Studio LOOS Audio Lab • The Hague
100% IN-BROWSER
🔒 Zero Audio Uploads: Audio files are decoded & processed in your local browser RAM via Web Audio API. No sound data ever leaves your device.
CALCULATOR 03

Decibel Attenuation & Inverse-Square Modeler

RADIATION: SPHERICAL / SEMI-REVERBERANT

Distance Decay Parameters

meters
dB SPL
meters
Decibel Summation (Adding Incoherent Sources):
TOTAL COMBINED SPL: 88.0 dB SPL

Decay Calculations

SOUND LEVEL AT TARGET (\(L_2\)): 71.9 dB SPL
ACOUSTIC DECIBEL ATTENUATION: -18.1 dB

OSHA & NIOSH Permissible Noise Exposure Limits:

Sound LevelNIOSH LimitPerception
85 dB SPL8 HoursHeavy Traffic / Studio Mon.
88 dB SPL4 HoursLoud Classical Concert
91 dB SPL2 HoursGas Lawnmower
100 dB SPL15 MinutesNightclub / Live Drums
110 dB SPL< 1 MinuteRock Concert / PA System

The Inverse-Square Law in Architectural Acoustics

In a free acoustic field (an open space without reflective walls or ceilings), sound radiates outward spherically from an omnidirectional point source. Because the surface area of a sphere increases proportionally with the square of the radius (\(A = 4\pi r^2\)), the acoustic sound intensity spread over the sphere drops by a factor of four each time the distance doubles.

$$\Delta L = 20 imes \log_{10}\left( rac{d_1}{d_2} ight) ext{ dB}$$
The Inverse-Square Law decibel attenuation formula for sound pressure level (SPL)

Because human hearing perceives loudness logarithmically, a fourfold drop in physical sound energy translates to an exact -6.02 dB attenuation for every doubling of distance (e.g. from 1m to 2m, or 2m to 4m).

ADVERTISEMENT • STUDIO SPONSOR
Support Studio LOOS open web acoustic laboratory • High-grade pro audio gear & plugins