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Recently, much research has focused on the use of engineered bamboo composites to substitute wood in light-frame buildings.
Light-frame buildings commonly employ shear wall realized by framing and sheathing panels made of wood materials.
The aim of this study is to investigate the thermal insulation performances of bamboo- and wood-based shear walls in light-frame buildings.
Current manual and ad hoc decision making for boarding of light-frame buildings leads to the generation of a significant amount of material waste.
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A prototype application is implemented in Autodesk Revit to demonstrate the effectiveness of the proposed new approach in the domain of light-frame building construction.
Collapse of light-frame wood buildings in earthquakes causes casualties and economic losses.
The forces exerted on light-frame wood buildings as a result of surge and waves are not fully understood.
It is found that the resistance uncertainty as well as modeling uncertainty have significant impacts on the seismic collapse risk of light-frame wood buildings.
However, this technology currently is not sufficient to fulfil the needs of construction practitioners in terms of proactive design and planning for boarding of light-frame residential buildings.
There was a good agreement between the DAD-predicted structural reactions and experimentally measured reactions, confirming that the DAD method is suitable for predicting the structural reactions in light-frame wood buildings.
The test results of the six-story light-frame wood building are examined in detail.
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CEO of Professional Science Editing for Scientists @ prosciediting.com