ISO 14837-1
Ground-borne Vibration from Rail Systems
ISO 14837-1 establishes the fundamental framework for measuring and predicting ground-borne vibration generated by railway operations in free-field conditions. This test is essential for assessing environmental impact, particularly for urban and suburban rail networks where vibration transmission to nearby buildings is a concern. Infrastructure operators, urban planners, and environmental consultants rely on this standard to evaluate compliance with local vibration limits and to design mitigation measures. Accredited testing ensures consistent, reproducible vibration assessments that support both regulatory compliance and community health protection.
What it measures
- Vertical vibration acceleration levels (m/s² or dB ref 10⁻⁶ m/s²)
- Horizontal vibration components
- Vibration frequency content (Hz range)
- Vibration transmission to ground and surrounding structures
- Free-field vibration velocity and displacement
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DIN EN ISO 14837-2
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BS EN ISO 14837-2
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NF EN ISO 14837-2
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UNI EN ISO 14837-2
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UNE EN ISO 14837-2
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NEN EN ISO 14837-2
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DIN EN ISO 20816-3
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BS EN ISO 20816-3
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NF EN ISO 20816-3
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UNI EN ISO 20816-3
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UNE EN ISO 20816-3
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NEN EN ISO 20816-3
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SGS INSTITUT FRESENIUS
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DIN EN ISO 2639
DIN EN ISO 6507-1
DIN EN ISO 6508-1
DIN EN 10328
DIN 50190-3
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DIN EN 61010-2-010: 2015
DIN EN 60335-2-9
IEC 61000-4-8: 2009
IEC 61010-2-010: 2014
DIN EN 61010-2-101
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SGS United Kingdom
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Joint IP/ASTM methods marked
IP 195*ASTM D1078
ASTM D847 by titration
ASTM D848
ASTM D 1353
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SGS United Kingdom
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(HSG 248) – 2021
ASB/SOP/OM8 based on HSG 248
(PCM) based on HSG 248
SGS United Kingdom
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CHEM014 based on BS 4401
based on BS 4401 Part 4:1970
CHEM018 based on BS 4401
CHEM023 based on BS 4401-
ISO 6579-1
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SGS United Kingdom
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Method CBG-M-SOP-027 based on BS EN ISO
AM01 based on BS EN ISO 4833-1:
2) Method CBG-M-SOP-038 based on BS ISO
ISO 10272-2
Method CBG-M-SOP-007 based on BS EN ISO
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SGS United Kingdom
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MPV Thrombozytenvolume
Gas meters
Power meter method
LENGTH
Waterdraw Method
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SGS United Kingdom
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BS EN 286 - Simple unfired pressure
BS EN 13445 Unfired pressure
BS EN13480 Metallic industrial
BS EN 12953 Shell boilers
BS EN BS EN 12952 Water-tube
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SIANTEC- Silvio Herzog e. K.
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Härte (WPM) 80 HBW
und Knoop-Verfahren 150 HV
(Härteskalen HV5 bis HV100)
150 HV
(Härteskalen HV 0,1 bis HV 3)
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DIN EN ISO 21528-1
DIN 53483-2
DIN EN ISO 21528-2
DIN ISO 11665-4
DIN EN ISO 16649-3
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ISO 18787
AM09 based on BS ISO 21527-1:
DIN EN ISO 11290-1
NF V04-408
0.95) based on BS ISO 21527-2:2008
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DIN EN ISO 21528-1
NF V08-401
DIN EN ISO 21528-2
DIN EN ISO 6888-1
DIN EN ISO 6888-2
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DIN EN ISO 21528-1
DIN EN ISO 21528-2
DIN EN ISO 6888-1
DIN EN ISO 6888-2
DIN ISO 16649-2
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-95 kPa ≤ P < 0 kPa 0 kPa ≤ P ≤ 1 kPa 1
-95 kPa ≤ P ≤ -5 kPa - 5 kPa < P < -1 kP
(5 ± 0,2) · 10-2 mol/mol
(1000 ± 50) · 10-6 mol/mol
(15 ± 2) · 10-6 mol/mol
UNE-EN 12341
0,015 l/min ≤ Q ≤ 50 l/min
20 ⋅ 10-9 mol/mol ≤ C ≤ 500 ⋅ 10-9 mol/m
20 ⋅10-9 mol/mol ≤ C ≤ 100 ⋅ 10-9 mol/mo
100 ⋅ 10-9 mol/mol ≤ C ≤ 1000 ⋅ 10-9 mol
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Absolutdruck Pabs
> 0,05 bar
Negativer und
positiver Überdruck p
(ein- oder mehrgängige
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SKZ - Testing
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Bauart wie GR 1482
DIN ISO 48-4
DIN ISO 7619-2
DIN EN ISO 868
DIN EN ISO 2039-1
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IEC 61000-4-2: 2008
IEC 61000-4-3: 2006
DIN EN IEC 61000
IEC 61000-4-4: 2012
IEC 61000-4-5: 2005
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SMA Solar Technology
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IEC 61000-4-2: 2008
VDE 0847-4-2
IEC 61000-4-3: 2006
VDE 0847-4-3
IEC 61000-4-4: 2012
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DIN EN ISO 1833-13
DIN EN ISO 1833-14
DIN EN ISO 1833-16
DIN EN ISO 1833-17
DIN EN ISO 1833-18
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ISO 13737
NF ISO 22286
ASTM D 2137
NF F19-503
NF T60-190
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DIN EN ISO 10545-3
DIN EN 997
DIN EN ISO 10545-4
DIN EN ISO 10545-14
DIN EN ISO 10545-6
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SOCOTEC Asbestos
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(HSG 248) – 2021
SCI/ASB/003 based on HSG 248
(PCM) based on HSG 248
SCI/ASB/001 based on HSG 248
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