ScholarGate
Assistent

Võrdle meetodeid

Vaata valitud meetodeid kõrvuti; erinevad read on esile tõstetud.

Akustilise disaini analüüs×Hoonete energiatõhususe simulatsioon×Termilise mugavuse hindamine×
ValdkondArhitektuurArhitektuurArhitektuur
PerekondProcess / pipelineProcess / pipelineProcess / pipeline
Tekkeaasta192219931972
LoojaWallace Clement SabineJoe Clarke, Drury CrawleyPovl Ole Fanger
Tüüproom acoustic prediction and assessment methoddynamic thermal and energy simulation methodpsychrometric comfort assessment method
AlgallikasSabine, W. C. (1922). Collected Papers on Acoustics. Harvard University Press, Cambridge, MA. link ↗Crawley, D. B., Hand, J. W., Kummert, M., Griffith, B. T. (2008). Contrasting the Capabilities of Building Energy Performance Simulation Programs. Building and Environment, 43(4), 661-673. DOI ↗Fanger, P. O. (1972). Thermal Comfort: Analysis and Applications in Environmental Engineering. Danish Technical Press, Copenhagen. link ↗
Rööpnimetusedsound analysis, room acoustic design, noise predictionenergy simulation, building thermal modeling, annual energy consumption analysisthermal comfort evaluation, adaptive comfort model, PMV-PPD analysis
Seotud333
KokkuvõteAcoustic Design Analysis is a method for evaluating the acoustical properties of buildings to predict sound levels, reverberation time, and speech intelligibility. Founded by Wallace Clement Sabine in the early 1900s, the field encompasses room acoustic design (controlling reverberation), sound transmission loss (preventing noise transfer between spaces), and environmental noise prediction.Building Energy Performance Simulation is a computational method for predicting how much energy a building consumes for heating, cooling, lighting, and equipment operation under specified weather and occupancy conditions. Pioneered by researchers like Joe Clarke and Drury Crawley in the 1990s, it has become essential for design optimization, compliance demonstration, and operational planning.Thermal Comfort Assessment is a method for evaluating indoor environmental conditions to predict whether occupants will feel thermally comfortable. Pioneered by Povl Ole Fanger in the 1970s, it combines measurements of air temperature, humidity, air speed, and thermal properties of clothing and activity to determine comfort zones and identify remedial actions.
ScholarGateAndmestik
  1. v1
  2. 3 Allikad
  3. PUBLISHED
  1. v1
  2. 3 Allikad
  3. PUBLISHED
  1. v1
  2. 3 Allikad
  3. PUBLISHED

Mine otsingusse Laadi slaidid alla

ScholarGateVõrdle meetodeid: Acoustic Design Analysis · Building Energy Performance Simulation · Thermal Comfort Assessment. Loetud 2026-06-20 aadressilt https://scholargate.app/et/compare