Envelope Systems
Parent: Center for the Built Environment
eScholarship stats: Breakdown by Item for November, 2024 through February, 2025
Item | Title | Total requests | Download | View-only | %Dnld |
---|---|---|---|---|---|
3f73w323 | A Standard for Natural Ventilation | 240 | 51 | 189 | 21.3% |
2pn696vv | Thermal comfort in naturally ventilated buildings: revisions to ASHRAE Standard 55 | 202 | 63 | 139 | 31.2% |
4x57v1pf | Operable windows, personal control and occupant comfort. | 181 | 42 | 139 | 23.2% |
9kt889fn | The effect of thermochromic windows on visual performance and sustained attention | 181 | 7 | 174 | 3.9% |
09b861jb | The impact of a view from a window on thermal comfort, emotion, and cognitive performance | 152 | 95 | 57 | 62.5% |
4vq936rc | High-performance facades design strategies and applications in North America and Northern Europe | 139 | 48 | 91 | 34.5% |
89d4871t | The adaptive model of thermal comfort and energy conservation in the built environment | 137 | 74 | 63 | 54.0% |
46p439jv | View Access Index: The effects of geometric variables of window views on occupants’ satisfaction | 101 | 43 | 58 | 42.6% |
3bb8x7b8 | Mixed-mode cooling. | 97 | 33 | 64 | 34.0% |
0gj8h384 | Building envelope impact on human performance and well-being: experimental study on view clarity | 95 | 16 | 79 | 16.8% |
6rp85170 | Window performance for human thermal comfort | 91 | 18 | 73 | 19.8% |
8kp8352h | Summary Report: Control Strategies for Mixed-Mode Buildings | 90 | 23 | 67 | 25.6% |
0hk689fx | Mixed-mode simulations for climate feasibility | 70 | 5 | 65 | 7.1% |
81t2t9vd | Ventilation, thermal and luminous autonomy metrics for an integrated design process | 64 | 14 | 50 | 21.9% |
0t70f65m | Window Use in Mixed-Mode Buildings: A Literature Review | 62 | 7 | 55 | 11.3% |
8602z54h | The effects of surrounding buildings on wind pressure distributions and natural ventilation in long building rows | 62 | 41 | 21 | 66.1% |
1p92f2pm | Mixed-Mode Ventilation and Building Retrofits | 53 | 10 | 43 | 18.9% |
0wk026w2 | Occupant satisfaction in mixed-mode buildings | 52 | 31 | 21 | 59.6% |
9jk1d795 | Performance, prediction, optimization, and user behavior of night ventilation | 52 | 9 | 43 | 17.3% |
4133390m | Window signalling systems: control strategies and occupant behaviour | 50 | 16 | 34 | 32.0% |
5gx2n1zz | Occupant Control of Windows: Accounting for Human Behavior in Building Simulation | 47 | 3 | 44 | 6.4% |
3hg066qm | Predicting natural ventilation in residential buildings in the context of urban environments | 45 | 25 | 20 | 55.6% |
8x28q3qs | A method for designing naturally cooled buildings using bin climate data | 44 | 5 | 39 | 11.4% |
7qg1945w | Effective Daylighting: Evaluating Daylighting Performance in the San Francisco Federal Building from the Perspective of Building Occupants | 43 | 6 | 37 | 14.0% |
7b4909sf | Balancing Thermal and Luminous Autonomy in the Assessment of Building Performance | 40 | 8 | 32 | 20.0% |
5087z1zd | Shading and Cooling: Impacts of Solar Control and Windows on Indoor Airflow | 39 | 9 | 30 | 23.1% |
40k1s1vd | Occupant satisfaction in mixed-mode buildings. | 38 | 11 | 27 | 28.9% |
61t8z6ff | Occupant Response to Window Control Signaling Systems; Appendix C: Mixed-mode Signal Case Study Summary | 38 | 16 | 22 | 42.1% |
7jg5n7s6 | Window signalling systems: control strategies and occupant behaviour | 36 | 15 | 21 | 41.7% |
7c8347dk | Assessment of Energy Use and Comfort in Buildings Utilizing Mixed-Mode Controls with Radiant Cooling | 35 | 4 | 31 | 11.4% |
3qt2h9xv | The prediction of indoor air motion for occupant cooling in naturally ventilated buildings | 33 | 12 | 21 | 36.4% |
97t4t6dg | Mixed Mode Simulation Tools | 28 | 14 | 14 | 50.0% |
0835d5w4 | Human Behavior Meets Building Intelligence: How Occupants Respond to “Open Window” Signals | 27 | 4 | 23 | 14.8% |
9fd5k28h | Adaptive Comfort in Mixed-Mode Buildings: Research Support Facility, National Renewable Energy Lab | 27 | 7 | 20 | 25.9% |
9pq9w5r2 | Comfort standards and variation in exceedance for mixed-mode buildings. | 26 | 8 | 18 | 30.8% |
1mq5k9mw | Impact of Fixed Exterior Shading on Daylighting: A Case Study of the David Brower Center | 25 | 4 | 21 | 16.0% |
9vx411sb | A Model of Success: The Carnegie Institute for Global Ecology | 24 | 7 | 17 | 29.2% |
5vb3x9d6 | A simulation-based design analysis for the assessment of indoor comfort under the effect of solar radiation | 21 | 4 | 17 | 19.0% |
0n18t8wz | Simulated energy savings of cool roofs applied to industrial premises in the Mediterranean Area | 20 | 10 | 10 | 50.0% |
42q6f5gm | Window Signaling Systems: Control Strategies & Occupant Behavior | 12 | 0 | 12 | 0.0% |
9j11b4z9 | Calculation of the Solar Load onto Occupants in a Room using Bidirectional Scattering Distribution Functions and a View Factor Approach | 9 | 5 | 4 | 55.6% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.