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This book presents cutting-edge work on the energy efficiency and
environmental sustainability of buildings, examining EU policies,
regulations and technologies for complex systems such as passive
buildings, sustainable buildings and, as part of the Energy
Performance of Building Directive (EPBD), nearly Zero Energy
Buildings (nZEB) requirements. It explores a wide range of topics,
including indoor environment requirements, building physics,
in-situ experiments to determine the thermal properties of
buildings, nZEB requirements, building service technology, and
methods of evaluating energy efficiency and environmental impacts.
It also provides an overview of the best available technologies for
nZEB, including those for the rational use of energy, utilization
of renewable energy sources, EPBD systems and calculation methods.
This book is a valuable resource for students, researchers and
practitioners of urban planning, and architecture, civil and
mechanical engineering.
The book presents the theoretical background of building physics,
dealing with the evaluation of physical phenomena related to heat
transfer and energy use in buildings, water and water vapour
transfer in building structures, daylighting and electric lighting
of buildings, sound transmission in building structures and
protection against noise, the occurrence and spread of fires in
buildings and the thermal response of cities. It contains numerical
and computational evaluation methods, numerous computational case
studies and examples of experimental analyses. The book
demonstrates that the considered physical processes affect the
quality of living and working comfort in indoor and outdoor
environment.
The book presents the theoretical background of building physics,
dealing with the evaluation of physical phenomena related to heat
transfer and energy use in buildings, water and water vapour
transfer in building structures, daylighting and electric lighting
of buildings, sound transmission in building structures and
protection against noise, the occurrence and spread of fires in
buildings and the thermal response of cities. It contains numerical
and computational evaluation methods, numerous computational case
studies and examples of experimental analyses. The book
demonstrates that the considered physical processes affect the
quality of living and working comfort in indoor and outdoor
environment.
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