Thermal Flex

Matrix.

Theory

Program

Form

Surface

Bouyancy
Energy Flow
Molecule Speed
Pressure Sytems
Typical Mech. Driven Design
Enclosure Dominated Design
Enviorn. Control Systems
Environ. Criteria: Spring
Environ. Criteria: Summer
Environ. Criteria: Fall
Environ. Criteria: Winter
Activity
Clothing
Internal Gains
Expansion + Contraction
Spectrum of Conditioning
Movement
Seasonal Movement
Vertical Lungs: Cuts
Vertical Lungs: Placement
Surface Deformation + Orientation
Air Movement: Typical
Air Movement: Microclimate
Capturing Exhaust Heat
Microclimate: Shading 1
Microclimate: Shading 2
Proximity
Maximize Exterior Surface Area
Maximize Exterior SA: Sponge
Thermal Layering
Water Utilization 1
Water Utilization 2
Bio-Filtration + Dehumidifation
Evaporative Cooling
Wind Catchment: Form
Wind Catchement: Building
Atrium
Massing Volume 1
Massing Volume 2
Massing Volume 3
Massing Volume 4
Vertical Lung
Massing Volume 5
Simulation: Lab 1
Simulation: Lab 2
Simulation: Auditorium
Temporal Surface: Mass/ Insulation
Temporal Surface: Screening
Interior Shading
Inflating
ETFE: Insulation
ETFE: Solar Radiation
Double Skin
External Shading
Growing Thermal Mass
Massive
Operable Windows
Radiant Heating + Cooling
Thermal Mass: Roof
Screens
Kinetic Layers
Sweating
Material Orientation
Vertical Lungs: Shading