Search results for "Turing"

showing 10 items of 2644 documents

Shakedown optimum design of reinforced concrete framed structures

1994

Structures subjected to variable repeated loads can undergo the shakedown or adaptation phenomenon,-which prevents them from collapse but may cause lack of serviceability, for the plastic deformations developed, although finite, as shakedown occurrence postulates, may exceed some maximum values imposed by external ductility criteria. This paper is devoted to the optimal design of reinforced concrete structures, subjected to variable and repeated loads. For such structures the knowledge of the actual values taken by the plastic deformations, at shakedown occurrence, is a crucial issue. An approximate assessment of such plastic deformations is needed, which is herein provided in the shape of …

Optimal designControl and OptimizationServiceability (structure)Discretizationbusiness.industryApplied MathematicsRegular polygonStructural engineeringManagement Science and Operations ResearchReinforced concreteIndustrial and Manufacturing EngineeringFinite element methodComputer Science ApplicationsShakedownQuadratic equationbusinessMathematics
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Optimal design of tube hydroforming processes: A fuzzy-logic-based approach

2004

In recent years, tube hydroforming has become an economic and industrially suitable alternative to various traditional stamping processes, in particular for small batch production. In the present paper, an artificial intelligence system based on fuzzy logic was implemented for tube hydroforming process design. The aim was to achieve a process design procedure able to prevent forming defects and guarantee the achievement of the desired final shape of the component. In particular, the process design concerns the internal pressure history and the axial feeding. The fuzzy system is able to provide optimal trajectories for both the controlled parameters, producing a defect-free final part.

Optimal designEngineering drawingHydroformingEngineeringArtificial Intelligence Systembusiness.industryMechanical EngineeringControl engineeringProcess designFuzzy control systemStampingFuzzy logicIndustrial and Manufacturing EngineeringBatch productionbusinessProceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture
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OPTIMUM DESIGN OF REINFORCED CONCRETE STRUCTURES UNDER VARIABLE LOADINGS

1987

Abstract This paper presents a method for optimal design of reinforced concrete (RC) structures, subjected to quasi-static variable loads and accounting for cross-sections limited ductility requirements. It consists of a very simple refinement procedure to be applied in the classical Optimal Shakedown Design, (OSD), which leads to a strengthened structure satisfying the requisite that the actual plastic relative rotations, developed at a specified set of critical sections as a result of a variable repeated loading program, do not exceed given upper limits. This strengthened design is a safe but not strictly optimal design and is obtained using the simple rule that the steel reinforcement ar…

Optimal designEngineeringControl and OptimizationCritical sectionbusiness.industryApplied MathematicsPortal frameStructural engineeringManagement Science and Operations ResearchIndustrial and Manufacturing EngineeringComputer Science ApplicationsShakedownVariable (computer science)Simple (abstract algebra)Limit (mathematics)DuctilitybusinessEngineering Optimization
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The application of AI techniques in the optimal design of multi-pass cold drawing processes

2001

Abstract In the paper the problem of optimal pass schedule design in multi-pass wire drawing process is investigated. An automatic design procedure based on an effective artificial intelligence (AI) technique, namely simulated annealing (SA), is proposed. The developed algorithm is aimed to achieve a satisfactory balance of the drawing stresses on the material along the reduction sequence, maintaining in the meantime the drawing stress at each pass below a safety value. In this way both the optimal number of passes and the optimal drawing sequence are determined. The effectiveness of the design procedure is tested through the comparison of the sequences suggested by the algorithm with a set…

Optimal designEngineeringEngineering drawingScheduleSequenceMathematical optimizationbusiness.industryWire drawingMetals and AlloysIndustrial and Manufacturing EngineeringComputer Science ApplicationsSet (abstract data type)Reduction (complexity)Modeling and SimulationSimulated annealingCeramics and CompositesbusinessJournal of Materials Processing Technology
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Costructal law, exergy analysis and life cycle energy sustainability assessment: an expanded framework applied to a boiler

2020

Purpose Life cycle sustainability assessment (LCSA) is one of the most relevant tools delving in sustainability science, based currently on the triple bottom line idea that is defined as the contemporary implementation of the three tools of life cycle assessment (LCA), life cycle costing (LCC) and social life cycle assessment (S-LCA). The methodology is currently being applied to a wide set of products and systems. However, as per in the large interest towards energy-related products, the sustainability assessment of energy systems—in particular those where fluid streams are used—could be more effective if some further stages could be included in the analysis, i.e. a process level analysis …

Optimal designExergyDecision support systemConstructal lawComputer science020209 energyTriple bottom lineSustainability science02 engineering and technology010501 environmental sciences01 natural sciencesManufacturing engineeringSustainability0202 electrical engineering electronic engineering information engineeringLife-cycle assessmentEnergy systems Design Sustainability Life cycle sustainability assessment0105 earth and related environmental sciencesGeneral Environmental Science
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An original multi-objective criterion for the design of small-scale polygeneration systems based on realistic operating conditions

2008

The optimal design and operation of cogeneration and trigeneration systems for buildings applications is a complex issue, which has been investigated by several different approaches. Both the two basic management strategies, namely heat-tracking and electricity-tracking, have advantages and drawbacks in terms of operating results and may lead the plant designer either to undersize or oversize the CHP unit with respect to the optimal lay-out. Experimental works have demonstrated how the actual on-site performance of small-scale polygeneration systems significantly differs from their expected operation, due to the need for a regular plant operation and the effects of outages for scheduled or …

Optimal designOptimizationEngineeringHeuristic (computer science)business.industryTrigenerationScale (chemistry)Energy Engineering and Power TechnologyIndustrial and Manufacturing EngineeringReliability engineeringCogenerationEnergy savingProfitability indexInstrumentation (computer programming)Plant designDuration (project management)businessManagement strategyEnergy (signal processing)SimulationCogeneration
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A gradient-based decomposition approach to optimize pressure path and counterpunch action in Y-shaped tube hydroforming operations

2008

International audience; In tube hydroforming, the concurrent actions of pressurized fluid and mechanical feeding allows obtaining tube shapes characterized by complex geometries such as different diameters sections and/or bulged zones. Main process parameters are material feeding history (i.e., the punches velocity history), internal pressure path during the process, and (in T- or Y-shaped tube hydroforming) counterpunch action. What is crucial, in such processes, is the proper design of operative parameters aimed to avoid defects (for instance underfilling or ductile fractures). Actually, the design of tube hydroforming operations is mainly aimed to prevent bursting or buckling occurrence …

Optimization0209 industrial biotechnologyEngineeringOptimization problemMechanical engineering02 engineering and technologyIndustrial and Manufacturing EngineeringDecomposition approach[SPI.MAT]Engineering Sciences [physics]/Materials020901 industrial engineering & automationY-shaped tube hydroforming Gradient-based techniques Decomposition approach Optimization0203 mechanical engineeringDecomposition (computer science)Tube (container)Settore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneY-shaped tube hydroformingHydroformingbusiness.industryMechanical EngineeringGradient-based techniquesProcess (computing)Internal pressureStructural engineering[SPI.MECA]Engineering Sciences [physics]/Mechanics [physics.med-ph]Computer Science Applications020303 mechanical engineering & transportsBucklingControl and Systems EngineeringPath (graph theory)businessSoftware
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A methodology for the semi-automatic generation of analytical models in manufacturing

2018

International audience; Advanced analytics can enable manufacturing engineers to improve product quality and achieve equipment and resource efficiency gains using large amounts of data collected during manufacturing. Manufacturing engineers, however, often lack the expertise to apply advanced analytics, relying instead on frequent consultations with data scientists. Furthermore, collaborations between manufacturing engineers and data scientists have resulted in highly specialized applications that are not relevant to broader use cases. The manufacturing industry can benefit from the techniques applied in these collaborations if they can be generalized for a wide range of manufacturing probl…

Optimization0209 industrial biotechnologySupport Vector MachineGeneral Computer ScienceProcess (engineering)Computer sciencemedia_common.quotation_subjectResource efficiencyComputerApplications_COMPUTERSINOTHERSYSTEMS02 engineering and technology020901 industrial engineering & automationManufacturing0202 electrical engineering electronic engineering information engineeringAdvanced analytics[INFO]Computer Science [cs]Quality (business)Use caseMillingmedia_commonGenetic AlgorithmArtificial Neural-Networkbusiness.industrySystemsGeneral EngineeringModel-basedNeural networkRegressionManufacturing engineeringProduct (business)ManufacturingSurface-RoughnessAnalytics020201 artificial intelligence & image processingDynamic Bayesian NetworksPerformance indicatorFault-DiagnosisPredictionbusinessComputers in Industry
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Optimal Integration of Hybrid Supercapacitor and IPT System for a Free-Catenary Tramway

2019

The aim of the paper is the study of an optimal integration of a supercapacitor-based storage system and inductive power transfer system for the free-catenary operation of a tramway. Starting from the definition of the topology of inductive power transfer system, we propose and analyze a design procedure for the pads of the inductive power system. In the second part of the paper, an optimal integration strategy for the correct size of on-board supercapacitors and the power of the inductive energy transfer are proposed. The results obtained by means of numerical simulations are discussed. © 2018 IEEE.

OptimizationComputer science020209 energyIntegrationHybrid supercapacitorTopology (electrical circuits)02 engineering and technologySettore ING-IND/32 - Convertitori Macchine E Azionamenti Elettriciinductive power transfer (IPT)Electric power systemLight rail transitIndustrial and Manufacturing EngineeringTramway SupercapacitorVehicle dynamicsElectric power systemEvolutionary algorithmCatenaryInductive power transmission0202 electrical engineering electronic engineering information engineeringMaximum power transfer theoremsupercapacitorElectrical and Electronic EngineeringOptimal integrationSupercapacitorInductive power transfer systemdifferential evolutionbusiness.industry020208 electrical & electronic engineeringElectrical engineeringtramwayOverhead lines Catenary freeInductive power transferPower (physics)Design procedureEnergy transferControl and Systems EngineeringComputer data storageCatenary freebusinessIEEE Transactions on Industry Applications
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A multi-technique simultaneous approach for the design of a sailing yacht

2015

In this paper, most significant steps involved during the whole process of designing a sailing yacht are outlined. In particular, a novel simultaneous approach has been proposed to optimize the design process of a sailing yacht. Analytical resistance prediction models are simultaneously used with CAD systems and computational fluid dynamics tools to find, in the more effective way, the best solution for the chosen design conditions. As a general rule, in fact, once the target point has been decided, task of the designer is the definition of those systems of aerodynamic and hydrodynamic forces that are in equilibrium when the boat sails at its target. Unfortunately, a multi-purpose yacht doe…

OptimizationEngineeringProcess (engineering)020101 civil engineering02 engineering and technologyNumerical method01 natural sciencesIndustrial and Manufacturing Engineering010305 fluids & plasmas0201 civil engineeringModeling and simulationConceptual designComputational fluid dynamicIndustrial designHull0103 physical sciencesPoint (geometry)Settore ING-IND/15 - Disegno E Metodi Dell'Ingegneria Industrialebusiness.industryAerodynamicsModeling and SimulationConceptual designSailing yachtEngineering design processbusinessMarine engineering
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