Project

Ropewalk Theatre, Leith

A 900-seat drama house inside a Victorian rope works. One second at mid frequencies, and a bass tail we argued about and lost.

Mid-frequency RT60

1.02 s

Brief: Drama theatre, 0.9–1.1 s

A concert hall balcony front, its underside shaped to return early sound to the seats below
A concert hall balcony front, its underside shaped to return early sound to the seats below
Specification

The room, as recorded.

Every figure below is an input to the arithmetic further down this page. Anything we have not measured is simply absent.

Room schedule
Volume 5,434 m³
Total surface area 1,978 m²
Length × width × height 26.0 × 19.0 × 11.0 m
Seats 900
Client Leith Theatre Company
Architect Roan & Dunbarrow
Completed 2017
Surface schedule
Surface Area
Audience, upholstered seats 500.0 m²
Heavy velour, draped 300.0 m²
Mineral wool, 50 mm 200.0 m²
Timber panelling on battens 400.0 m²
Plaster on masonry 450.0 m²
Parquet on concrete 130.0 m²
Reverberation

What we predicted, and what it did.

1.02 s at mid frequencies, against a Drama theatre brief of 0.9 to 1.1 seconds.

Both equations are published. Where they part company the room has become absorptive enough that Sabine's assumption of continuous decay is straining, and the lower figure is the one to believe.

Band 125 250 500 1,000 2,000 4,000
Measured, occupied 1.54 s 1.28 s 1.06 s 0.98 s 0.95 s 0.86 s
Computed — Sabine 1.67 s 1.27 s 1.05 s 0.96 s 0.97 s 0.99 s
Computed — Eyring 1.44 s 1.04 s 0.81 s 0.72 s 0.72 s 0.75 s
0.0 0.5 1.0 1.5 2.0 125 250 500 1k 2k 4k seconds Hz
Reverberation time by octave band. At mid frequencies the room measures 1.02 seconds, against a Drama theatre target of 0.9 to 1.1 seconds.
Modal behaviour

Below the crossover, a room has notes.

Schroeder frequency 27.4 Hz.

Above 27.4 Hz this room behaves statistically and a reverberation time means something. Below it the room does not reverberate at all — it resonates, at the discrete frequencies listed here, and where those bunch together is where the bass will be uneven.

Axial modes, shown warm, run between one opposed pair of surfaces and carry the most energy. They are the ones anybody in the room actually hears.

Room modes below 120 Hz
Hz Order Kind
6.6 1 0 0 Axial
9.0 0 1 0 Axial
11.2 1 1 0 Tangential
13.2 2 0 0 Axial
15.6 0 0 1 Axial
16.0 2 1 0 Tangential
16.9 1 0 1 Tangential
18.0 0 1 1 Tangential
18.1 0 2 0 Axial
19.2 1 1 1 Oblique
19.2 1 2 0 Tangential
19.8 3 0 0 Axial
20.4 2 0 1 Tangential
21.7 3 1 0 Tangential
22.3 2 1 1 Oblique
22.4 2 2 0 Tangential
23.9 0 2 1 Tangential
24.7 1 2 1 Oblique
25.2 3 0 1 Tangential
26.4 4 0 0 Axial
26.8 3 1 1 Oblique
26.8 3 2 0 Tangential
27.1 0 3 0 Axial
27.3 2 2 1 Oblique

318 further modes below 120 Hz are not listed.

Take it apart

The same room, in your hands.

These are this building's own dimensions and its own surface schedule. Change a material or move a wall and the reverberation time moves with it, by the same equation we used on the drawings.

The room

38 m
21 m
17 m

The surfaces

Spoken theatre wants a short room. Ropewalk is 26 m by 19 m by 11 m — 5,434 m³ for 900 seats, six cubic metres a seat — and the computed mid-frequency reverberation is 1.05 s, inside the 0.9 to 1.1 s band that a drama house is written against. A tenth of a second either side of that is audible from the back row; half a second either side is a different building. The existing shell was a rope works of 1878 with a clear span we could not have afforded to build, and the commission was really a question about how much of it to line.

The schedule that got us there is 500 m² of upholstered seating, 300 m² of gathered velour on the side and rear walls, 200 m² of 50 mm mineral wool behind stretched fabric at high level, 400 m² of timber panelling on battens, and the surviving plaster and parquet. The wool and the velour are both porous absorbers, which means both are efficient above 500 Hz and both go quiet below 250 Hz. That is the whole of the problem described in one sentence.

The 125 Hz figure computes to 1.67 s against 1.05 s at mid frequencies — a bass tail two-thirds longer than the speech range. We proposed twelve membrane traps in the void behind the upper side walls, tuned to about 90 Hz, and a change of the rear-wall lining from panelling to a deeper cavity construction. Both were priced at roughly one and a half per cent of the fit-out. Both were cut, on the reasonable ground that the company plays text and not music and that nobody in the room had ever complained about bass. Measured, the tail came in at 1.54 s: slightly better than predicted, because the timber floor and the old roof structure are doing more than the model gave them credit for, and still longer than we would like.

It matters less than we said it would and more than the client thinks. Text is fine. What suffers is the underscore — the low synthesised beds that a modern production runs under a scene — which sits in the region where the room rings and has to be mixed thinner than the sound designer wants. We put a note in the technical handbook telling incoming designers exactly where the room is long and by how much, which is a poor substitute for twelve traps but is at least honest, and costs nothing.

Enquiries

Have you a room like this one?

A drawing, a volume, or a recording of the problem. Any of the three is enough to start, and the first conversation is not charged for.

Unit 4, Rope Walk
London SE16