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Heat --- Conduction --- Heat transfer coefficient --- Transmission. --- Conduction --- Heat transfer coefficient
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Thermal insulation --- Thermal conductivity --- Heat transfer coefficient --- Thermal insulation --- Thermal conductivity --- Heat transfer coefficient
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HEAT TRANSFER --- REFRIGERATING --- THERMAL CONDUCTIVITY --- HEAT EXCHANGERS --- MATHEMATICAL MODELS --- CRYOGENICS --- REFRIGERANTS --- THERMODYNAMIC PROPERTIES --- OPTIMIZATION --- TURBULENT FLOW --- PIPES TUBES --- ADSORPTION --- MASS TRANSFER --- FROST --- INSULATION --- HEAT TRANSFER COEFFICIENT --- FINITE DIFFERENCE THEORY --- HEAT PUMPS --- BOILING --- COOLING --- AIR CONDITIONING --- TRANSPORT PROPERTIES --- EXPERIMENTAL DATA --- CONCRETES --- SOLAR ENERGY --- HEAT TRANSFER --- REFRIGERATING --- THERMAL CONDUCTIVITY --- HEAT EXCHANGERS --- MATHEMATICAL MODELS --- CRYOGENICS --- REFRIGERANTS --- THERMODYNAMIC PROPERTIES --- OPTIMIZATION --- TURBULENT FLOW --- PIPES TUBES --- ADSORPTION --- MASS TRANSFER --- FROST --- INSULATION --- HEAT TRANSFER COEFFICIENT --- FINITE DIFFERENCE THEORY --- HEAT PUMPS --- BOILING --- COOLING --- AIR CONDITIONING --- TRANSPORT PROPERTIES --- EXPERIMENTAL DATA --- CONCRETES --- SOLAR ENERGY
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REFRIGERATING --- REFRIGERATOR CARS --- THERMAL INSULATION --- MARINE TRANSPORTATION --- ORNAMENTAL PLANTS --- VENTILATION --- RAILROAD CARS --- GAS TURBINES --- REFRIGERANT COMPRESSORS --- CRYOGENICS --- RAIL TRANSPORTATION --- COST ANALYSIS --- VEGETABLES --- TEMPERATURE CONTROL --- COOLING --- AIR CIRCULATION --- HEAT STORAGE --- FRUITS --- FROZEN FOODS --- HEAT TRANSFER COEFFICIENT --- MASS TRANSFER --- HEAT TRANSFER --- NAVAL SHIPS --- AGREEMENTS --- TRANSPORT REFRIGERATION --- MECHANICAL REFRIGERATION --- SHIPPING CONTAINERS --- REFRIGERATING --- REFRIGERATOR CARS --- THERMAL INSULATION --- MARINE TRANSPORTATION --- ORNAMENTAL PLANTS --- VENTILATION --- RAILROAD CARS --- GAS TURBINES --- REFRIGERANT COMPRESSORS --- CRYOGENICS --- RAIL TRANSPORTATION --- COST ANALYSIS --- VEGETABLES --- TEMPERATURE CONTROL --- COOLING --- AIR CIRCULATION --- HEAT STORAGE --- FRUITS --- FROZEN FOODS --- HEAT TRANSFER COEFFICIENT --- MASS TRANSFER --- HEAT TRANSFER --- NAVAL SHIPS --- AGREEMENTS --- TRANSPORT REFRIGERATION --- MECHANICAL REFRIGERATION --- SHIPPING CONTAINERS
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Buildings. --- Heat storage. --- Heat --- Heating load. --- Air conditioning --- Air intakes --- Automatic control --- Computerized simulation --- Conduction --- Convection --- Cooling load --- Heat balance --- Heat gain --- Heat recovery --- Heat transfer coefficient --- Heat transmission --- Illuminating --- Leakage --- Optimization --- Radiation --- Slabs --- Solar heating --- Solar radiation --- Thermal response --- Unsteady state --- Walls --- Wind meteorology --- Windows --- Transmission. --- Commerce --- Dynamique --- Refrigeration and refrigerating machinery. --- Charge thermique
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Thermodynamics --- Climatisation --- Thermodynamique --- Buildings. --- Heat exchangers. --- Heating load. --- Heating. --- Mass transfer. --- Measuring instruments. --- Performance --- Health. --- Design --- Air circulation --- Air cleaners --- Air conditioning --- Air conditioning equipment --- Comfort --- Cooling --- Cooling load --- Fans --- Fluid flow --- Heat transfer coefficient --- Heat transmission --- Humidity --- Jets --- Meteorological data --- Moisture --- Piping systems --- Pumps --- Refrigerating --- Solar heating --- Solar radiation --- Space heating --- Thermodynamic properties --- Thermophysical properties --- Ventilation --- Evaluation.
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In October 2014, the EU leaders agreed upon three key targets for the year 2030: a reduction by at least 40% in greenhouse gas emissions, savings of at least 27% for renewable energy, and improvements by at least 27% in energy efficiency. The increase in computational power combined with advanced modeling and simulation tools makes it possible to derive new technological solutions that can enhance the energy efficiency of systems and that can reduce the ecological footprint. This book compiles 10 novel research works from a Special Issue that was focused on data-driven approaches, machine learning, or artificial intelligence for the modeling, simulation, and optimization of energy systems.
Technology: general issues --- passive house --- enclosure structure --- heat transfer coefficient --- energy consumption --- turbo-propeller --- regional --- fuel --- weight --- range --- design --- CO2 reduction --- multi-objective combinatorial optimization --- meta-heuristics --- ant colony optimization --- non-intrusive load monitoring --- appliance classification --- appliance feature --- recurrence graph --- weighted recurrence graph --- V-I trajectory --- convolutional neural network --- energy baselines --- machine learning --- clustering --- neural methods --- smart intelligent systems --- building energy consumption --- building load forecasting --- energy efficiency --- thermal improved of buildings --- anti-icing --- heat and mass transfer --- heating power distribution --- heat load reduction --- optimization method --- experimental validation --- big data process --- predictive maintenance --- fracturing roofs to maintain entry (FRME) --- field measurement --- numerical simulation --- side abutment pressure --- strata movement --- energy --- manufacturing --- prediction --- forecasting --- modelling --- passive house --- enclosure structure --- heat transfer coefficient --- energy consumption --- turbo-propeller --- regional --- fuel --- weight --- range --- design --- CO2 reduction --- multi-objective combinatorial optimization --- meta-heuristics --- ant colony optimization --- non-intrusive load monitoring --- appliance classification --- appliance feature --- recurrence graph --- weighted recurrence graph --- V-I trajectory --- convolutional neural network --- energy baselines --- machine learning --- clustering --- neural methods --- smart intelligent systems --- building energy consumption --- building load forecasting --- energy efficiency --- thermal improved of buildings --- anti-icing --- heat and mass transfer --- heating power distribution --- heat load reduction --- optimization method --- experimental validation --- big data process --- predictive maintenance --- fracturing roofs to maintain entry (FRME) --- field measurement --- numerical simulation --- side abutment pressure --- strata movement --- energy --- manufacturing --- prediction --- forecasting --- modelling
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This second volume of the Special Issue includes 13 contributions, from across the world, with very interesting research topics such as: Energy Intensity Reduction; Large-Scale Non-Residential Buildings; Dynamic Control of HVAC with Heat Pumps; Reed Potential as a Regenerative Building Material and Their Performance Characterisation; Experimental Evaluation of Energy-Efficiency in a Holistically Designed Building; A Case Study of Design and Energy Performance Analysis of a Hotel Building in a Hot and Dry Climate; Internal Convective and Radiative Heat Transfer Coefficients for a Vertical Wall in a Residential Building; Passive Façade Performance Evaluation with Shape Memory Alloy (SMA) during the Architectural Design Process; Thermal Performance Improvement of Double-Pane Lightweight Steel Framed (LSF) Walls Using Thermal Break Strips (TBS) and Reflective Foils; Energy Performance of Buildings with Thermochromic Windows in Mediterranean Climates; Energy Performance and Benchmarking for University Classrooms in Hot and Humid Climates; Effect of HVAC’s Management on Indoor Thermo-Hygrometric Comfort and Energy Balance: In Situ Assessments on a Real nearly Zero Energy Building (nZEB); Stochastic-Based Optimisation Approach towards the Integration of Photovoltaic Panels in Multi-Residential Social Housing; Effect of Climate Change and Occupant Behaviour on the Environmental Impact of the Heating/Cooling Systems of a Real Apartment: A Parametric Study through Life Cycle Assessment; Road Thermal Collector for Building Heating in South Europe (Italy): Numerical Modeling and Design of an Experimental Set-Up.
Technology: general issues --- Chemical engineering --- energy efficiency improvement --- HVAC operation --- dynamic optimization --- sustainability --- reed (Arundo donax) --- material characterisation --- natural materials --- vernacular architecture --- holistic --- energy management system --- sustainable --- building performance --- thermal performance --- indoor comfort --- energy performance --- design parameters --- energy simulation --- building envelope --- convection --- radiation --- heat transfer coefficient --- correlation --- climate-adaptive building shells --- sustainable design --- energy efficiency --- shape-memory alloy --- climate change --- experimental assessment --- double-pane --- lightweight steel frame (LSF) --- partition walls --- aerogel thermal break strips --- aluminium reflective foils --- thermochromic coatings --- solar transmittance --- solar reflectance --- Energy Use Intensity --- higher education buildings --- energy consumption --- benchmarking --- hot and humid climates --- EnergyPlus --- nZEB --- HVAC management --- monitoring campaign --- load matching --- computational fluid dynamics --- social housing --- energy demand --- energy refurbishment --- internal gains --- occupation rate --- life cycle cost --- life cycle assessment (LCA) --- ReCiPe indicator --- global warming potential (GWP) indicator --- environmental impact --- heating and cooling systems --- occupant behaviour --- road thermal collector --- borehole thermal storage --- alternative energy system
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The Second International Conference on Advances in Mechanical Engineering, ICAME-22, was held on 25th August, 2022 at the Mechanical Engineering Department of Capital University of Science and Technology. All articles underwent a rigorous single-blind peer review process. ICAME-22 accepted papers in the disciplines of experimental and computational fluid dynamics, thermodynamics, heat Ttransfer, machine and mechanisms, design, solid mechanics, manufacturing, production and industrial engineering, engineering management, technology management, renewable energy, environmental engineering, bioengineering, materials, failure analysis, and related fields.
Technology: general issues --- History of engineering & technology --- converging diverging nozzle --- direct contact condensation --- multiphase flows --- steam cavitylength --- steam cavity shape --- multiphase flow --- plume cavity --- swirl flow --- fluid dynamics --- numerical simulation --- electronic devices --- pin fin heat sink --- heat transfer coefficient --- gust response --- flow noise --- aeroacoustics --- fully passive airfoil --- control volume spray chamber --- spray characteristics --- fuel penetration length --- spraycone angle --- supersonic nozzle --- direct-contact condensation --- recompression shock wave --- interceptingshock wave --- condensation potential --- cavity penetration length --- cavity plume shape --- plume shape --- thermal hydraulics --- flow separation --- over expanded --- side loads --- heat transfer --- inclination angle --- solar still --- thermoelectric generator --- cooling rate --- power generation --- waste heat --- modified --- liquid LPG --- latent --- heat of vaporization --- copper coil --- atmospheric conditions --- aligned tubes --- staggered arrangement --- heat transfer enhancement --- NACA airfoils --- pressuredrop
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This reprint is a continuation of our previous reprint “Sustainable agricultural, biological, and environmental engineering applications” [ISBN 978-3-0365-2921-9], which was published in January 2022. The reprint contains research and review works focused on agricultural engineering technologies and applications. In this regard, the reprint covers topics including agricultural storage, quality evaluation of fruits, evaporative cooling and desiccant systems, solar coffee roasting, solar yogurt processing, greenhouse environment, greenhouse ventilation, greenhouse thermal requirements, aquaculture production system, bioreactor landfill, waste management, fertilization reduction in agriculture, sustainable porous surfaces, simulation and modeling, artificial intelligence, and machine learning. Such agricultural engineering studies are urgently needed in the 21st century, particularly from the perspective of the agriculture–energy–food security nexus.
Research & information: general --- Biology, life sciences --- Technology, engineering, agriculture --- greenhouse --- microclimate --- Bayesian optimization --- deep neural network --- roses yield --- Gaussian process --- gradient boosting --- pool boiling heat transfer coefficient --- sintered coated porous surfaces --- gaussian process --- gradient boosting regression trees --- response surface --- renovation index --- CFD simulation --- airflow --- evaporative cooling --- desiccant dehumidification --- agricultural storage --- air conditioning --- system performance --- lemon cordial --- microwave --- preservation --- green processing --- antioxidant potential --- renewable energy --- Scheffler concentrator reflector --- batch-type solar roaster --- response surface methodology --- coffee roasting --- municipal solid waste --- sanitary landfill --- open dumps --- waste to energy --- climate change --- yogurt processing --- solar energy --- solar-based heating and cooling --- thermal analysis --- vegetable yield --- nitrogen use efficiency --- nutrient leaching --- leaching-to-input ratio --- nitrogen fertilizer economic benefit --- environment --- eutrophication --- particulate fraction --- effluent --- treatment --- thermal screens --- heating demand --- TRNSYS --- greenhouse internal temperature --- building energy simulation --- longwave radiation --- soil total nitrogen --- BP neural network --- support vector machines --- spatial distribution --- remote sensing
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