Doppler Approaching Frequency

Observed frequency from a source approaching a stationary listener through still air.

Description

Observed frequency from a source approaching a stationary listener through still air.

Doppler Approaching Frequency implements a focused acoustics calculation. Observed frequency from a source approaching a stationary listener through still air.1

When to use Doppler Approaching Frequency

Use this calculation for a first-order acoustics estimate when the stated geometry, propagation model, averaging convention, reference quantity, and SI units match the measurement or design problem.

Source Hertz
A finite measured or assumed value greater than or equal to 0, expressed in Hz.
Sound Speed Meters Per Second
A finite measured or assumed value greater than or equal to 0, expressed in m/s.
Source Speed Meters Per Second
A finite measured or assumed value greater than or equal to 0, expressed in m/s.

How Doppler Approaching Frequency calculates the result

The implemented rule is: Observed frequency from a source approaching a stationary listener through still air.1

Observed Hertz
The calculated observed hertz, expressed in Hz.

Limitations of Doppler Approaching Frequency

This is an idealized calculation rather than a complete acoustic simulation or measurement. Reflections, boundary conditions, directivity, damping, frequency dependence, near-field behavior, background noise, transducer response, temperature, humidity, and geometry can change a real result.

Alternative or Complementary measurements

Confirm important results with calibrated measurements or a model that includes the actual geometry, materials, boundaries, source directivity, and frequency-dependent losses. Preserve the reference quantity and weighting whenever a result is expressed in decibels.

References

  1. Doppler effect — Wikipedia contributors

Similar or alternative tools

Don't forget to set a bookmark for tool.io!
Privacy | Imprint | Cookies