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Building Energy-Saving Technology

Building Energy-Saving Technology

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Buildings consume about 40% of the global energy. Therefore, the building sector plays a key role in achieving the goals of carbon peak and carbon neutrality. Various energy-saving technologies for buildings, such as building envelops, mechanical systems, and energy resources, have been developed to help to achieve zero- or even net-energy buildings while maintaining comfort and a healthy indoor environment. This Special Issue on building energy-saving technology was open to all contributors in the field of building engineering. The original experimental studies, numerical simulations, and reviews in all aspects of building energy utilization, management, and optimization have been considered. For this event, all of these topics were covered in the extensive submissions which were accepted, but interesting papers on other aspects of building energy efficiency were also received. In this reprint, the main research findings of the accepted papers in the Special Issue, including the energy-saving technologies involved in building envelops, mechanical systems, are summarized, and occupant behaviors, and a number of research questions and research directions are identified.

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Keywords

  • 3D printing
  • 3D-printed concrete walls
  • apartment
  • BIPV
  • building efficiency
  • building energy efficiency
  • building energy models
  • building energy use
  • building envelop
  • building types
  • carbon neutrality
  • carbon peak
  • China
  • Código Técnico de la Edificación
  • colored PV
  • comfort
  • data-driven
  • electricity consumption
  • emergy
  • emergy evaluation indices
  • energy codes
  • Energy consumption
  • energy disaggregation
  • Energy Efficiency
  • energy saving
  • Environmental science, engineering & technology
  • gas consumption
  • guest behaviour
  • History of engineering & technology
  • home energy monitoring
  • hotel energy conservation
  • human settlement unit
  • latitudes
  • MRT
  • multi-scale finite element modeling
  • multi-target learning
  • n/a
  • net-zero energy building
  • non-intrusive load monitoring
  • nZEB buildings
  • parametric analysis
  • passive energy buildings
  • passive house
  • past behaviour
  • personal norms
  • physical-based bottom-up
  • prediction model
  • pro-environmental behaviour
  • production-living-ecology
  • Research and development
  • sealing door
  • self-determination
  • semitransparent PV
  • SET*
  • solar-assisted heat pump (SAHP)
  • structural insulated panels (SIPs)
  • sunshade
  • surface temperature
  • sustainable building
  • Sustainable Environment
  • system dynamic
  • Technology, engineering, agriculture
  • Technology: general issues
  • thermal analyses
  • thermal bridges
  • thermal conductivity
  • thermal environment
  • thermal insulation
  • thermal transmittance
  • thermal waves
  • TPB
  • TRNSYS 16
  • urban building energy modelling
  • vacuum refrigerator
  • ventilative cooling
  • Window

Links

DOI: 10.3390/books978-3-0365-9303-6

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