Department of Architecture

Parent: UC Berkeley

eScholarship stats: History by Item for July through October, 2024

ItemTitleTotal requests2024-102024-092024-082024-07
3f4599hxThe skin's role in human thermoregulation and comfort1,319328312376303
4qq2p9c6Developing an adaptive model of thermal comfort and preference1,240349307279305
2m34683kA better way to predict comfort: the new ASHRAE standard 55-200446414694111113
2048t8nnClimate, comfort, & natural ventilation: a new adaptive comfort standard for ASHRAE standard 55377133777493
2kd0135tAnalysis of the accuracy on PMV – PPD model using the ASHRAE Global Thermal Comfort Database II35595808892
1rr6730hEnvironmental Autobiography3372517211624
5kz1z9cgIndoor Humidity and Human Health--Part I: Literature Review of Health Effects of Humidity-Influenced Indoor Pollutants27785715863
89m1h2dgModeling the comfort effects of short-wave solar radiation indoors25668676160
5zt7n382Air movement and thermal comfort: The new ASHRAE Standard 55 provides information on appropriate indoor air velocities for occupant comfort252474451110
13s1q2xcExtending air temperature setpoints: Simulated energy savings and design considerations for new and retrofit buildings24395386149
60b551vbCity of One Thousand Temples24147568850
7897g2f8Air quality and thermal comfort in office buildings: Results of a large indoor environmental quality survey24058585272
2tm289vbThermal sensation and comfort models for non-uniform and transient environments: Part III: whole-body sensation and comfort23081485249
4db4q37hWeb application for thermal comfort visualization and calculation according to ASHRAE Standard 5522653347168
3sq8z441A model of human physiology and comfort for assessing complex thermal environments21861444964
09b861jbThe impact of a view from a window on thermal comfort, emotion, and cognitive performance19062385436
98n759drEvaluation of the cooling fan efficiency index.18948444453
18d174zsPersonal comfort models—A new paradigm in thermal comfort for occupant-centric environmental control18755403557
99q2f4cfDraft or breeze? preferences for air movement in office buildings and schools from the ASHRAE database17238303470
4x57v1pfOperable windows, personal control and occupant comfort.15851303938
9hn3s947Convective and radiative heat transfer coefficients for individual human body segments15640244052
4p479663Ceiling fans: Predicting indoor air speeds based on full scale laboratory measurements15532284154
92z5q2qbProgress in thermal comfort research over the last twenty years15044243547
9s12q89qComfort under personally controlled air movement in warm and humid environments15045294036
54n6b7m3Personal comfort models: Predicting individuals' thermal preference using occupant heating and cooling behavior and machine learning14941353835
5w53c7krSimplified calculation method for design cooling loads in underfloor air distribution (UFAD) systems14830313354
4kv4f2mkA review of the corrective power of personal comfort systems in non-neutral ambient environments14734384134
28x9d7xjEnergy savings from extended air temperature setpoints and reductions in room air mixing14649194533
1wc7t219Quantitative relationships between occupant satisfaction and satisfaction aspects of indoor environmental quality and building design14039363233
5w0349xvObservations of upper-extremity skin temperature and corresponding overall-body thermal sensations and comfort14027364334
6pq3r5prEvaluation of the physiological bases of thermal comfort models13838293536
54r6027gDesign Automation for Smart Building Systems13745333128
0dh6c67dDevelopment of the ASHRAE Global Thermal Comfort Database II13539244329
0wb1v0ssIndoor environmental quality surveys. A brief literature review.13536332937
3sw061xhThermal sensation and comfort models for non-uniform and transient environments: Part I: local sensation of individual body parts12746213129
7rv6936vPredicting Window View Preferences Using the Environmental Information Criteria12621175632
6px642bjCooling load calculations for radiant systems: are they the same traditional methods?12432263729
18g6v2n0Water harvesting from fog using building envelopes: part I12333124731
43c525tgMeasuring 3D indoor air velocity via an inexpensive low-power ultrasonic anemometer12235242538
9x2366mkLocalized cooling for human comfort12029272638
18f9p6npTemporary Flows & Ephemeral Cities11931173734
6gd9t8pjEvaluation of the effect of landscape distance seen in window views on visual satisfaction11934184621
0tp7v717Natural vs. mechanical ventilation and cooling.11845124120
6g46r2qhPetropolises: A Quest for Soft Infrastructure as Water-Based Urbanisms of the Floating Frontier City11537193227
0q03g71sAir movement and thermal comfort11442192726
2qt9p499A Global Building Occupant Behavior Database11424154629
4j61p7k5Occupant satisfaction in LEED and non-LEED certified buildings11326233628
77c0q85jEvolving opportunities for providing thermal comfort11130232236
4ph1m7t5Introduction of a Cooling Fan Efficiency Index11031242728
7bf4g0k1Influence of raised floor on zone design cooling load in commercial buildings.10933362119

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