Biobâtir · model data sheet
The Biobâtir model
Closed trusses, set on a continuous plate
The long walls with a continuous plate go up first, then closed trusses are set on them, and the roof bears on purlins. Roof thrust closes inside a continuous tie beam, in bearing, and every joint that stays critical has a second path, all in timber. You set the dimensions and the pitch in the generator; the truss adapts to the span — plain up to 16 ft, queen posts up to 30 ft, king post beyond.
- Span
- 16–28 ft (drawing: 20 ft)
- Pitch
- adjustable (drawing: 10/12)
- Spacing
- trusses at 8–10 ft
- Timber
- green, portable sawmill
- Snow
- your location's
- Structure subject to approval by a structural engineer
The truss in section
- timber in view
- timber in section
- hardwood keys and wedges
- hidden or optional
- forces
The wall-top joint
Where post, plate, tie beam and rafter foot meet. The same joint, at the same scale.
What the model does not do single link
What the model does two paths
Joint by joint
| Mark | Joint | Joinery | Why |
|---|---|---|---|
| 1 | Post foot | Short 2 in tenon housed in the sill, not pegged. Sill anchored to the foundation. | Works in compression, resists sliding, traps no water. |
| 2 | Post | Straight, no jowl (8×8), as long as the plate passes in cross-grain compression; otherwise a wider plate. | The head gets only two cuts: the plate tenon, and the brace mortises lower down. |
| 3 | Post → plate | 4 in top tenon, pegged; the continuous plate sits on the post. | Load goes down in bearing; the peg only serves during raising. |
| 4 | Plate | Continuous. Bladed, keyed scarf at the inflection point, next to a brace, never over a post. | No more short tenon pulled out by wind between two trusses. |
| 5 | Tie beam → plate | Tie beam set on top, over the post. A hardwood key with folding wedges, driven in from the side after setting, in a groove half in the plate and half in the tie beam; vertical peg against uplift. | No dovetail: the key works in bearing, and its wedges are re-driven as green timber shrinks. |
| 6 | Heel (rafter → tie beam) | Double birdsmouth into the continuous tie beam; hardwood keyed straps, one on each face, clamping rafter and tie beam. Option: one bolt perpendicular to the rafter, nut under the tie beam. | Thrust enters the tie beam in bearing. If the relish shears, the straps take over: a second path in timber, which can be tightened. |
| 7 | Thrust between trusses | None: 6×7 purlins at 48 in on the principal rafters, housed and wedged. | The plate no longer takes thrust; it only bends vertically. |
| 8 | Ridge | Ridge purlin between the rafters, in a bridle or tenoned into the king post; ridge braces king post ↔ ridge both ways. | Lengthwise stability comes from members, not from the decking. |
| 9 | King post → tie beam | Through tenon with two keys, taper no steeper than 1:12. | Under roof load alone the king post foot is in compression; it only pulls under a floor: the joint can be re-wedged. |
| 10 | Roof slopes | Decking, then sheathing nailed over the decking; no cross bracing in the slope. | The sheathing is the main lengthwise path; the ridge braces (8) are the second, in timber, with no steel. |
| 11 | Summer beam | Carried by a post under the tie beam; never a deep mortise in a tie beam under tension. | The member that ties is kept apart from the member that carries. |
| 12 | Bracing | Main path: braced walls (sheathing, or reinforced plastered straw from sill to plate) and a roof diaphragm. Second path: braces in opposed pairs, at least 36 in long, below the head joints. | The frame leans on the walls; the braces keep a compression path in each direction. |
Along the building
Why there is no single link
| Load path | What carries it | If it gives way |
|---|---|---|
| Gravity | timber-on-timber bearing: birdsmouth, key, top tenons | slow, visible crushing |
| Thrust | continuous tie beam + double birdsmouth heel | the keyed straps take over; wedges re-tighten |
| Rafter thrust | removed by the purlins | — |
| Lengthwise | roof sheathing, ridge braces at every king post | two paths |
| Lateral | braced walls, diaphragm, opposed braces | three paths |
| Green timber shrinkage | wedged keys, birdsmouths, re-wedgeable straps | is adjusted |
Relish length behind the birdsmouth
20 ft truss, 10/12 pitch, 7 in wide tie beam, 120 psi allowable shear.
| Spacing | S = 2 kPa | 3 kPa | 4,5 kPa |
|---|---|---|---|
| 8 ft | 6 in | 9 in | 12 in |
| 10 ft | 8 in | 11 in | 16 in |
| 12 ft | 10 in | 13 in | 19 in |
Closely spaced trusses keep the heel within the proportions of an ordinary tie beam: all these lengths stay under the 20 in limit a 10 in deep tie beam allows.
Raising sequence
- Anchored sills
- Long walls — assembled flat on the deck (posts, scarfed continuous plate, braces, girts), tilted up, plumbed and braced. A 24 ft wall in 8×8 weighs on the order of 1,200 to 1,500 lb in green timber.
- Gable ends — and their girts.
- Whole trusses — assembled flat on the ground, lifted with a gin pole or small crane (≈ 1,000 to 1,300 lb for 20 ft), set on the plates over the posts; the wedged keys are driven and the pegs set once the truss is in place.
- Roof — ridge purlin and ridge braces, purlins, decking, sheathing.
- Re-tightening — the wedges of the keys and straps are driven again after one heating season.
What it costs
No knee wall: the loft starts above the tie beam, and one tie beam per truss crosses the loft.
Trusses of half a ton and more: a gin pole or small crane, with the permits and safety that come with lifting.
More joinery: straps, keys and wedges take shop hours a bolt would save; the bolt remains available as an option.
Orders of magnitude: basic statics and unfactored allowable stresses. The design is redone to the local standard by an engineer, whose seal is mandatory.