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Habitability Studies of a Replica Fremont-style Pithouse

Datos Bibliográficos

ID5981966
AutoresK Carpenter (0000-0002-0283-1620, University of Colorado Boulder, autor de correspondencia)
Año2023
Volumen89
Número4
Páginas463-477
Fecha de publicación2023-10-02
Peer ReviewedSí
Open AccessNo
TipoARTICLE
RevistaKIVA (JOURNAL)
Identificadores de la revistaISSN: 0023-1940 • E-ISSN: 2051-6177
EditorialInforma UK Limited (PUBLISHER • GB)
DOI10.1080/00231940.2023.2230038
OpenAlexW4385065398
IdiomaEN
Referencias citadas15

A full-sized Fremont-style pithouse was reconstructed to explore habitability. The results are: (1) the pithouse dampens daily and seasonal temperature fluctuations; (2) a wood and leather access closure was thermally more effective than a stone slab; (3) computational fluid dynamics (CFD) modeling shows the superstructure affects interior ventilation; (4) a floor-level vent is necessary for adequate ventilation and CFD modeling indicates its position relative to prevailing wind is important; (5) once reached, the thermal comfort level of 16.5°C can be maintained by body heat alone. Ancillary information acquired during construction and subsequent destruction of the pithouse: (6) the estimated time required by a Fremont community to construct a pithouse is roughly 538 person-hours; (7) expediting the burning of the structure required an animal fat accelerant and ventilation holes cut into the superstructure; and (8) nearly a half-hour of burning occurred before there was an abrupt catastrophic roof collapse

Computational fluid dynamics · Expediting · Geography · Habitability · Marine engineering · Meteorology · Physics · Planet · Roof · Slab · Structural engineering · Superstructure · Ventilation (architecture) · Aerospace Engineering · Building Energy and Comfort Optimization · Conservation Techniques and Studies · Engineering · Environmental Science · Geology · Hygrothermal properties of building materials

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