Thermal Behaviour, Energy Efficiency in Buildings and Sustainable Construction
dc.contributor.editor | Santos, Paulo | |
dc.date.accessioned | 2022-01-11T13:28:04Z | |
dc.date.available | 2022-01-11T13:28:04Z | |
dc.date.issued | 2021 | |
dc.identifier | ONIX_20220111_9783036511757_37 | |
dc.identifier.uri | https://directory.doabooks.org/handle/20.500.12854/76301 | |
dc.description.abstract | This Special Issue includes 20 contributions from across the world with very interesting and current research topics, such as insulation solutions and CO2 emissions; thermal transmittance of LSF walls; statistics for China’s building energy consumption; natural ventilation; thermal behavior of an earthbag building; thermal performance and comfort in a vernacular building; overheating risk under future extreme weather conditions; analytical methods to estimate the thermal transmittance of LSF walls; model simplification on energy and comfort simulation analysis; Trombe wall thermal behavior and energy efficiency of an LSF compartment; new metering hot box for in situ hygrothermal measurement; mechanical and thermal performance of compressed earth blocks; life-cycle assessment of a new house; energy analyses of Serbian buildings with horizontal overhangs; thermal properties of mortar blocks by using recycled glass; prediction of cooling energy consumption building using machine learning techniques; occupants’ behavior, climate change, heating, and cooling energy needs of buildings; a new method for establishing a hygrothermally controlled test room; nonintrusive measurements to incorporate the air renovations in dynamic models; and retrofit of existing buildings with aerogel panels. | |
dc.language | English | |
dc.subject.classification | bic Book Industry Communication::G Reference, information & interdisciplinary subjects::GP Research & information: general | |
dc.subject.classification | bic Book Industry Communication::T Technology, engineering, agriculture::TB Technology: general issues | |
dc.subject.other | energy demand analysis | |
dc.subject.other | insulation materials | |
dc.subject.other | climate zones | |
dc.subject.other | envelope | |
dc.subject.other | CO2 emissions | |
dc.subject.other | LSF construction | |
dc.subject.other | facade wall | |
dc.subject.other | partition wall | |
dc.subject.other | thermal transmittance | |
dc.subject.other | thermal bridges | |
dc.subject.other | parametric study | |
dc.subject.other | numerical simulations | |
dc.subject.other | building energy statistics | |
dc.subject.other | building energy consumption | |
dc.subject.other | energy balance sheet | |
dc.subject.other | building energy efficiency | |
dc.subject.other | China | |
dc.subject.other | building automation systems | |
dc.subject.other | heating control | |
dc.subject.other | energy savings | |
dc.subject.other | earth building | |
dc.subject.other | thermal comfort | |
dc.subject.other | passive design | |
dc.subject.other | monitoring and simulation | |
dc.subject.other | glazed balcony | |
dc.subject.other | indoor comfort | |
dc.subject.other | passive strategies | |
dc.subject.other | thermal performance | |
dc.subject.other | vernacular architecture | |
dc.subject.other | overheating risk | |
dc.subject.other | evaluation | |
dc.subject.other | cold climates | |
dc.subject.other | lightweight steel frame | |
dc.subject.other | LSF walls | |
dc.subject.other | U-value | |
dc.subject.other | analytical methods | |
dc.subject.other | calculation procedures | |
dc.subject.other | accuracy | |
dc.subject.other | Model simplifications | |
dc.subject.other | Thermal and visual comfort | |
dc.subject.other | Energy performance | |
dc.subject.other | IDA ICE | |
dc.subject.other | Residential building | |
dc.subject.other | passive solar | |
dc.subject.other | Trombe wall | |
dc.subject.other | light steel frame | |
dc.subject.other | thermal behavior | |
dc.subject.other | energy efficiency | |
dc.subject.other | Mediterranean climate | |
dc.subject.other | office use | |
dc.subject.other | residential use | |
dc.subject.other | heating set-points | |
dc.subject.other | metering hot box | |
dc.subject.other | in situ | |
dc.subject.other | hygrothermal measurement | |
dc.subject.other | dynamic conditions | |
dc.subject.other | historic masonries | |
dc.subject.other | HeLLo | |
dc.subject.other | compressed earth blocks (CEBs) | |
dc.subject.other | compressive strength | |
dc.subject.other | durability | |
dc.subject.other | guarded hot box | |
dc.subject.other | LCA | |
dc.subject.other | environmental impact | |
dc.subject.other | house | |
dc.subject.other | building envelope | |
dc.subject.other | building | |
dc.subject.other | overhangs | |
dc.subject.other | energy consumption | |
dc.subject.other | optimization | |
dc.subject.other | GenOpt | |
dc.subject.other | EnergyPlus | |
dc.subject.other | crushed glass | |
dc.subject.other | periodic thermal transmittance | |
dc.subject.other | energy demand | |
dc.subject.other | adaptive comfort | |
dc.subject.other | social housing | |
dc.subject.other | heating and cooling system | |
dc.subject.other | optimization and management | |
dc.subject.other | energy use prediction | |
dc.subject.other | neural network | |
dc.subject.other | support vector machine | |
dc.subject.other | occupant behavior | |
dc.subject.other | climate changes | |
dc.subject.other | energy needs | |
dc.subject.other | ventilation | |
dc.subject.other | residential buildings | |
dc.subject.other | DesignBuilder | |
dc.subject.other | water vapor resistivity | |
dc.subject.other | hygrothermal modeling | |
dc.subject.other | condensation | |
dc.subject.other | mold | |
dc.subject.other | hygrothermal properties | |
dc.subject.other | moisture transport | |
dc.subject.other | inter-laboratory testing | |
dc.subject.other | building energy | |
dc.subject.other | performance assessment | |
dc.subject.other | air renovation | |
dc.subject.other | non-intrusive measurements | |
dc.subject.other | on-board monitoring | |
dc.subject.other | aerogel | |
dc.subject.other | dynamic simulation | |
dc.subject.other | retrofitting | |
dc.subject.other | economic analysis | |
dc.title | Thermal Behaviour, Energy Efficiency in Buildings and Sustainable Construction | |
dc.type | book | |
oapen.identifier.doi | 10.3390/books978-3-0365-1174-0 | |
oapen.relation.isPublishedBy | 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 | |
oapen.relation.isbn | 9783036511757 | |
oapen.relation.isbn | 9783036511740 | |
oapen.pages | 414 | |
oapen.place.publication | Basel, Switzerland |
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