Floor acceleration — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
Most of the mass moves together
A sixteen-storey frame has sixteen modes, and the first one carries eighty-four per cent of the mass. That is why a hand calculation on one mode gets the base shear right to within a tenth — and why the same calculation gets the acceleration at roof level wrong by a factor of two.
The pipe held at every floor
A riser runs the height of a building and is fixed at every floor, so each of its supports moves with a different floor. The floor spectrum prices the pipe's inertia, and for a pipe anchored at every floor the inertia is nearly irrelevant: the drift puts 131 N/mm² into a 100 mm riser at two thirds of a per cent, thirty times its inertia, and passes yield at 200 mm. Guide the same pipe instead of anchoring it and the drift almost vanishes — the pipe then feels only how much the drift changes from one storey to the next.
Named alongside it
The objects these essays reach for when they reach for this one.
Mode shapeResponse spectrumBase shearImposed deformationModal analysisModal massParticipation factorRestraintSecondary systemSeismic massSoft storeyStorey drift