Active pressure — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
Also named here as retaining wall — the same set of essays touches all of them, so they are one junction rather than several.
Every prop has its own worst day
A braced excavation has no finished state worth analysing. It is dug in stages, a level of props goes in at each stage, and a prop's force is largely fixed the moment it is installed — so the force to design it for is the largest it sees during a sequence that appears on no calculation sheet, and which for the middle prop here is nearly two and a half times what the finished arrangement gives.
The pressure the roller leaves behind
A retaining wall is designed for the pressure of the soil it holds, a triangle growing with depth. The soil behind most walls was not tipped there. It was placed in layers and rolled, and each pass of the roller pushed the soil sideways against the wall harder than the soil's own weight ever could, and left most of that push locked in when it moved on. Behind a 3 m wall compacted by an ordinary vibrating roller the locked-in pressure is a constant 28 kPa from half a metre down, the thrust two and a half times the active triangle's and the moment at the base three and a half.
Named alongside it
The objects these essays reach for when they reach for this one.
Earth pressurePassive pressureRetaining wallApparent pressureAt rest pressureBackfillCompactionConstruction sequenceEnvelopeFree bodyImposed deformationLoad arrangement