ГО С Т Р И С 0 14837-1— 2007
119] DIN 45672 (все части)
(DIN 45672. all parts)
(20] DIN 45673 {все части)
(DIN 45673. all parts)
(21] NS 8176:1999
(NS 8176:1999)
(22] ONORMS 9012:1996
(UNORM S 9012:1996)
(23] VDI 2716:2001
(VDI 2716:2001)
(24] VDI 3837:2006
(VDI 3837:2006)
(25] Руководство
ИСО/МЭК 98:1995
(ISO/IEC Guide 98:1995)
Измерение вибрации вблизи железнодорожных путем
(Vibration measurement associated with railway traffic systems)
Вибрация. Упругие элементы рельсового пути
(Mechanical vibration — Resilient elements used in railway tracks)
Вибрация. Измерения вибрации от наземного транспорта в зданиях и руководство
по оценке ее воздействия на человека
(Vibration and shock — Measurement of vibration in buildings from landbased transport
and guidance for evaluation of its effects on human beings)
Оценка воздействий от репьсового транспорта на человека в зданиях. Вибрация и
переизлученный шум
(Evaluation of human exposure in buildings to immissions by railway traffic — Vibrations
and secondary air-borne noise)
Воздушный шум и вибрация от городского рельсового транспорта
(Airborne and structure-borne noise of local public transport railways)
Вибрация грунта вблизи от наземных рельсовых коммуникаций. Расчет спектра виб
рации
(Ground-borne vibration in the vicinity of rail systems at grade — Spectral prediction
method)
Руководство no выражению неопределенности измерений
(Guide to the expression of uncertainty in measurement)
[26] ANC Guidelines.
Measurement and assessment of groundborne noise and vibration,
2001
[27] FRYBA, L.
Vibration of solids and structures under moving loads.
Noordhoff International Publishing, Groningen,
1972
[28] GORDON. C.G. Vibration prediction and control in microelectronic facilities.
Intemoise 1996
[29] GREER. R.J. and COLLINS. K.M. Ground-bome noise and vibration from railways.
Intemoise 1996
[30] GREER. R.J. et al. Channel tunnel rail link — High speed, low impact, minimum cost.
ICE Transport Journal.
153{2),
2002. pp. 71— 78
[31] GRIFFIN. M. J.
Handbook of human vibration.
Academic Press, 1990
[32] HUNT. H.E.M. Prediction of vibration transmission from railways into buildings using models of infinite length.
Vehicle Systems Dynamic Supplement.
Swets & Zeitlinger. 1995
[33] JONSSON. J.O.
On groundand structural vibrations related to railway traffic.
PhD Thesis. Chalmers University of
Technology. Sweden, 2000
[34] KROGER, F. Immissionsgerechte Gestaltung des Gleisoberbaus von Tunnelstrecken.
ZeitschriflfurLarmbekampfung.
39. Spinger. 1992, pp. 165— 175
[35] Krylov. V.V.
Noise and vibration from high speed trains.
Thomas Telford. 2001
[36] MADSHUS. C.. BESSASON, B.. and HARVIK. L. Prediction model forlow frequency vibration fromhigh speed railways
on soft ground.
Journal of Sound and Vibration.
193(1). 1996, pp. 195— 203
[37] MAKOVICKA. D. The use of rubber for vibro-base-insulation of the building structure exposed to the seismic effect of
traffic.
Building Research Journal,
40. ser. E. No. 9/3. Slovak Academic Press. 1992
[38] NG. S.L.D.
Transmission ofground-bome vibration from surface railway trains.
DPhil. University of Cambridge. 1995
[39] SHARIF. A.K.
Dynamic performance investigation of base isolated structures.
PhD. Imperial College of Science and
Technology. London. 1999
[40] TALBOT, J.P.
On the performance of base-isolated buildings: A generic model.
DPhil. Cambridge University. 2001
35