Warm in winter, cool in summer, no fuel.
Passive solar design heats with the sun and stores it in thermal mass. Cooling tubes and operable windows ventilate it, with little or no electricity. Utility bills fall toward zero, and the building is more comfortable to live in.
The building is the collector.
Every south-facing window is a direct-gain system; windows facing east, west and north lose more heat than they gain in winter. The glass acts as a one-way heat valve: short-wave sunlight comes in, and the heat cannot get back out.
Thermal mass inside the building (earth, stone, concrete, water) absorbs that heat, which prevents overheating by day and stores warmth for the night. Furniture and drywall help, but they are rarely enough; the mass goes into the walls, floors or water containers. Getting the ratio of mass to south glass right is what makes it work.
Clerestory windows facing south carry sunlight deeper into the building than convection can, and give excellent daylight, because light from above is best. Straight walls facing due south, or as close as possible, collect the most energy for the least cost.
“All design projects should engage the environment in a way that dramatically reduces or eliminates the need for fossil fuel.”
The 2010 Imperative · Edward Mazria, AIA, founder of Architecture 2030
Building codes set a minimum indoor temperature but no maximum. Good passive design covers both: warm enough in January, cool enough in July.
More comfort, not less.
Passive building is a construction concept, not a brand, and anyone can apply it. It has stood the test of practice for thousands of years.
Well-insulated windows and a shell of insulated exterior thermal-mass walls, roof and floor slab keep winter heat in and summer heat out. Heat from inside the building, such as the oven, people and the sun through the glass, does much of the rest. The same savings hold in hot climates, where the mass keeps buildings cool.
Heating and cooling, answered.
What is a passive building?
How does climate shape the design?
What is thermal mass?
What is a Trombe wall?
How does the greenhouse effect heat a building?
R-value or U-value?
What are earth tubes?
Why natural materials like adobe or rammed earth?
Start with the site.
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