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022 _a2575-5374
040 _aES-BaAUN
_beng
_cES-BaAUN
100 1 _aMoe, Kiel. ‎
_eauthor.
245 _aR-Values Are Not Our Values:
_bThermal Design of Timber Buildings
260 3 _burbanNext,
_cJuly 21, 2022.
300 _a2924 words.
500 _aArchive, Contributors, Densities, Designing Matter, Energy and sustainability, Essay, Formats, Kiel Moe, No Density, Topics, Wood Urbanism.
501 _aArchitecture, Carbon footprint, Carbon-emissions, Conductivity, Cross Laminated Timber, Density, Design strategies, Designing Matter, Ecology, Effusivity, Essay, Exergy, Heat transfer, Insulation, Interaction, Knowledge, Materials, Multi-scalar, Multidisciplinary, Performance, Performative Envelope, Space-body relationship, Temperature, Thermal comfort, Thermodynamic practices, Thermodynamics, Timber, Waste generation, Wood, Wood construction.
504 _aMarín, Edgar. “The Role of Thermal Properties in Periodic Time-varying Phenomena,” European Journal of Physics, vol. 28, no. 3, 2007, p. 432.
504 _aWastiels, Lisa, et al. “Relating Material Experience to Technical Parameters: A Case Study on Visual and Tactile Warmth Perception of Indoor Wall Materials.” Building and Environment, vol. 49, 2012, p. 360.
504 _aObata, Yoshiro, et al. “Engineering Evaluation of Tactile Warmth for Wood” International Journal of the Society of Material Engineering for Resources, vol. 10, no. 1, 2002, p. 16.
504 _aHameury, Stéphane, and Tor Lundström. “Contribution of Indoor Exposed Massive Wood to a Good Indoor Climate: In Situ Measurement Campaign.” Energy and Buildings, vol. 36, no. 3, 2004, pp. 281–92.
504 _aHameury, Stéphane. “Moisture Buffering Capacity of Heavy Timber Structures Directly Exposed to an Indoor Climate: A Numerical Study,” Building and Environment, vol. 40, 2005, pp. 1400–412.
520 _aAmong the many mutual relationships in the scales of timber dynamics articulated throughout this book, the thermal propensities of wood are perhaps the most immediately sensible to us. There are a number of physiological reciprocities between our bodies and massive timber buildings. Among them is the often colloquial, but quantifiable, association of “warmth” with wood. The thermal properties and behaviors specific to wood are not fully articulated in building science or in the wood industry, but they could impact how we come to characterize the thermodynamics, thermal potential, and ecologies of timber building.
653 _aEnergy and sustainability
653 _aNo density
653 _aCross laminated timber
653 _aWood construction
653 _aHeat transfer
856 4 0 _uhttps://urbannext.net/r-values-are-not-our-values-thermal-design-of-timber-buildings/
_zAccess to info
942 _2ddc
_cCF
_n0
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_d2889