Найдено 160
Development and performance evaluation of empirical models compatible with building energy modeling engines for unitary equipment
Yousaf S., Bradshaw C.R., Kamalapurkar R., San O.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2025, цитирований: 0, doi.org
Experimental study of two-phase pressure-drop in 180° horizontal return bend and contiguous straight tubes with ammonia (RP-1683)
Muzaffar A., Abbas A., Cremaschi L., Ayub Z., Cheema T.A.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2025, цитирований: 0, doi.org
Impact of varying usage profiles for different building envelope types with all-electric HVAC systems
Kim C., Haberl J.S.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2025, цитирований: 0, doi.org
Impact of ceiling fan and room air cleaner on air mixing and fate of particulate matter in a multiroom residence
Rush D.J., Tang M., Novoselac A.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2025, цитирований: 0, doi.org
A comparative study of duct breakout transmission loss: Finite element simulation versus legacy measurements
Li C., Herrin D.W.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2025, цитирований: 0, doi.org
Open building operating system: a grid-responsive semantics-driven control platform for buildings
Paul L., De Andrade Pereira F., Prakash A.K., Ham S.W., Feng J.D., Brown R., Pritoni M.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2025, цитирований: 0, doi.org
Accelerating Reinforcement Learning controller training for building energy management: A hybrid co-simulation approach
Zhou Q., Liu M., Wang Z., Fu Y., Gao Y.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2025, цитирований: 0, doi.org
Exploring the theoretical minimum energy use in the U.S. office building sector
Davila C., Claridge D.E.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
Cooling loads for nonresidential buildings based on programmable, charted, look-up-tabulated radiant time series procedure
Alramthan M.K., Bourisli R.I., Alanzi A.A.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
Development of near-optimal advanced control sequences for chiller plants with water-side economizers in U.S. Climates (ASHRAE RP-1661)
Faulkner C.A., Ho J., Shi C., Fan C., Ildiri N., Zuo W.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
An effective and efficient approach for smoke control in underground parking garages
Chen X., Wang F., Chen C.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
Energy recovery ventilators to combat indoor airborne disease transmission: A sustainable approach
Annadurai G., Mathews A.J., Krishnan E.N., Gollamudi S., Simonson C.J.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
Assessing the emissions reduction potential and economic feasibility of small-scale (
Curl C.R., Fronk B.M.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 1, doi.org
Large-scale energy cost optimization and performance analysis for dedicated outdoor air system: simulation results from ASHRAE RP-1865
Choi Y., Lu X., Feng F., O’Neill Z.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
Advanced co-simulation framework for assessing the interplay between occupant behaviors and demand flexibility in commercial buildings
Chen Z., Wen J., Li Y., Lo L.J., Grajewski G., Payne W.V., Bushby S.T., Pertzborn A., O’Neill Z., Yang Z., Calfa C.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 1, doi.org
Ground heat exchanger design tool with RowWise placement of boreholes
West T.N., Spitler J.D.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 2, doi.org
Socioeconomic factors influencing residential occupancy trends during and post COVID pandemic
Dong H., Srivastava A., Cetin K., Mitra D.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
Laboratory and field validation of the performance benefits and costs of thin triple-pane windows in residential buildings
Gunderson P., Louie E., Cort K.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
Developing and testing low-cost air cleaners for safer spaces during wildfires
Stinson B.W., Gall E.T.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 2, doi.org
A computational analysis of effective R-values of buried ducts – the dynamic performance of buried ducts
Pallin S., Salonvaara M., Evans R.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
Quantifying leaks from Schrader valves in air conditioning systems
Pistochini T., McMurry R.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
Innovative airspace reflective tool for different building applications, part II: parametric study
Saber H.H., Alshehri S.A., Yarbrough D.W.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 2, doi.org
Development and performance evaluation of active insulation systems using solid-state thermal switches
Iffa E., Salonvaara M., Kunwar N., Shrestha S., Boudreaux P., Hun D.
Q2
Taylor & Francis
Science and Technology for the Built Environment, 2024, цитирований: 0, doi.org
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