tīkliMatemātikaKonvolūciju Neironu tīkliEksplodējošais/pazūdošais gradientsDziļie Neironu tīkliAutomātiskā Attēlu aprakstīšana
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Application of reverse electrodialysis to site-specific types of saline solutions: A techno-economic assessment

2019

Abstract Salinity gradients are a non-conventional source of renewable energy based on the recovery of the Gibbs free energy related to the mixing of solutions at different concentrations. Reverse Electrodialysis is a promising and innovative technology able to convert this energy directly into electric current. The worldwide availability of salinity gradients is limited to those locations where water bodies at different salinity levels are present. The present work analyses a number of different scenarios worldwide, in locations where salinity gradients are naturally available or generated by anthropogenic activities. A techno-economic model of the Reverse Electrodialysis process is presen…

Renewable energySettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciWork (thermodynamics)020209 energyTechno-economics02 engineering and technologyIndustrial and Manufacturing Engineeringsymbols.namesakeSaline solutions020401 chemical engineeringReversed electrodialysisReverse electrodialysi0202 electrical engineering electronic engineering information engineeringOsmotic power0204 chemical engineeringElectrical and Electronic EngineeringCost of electricity by sourceCivil and Structural EngineeringSalinity gradient energybusiness.industryMechanical EngineeringEnvironmental engineeringBuilding and ConstructionPollutionRenewable energyGibbs free energySalinityGeneral EnergyOsmotic powersymbolsEnvironmental scienceLevelized cost of electricitybusinessEnergy
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Nuclear Resonance Scattering Using Synchrotron Radiation (Mössbauer Spectroscopy in the Time Domain)

2010

Conventional Mossbauer spectroscopy (MS) can be considered as “spectroscopy in the energy domain.” It has been widely used since its discovery in 1958 [1]. Nuclear resonant forward scattering (NFS) of synchrotron radiation has been successfully employed as a time-differential technique since 1991 [2]. Another related technique, nuclear inelastic scattering (NIS) of synchrotron radiation [3], can be regarded as an extension of conventional, energy-resolved MS (in the range 10−9 to 10−7 eV) to energies on the order of molecular vibrations (in the range 10−3 to 10−1 eV). So far only a few “Mossbauer” stations for NFS and NIS measurements have become available in synchrotron laboratories, i.e.,…

Resonant inelastic X-ray scatteringMaterials scienceX-ray Raman scatteringlawScatteringSynchrotron radiationInelastic scatteringAtomic physicsSpectroscopySynchrotronElectric field gradientlaw.invention
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Techno-economic evaluation of Reverse Electrodialysis process in different real environments

2018

Salinity Gradient Power is a promising renewable energy source based on the recovery of the chemical potential released from the mixing of solutions at different concentrations. Natural salinity gradients are extensively available worldwide in natural reservoirs. Reverse Electrodialysis is an innovative technology able to perform a direct conversion of the energy of mixing into electricity. Salinity gradients coming from natural resources or from human activities are worldwide available. In the present work a number of different scenarios, including natural resources (e.g. rivers, seas, lakes and salt ponds), industrial/urban wastes (e.g. brine and treated wastewaters) are analysed. The aim…

Reverse Electrodialysis Salinity Gradient Power Open-loop RED Gibbs free energy of mixing.
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Thermal regeneration of ammonium bi-carbonate solutions for closed-loop reverse electrodialysis

2016

Reverse electrodialysis is a novel technology that exploits a salinity gradient to generate electrical energy. The salinity gradient can be available from natural waters such as seawater and river water or they can be artificially generated and used within closed-loop applications. This last option has been recently investigated leading to the development of the RED heat engine concept. In this case, the deployed salinity gradient exiting the RED unit is regenerated in a thermally-driven unit using low-temperature heat, thus being able to convert heat to power within an integrated system. Among the different regeneration alternatives, the use of thermolytic salts has been presented as a pro…

Reverse Electrodialysis Salinity gradient Power SGP Heat Engine Waste heat Ammonium hydrogen carbonateSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi Chimici
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Reverse Electrodialysis with brackish water and concentrated brines: up-scaled pilot plant operating in a real environment

2015

This work focuses on the saling up of the REA Power plant through the installation of two larger RED modules

Reverse Electrodialysis Slainity Gradient Power Brine REAPower Brackish water
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Reverse electrodialysis – Multi effect distillation heat engine fed by lithium chloride solutions

2019

Salinity Gradient Heat Engines (SG-HEs) have been proposed as a promising technology for converting low-temperature heat into electricity. The SG-HE includes two different processes: (i) a salinity gradient process where the salinity gradient between two solutions is converted into electricity and (ii) a thermal regeneration process where low-grade heat (T<100°C) is used to re-establish the original salinity gradient of the two streams. Among the proposed working solutions, aqueous solution of lithium chloride has been identified as one of the most promising thanks to its remarkable solubility and activity. In this work, a process model to study the performance of a SG-HE constituted by …

Reverse ElectrodialysisSalinity gradient heat engine
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Eh and pH gradients in Camembert cheese during ripening: Measurements using microelectrodes and correlations with texture

2007

International audience; This study investigated the use of microelectrodes to continuously and simultaneously monitor pH and redox potential (Eh) gradients in Camembert cheeses from the rind to the core, as a function of ripening time (15 and 35 days). Cheeses were shown to be heterogeneous throughout their mass. An Eh gradient existed from the rind to the core. The surface was oxidizing (+330 to +360 mV) and the core was reducing and became more so in the course of ripening (−300 to −360 mV). A relationship between firmness and Eh was shown. pH gradients were in line with those previously described in the literature and related to ammonium and lactate gradients. Gradients evolved from the …

RipeningCheese ripeningCamembert cheeseEH gradientApplied Microbiology and BiotechnologyRedoxchemistry.chemical_compoundMicroelectrodechemistryPH gradientOxidizing agentMicroelectrodeCamembert cheese[SDV.IDA]Life Sciences [q-bio]/Food engineeringAmmoniumTexture (crystalline)Food scienceTextureFood Science
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The yeast histone acetyltransferase A2 complex, but not free Gcn5p, binds stably to nucleosomal arrays.

2000

We have investigated the structural basis for the differential catalytic function of the yeast Gcn5p-containing histone acetyltransferase (HAT) A2 complex and free recombinant yeast Gcn5p (rGcn5p). HAT A2 is shown to be a unique complex that contains Gcn5p, Ada2p, and Ada3p, but not proteins specific to other related HAT A complexes, e.g. ADA, SAGA. Nevertheless, HAT A2 produces the same unique polyacetylation pattern of nucleosomal substrates reported previously for ADA and SAGA, demonstrating that proteins specific to the ADA and SAGA complexes do not influence the enzymatic activity of Gcn5p within the HAT A2 complex. To investigate the role of substrate interactions in the differential …

Saccharomyces cerevisiae ProteinsSaccharomyces cerevisiaeBiologyBiochemistrySubstrate SpecificityFungal ProteinsHistonesTetramerAcetyl Coenzyme AAcetyltransferasesparasitic diseasesCentrifugation Density GradientAnimalsMolecular BiologyHistone Acetyltransferaseschemistry.chemical_classificationSubstrate (chemistry)AcetylationCell BiologyHistone acetyltransferaseYeastChromatinRecombinant ProteinsTrypsinizationNucleosomesN-terminusDNA-Binding Proteinsenzymes and coenzymes (carbohydrates)EnzymechemistryBiochemistryAcetylationBiophysicsbiology.proteinChickensProtein KinasesThe Journal of biological chemistry
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Lab-scale investigation of a pressure retarded osmosis module fed by "non-conventional" salinity gradient

2015

Aim of this work has been to investigate the feasibility of PRO technology for power generation from saline streams originated by different water treatments plants, namely brine from a thermal desalination plant and fresh water from a sewage treatment plant.

Salinity gradient power PRO Forward osmosis Brine Wastewater Energy recovery
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