|
Week
|
Lecture
|
Reading
|
|
1
|
Architecture & ECS
Thermal Comfort |
MEEB ch.1 Heschong pp1-17
MEEB ch.4 Heschong pp18-49 Olgyay DWC ch.2 |
|
2
|
Solar Geometry Radiation & Solar Geometry |
MEEB ch.6 Lechner ch.6 UCB 20,22 Olgyay & Olgyag ch.8 Olgyay DWC ch.7 |
|
3
|
Bioclimatic Design Design Heat Gain & Loss |
MEEB ch.7.1-7.1 UCB 15 MEEB ch.7.8-7.9 |
|
4
|
Passive Solar Heating Active Heating |
MEEB ch.4.4-5, 8.4 SWL pp48-50, 169-181 MEEB pp393-99, ch.9.7 Moore ch.19 |
|
5
|
Case Studies Active Solar Energy Systems |
review www pages in case study assignment MEEB ch.29, pp927-941 SWL pp234-236 |
|
6
|
Design Heat Gain Passive Cooling |
Grondzik pt1, pt2 MEEB ch.4.3,8.6 Green: Passive Cooling, SWL pp13-21 |
|
7
|
Global Teach-In 2010 Active Cooling HVAC System Concepts |
MEEB pp399-414 MEEB ch.10.1-10.2 |
|
8
|
HVAC System Applications HVAC Design for Zoning |
MEEB ch.10.4-10.9 Allen pp139-193 |
|
9
|
Green Design and Beyond Vertical Transportation |
LEED NC-2.2 pp1-19, 22-23, 31-38 Wells "Absolu..." MEEB ch.31.1-31.30, 32.1-32.5 |
|
10
|
Review Week, no lectures |
|
|
11
|
Case Study Presentations |