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Source: https://jmrplens.github.io/phonometry/vibration/immission/

# Vibration immission

*Immission* is the German term for what arrives, as against *emission*, what
leaves: the vibration a building or the people in it actually receive, wherever
it came from. It is regulated on that side of the transmission path, and the
documents that do it are a set rather than a single standard. DIN 4150-2 fixes
what people in buildings may be exposed to; DIN 4150-3 fixes what the buildings
themselves may take; DIN 45669-1 specifies the **instrument** both of them
presuppose, and DIN 45669-2 the procedure it is used with, of which the
mounting limits and the instrument's share of the error are numbers.

This section is the instrument of that set and the assessment for people that
reads it. The buildings already had a page: the guideline values of DIN 4150-3
are in [Vibration damage to
structures](https://jmrplens.github.io/phonometry/structural/structural-damage/), and they used
to say, at the end, that the instrument requirements of DIN 45669 were not
implemented. They are now, which closes the loop: the quantity a guideline
value is compared against is defined by the meter, and the meter is defined by
its band limitation, its KB weighting and the running r.m.s. it averages them
with. And the people have theirs: the guide values of DIN 4150-2 by area and
time of day, the order the standard reads them in, and the assessment
vibration severity that sums a day of exposure into one number.

The section also carries the piece of DIN 45669-1 that reaches furthest into
practice. Annex E turns the frequency-dependent guideline curve of DIN 4150-3
into three filters, one per building class, and with them a short-term event is
judged against a single number instead of against a curve read at a frequency
two methods disagree about.

The meter has a second working range, 4 Hz to 315 Hz, and it exists for the
source that most often brings vibration into a house: a railway. DIN 45672 is
the pair of standards for it, a method of measuring next to the line and a
method of reducing what was measured, so that the vibration of one train can be
compared with the next, one point on the way to the building with another, and
the track before a mitigation measure with the track after it.

And before any of it is measured, two documents say what to expect.
DIN 4150-1 gives every prediction its shape, the decay with distance, the
building's amplification and the sources, with the few constants experience
has fixed; the draft of DIN 45672-3 builds a railway's spectrum on a floor
term by term from an emission spectrum and six tables of building transfer.
The draft of DIN 4150-2 that is to replace the 1999 edition is here too,
with a railway assessed by category of train and the rest of its changes
behind an edition switch.

## Pages in this section

- [Measuring vibration immission (DIN 45669-1)](https://jmrplens.github.io/phonometry/vibration/vibration-meter/):
  the band limitation and KB weighting of Formulae (3) and (4), the weighted
  vibration severity and the clock maximum r.m.s. of Formulae (1) and (2), the
  tolerance bands of Tables 2 and 3, the printed check values of Tables 8 and
  9, and the assessment velocity of Annex E (DIN 45669-1:2010-09 with
  Corrigendum 1:2012-12), with the loose-mounting limits, the mass loading
  and the instrument confidence limits of DIN 45669-2:2005-06.
- [Vibration next to a railway (DIN 45672)](https://jmrplens.github.io/phonometry/vibration/railway-vibration/):
  the three stretches of a passage, the running r.m.s. and the event value
  referred to an hour, the third-octave spectra of Figure 6, the narrow-band
  density and Table 1 (DIN 45672-2:1995-07), and the ground constants from two
  wave speeds (DIN 45672-1:2009-12, Clause 4.5).
- [Vibration and people in buildings (DIN 4150-2)](https://jmrplens.github.io/phonometry/vibration/people-in-buildings/):
  the guide values of Table 1 by area, time of day and source, the procedure
  of 6.2 as a verdict, the assessment vibration severity of Formulae (4) and
  (5) with the rest-time weight, the rules of 6.5 for blasting, roads,
  railways and construction sites with Table 2, the railway classes of Annex A
  and the estimate of Clause 7 from a peak velocity (DIN 4150-2:1999-06).
- [Railway vibration by category of train (E DIN 4150-2)](https://jmrplens.github.io/phonometry/vibration/railway-categories/):
  the draft's Formulae (5) to (8) and Table 2, the night-time upper value of
  a new line, the 25 % rule of an altered one, and its changes to Table 1,
  the procedure and the sources (E DIN 4150-2:2023-08).
- [Predicting railway vibration (E DIN 45672-3)](https://jmrplens.github.io/phonometry/vibration/railway-prediction/):
  Formula (1) with the emission, ground, foundation, floor and mitigation
  terms, the ground transmission of Formulae (4) to (6), the six tables of
  Annex A, and the KB values of Clause 7 from the spectrum
  (E DIN 45672-3:2023-02).
- [Predicting vibration before measuring (DIN 4150-1)](https://jmrplens.github.io/phonometry/vibration/vibration-prediction/):
  the far field of Formula (1), the decay of Formula (2) with the exponents
  of Figure 1, the building of Formulae (3) and (4), the blast, the falling
  mass and the machine hall of Formulae (5) to (7) with the nomogram of
  Figure 3 (DIN 4150-1:2001-06).

## See also

- [Vibration damage to structures (DIN 4150-3)](https://jmrplens.github.io/phonometry/structural/structural-damage/):
  the guideline values this chain produces the numbers for.
- [Verifying a human-vibration meter (ISO 8041-1)](https://jmrplens.github.io/phonometry/human/meter-verification/):
  the same idea for the meter that measures vibration on people, with its own
  weightings and its own tolerance tables.
- [Building response and fundamental frequency (ISO 4866)](https://jmrplens.github.io/phonometry/structural/building-response/):
  the frequency a building answers at, which is a different question from the
  frequency of the event.

## What this section does not cover

**Almost no measurement procedure.** DIN 45669-2 fixes the measurement
positions, the coupling of a transducer to a floor or to the ground, the
measurement duration and the disturbances that have to be kept out. Its
numbers are on the meter page: the limits a transducer may be set down loose
within, the mass it may add and the meter's own share of the error. The rest
is text and is not here.

**No decision on the cases DIN 4150-2 leaves open.** An existing railway line,
a construction site beyond 78 working days, a hospital next to one and
whatever 6.2 sends to an individual assessment are judged case by case in the
standard, and they are not judged here. The guide
values, the procedure and the assessment vibration severity are on the people
page; where they do not reach, neither does the library.

**No railway measuring procedure.** DIN 45672-1 fixes the measurement points
on the way from the track to the building, the directions, the trains to
record and the report to write. Only its Clause 4.5, the ground constants, is
arithmetic, and only that is here.

**No work plan for a prediction.** Clause 6 of the draft of DIN 45672-3, the
phases from the site visit to the choice of a measure, and the measured
cases of Annex A of DIN 4150-1, which the standard says are not a basis for
a prediction, are described and not computed; the constants of a blast or
an impact are the user's.
