JOURNAL OF SOUND AND VIBRATION - Journal - MOST Wiedzy

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JOURNAL OF SOUND AND VIBRATION

ISSN:

0022-460X

eISSN:

1095-8568

Disciplines
(Field of Science):

  • Automation, electronic and electrical engineering (Engineering and Technology)
  • Biomedical engineering (Engineering and Technology)
  • Civil engineering and transport (Engineering and Technology)
  • Materials engineering (Engineering and Technology)
  • Mechanical engineering (Engineering and Technology)
  • Physical sciences (Natural sciences)

Ministry points: Help

Ministry points
2020 200 Ministry Scored Journals List 2019
Ministry points
Year Points List
2020 200 Ministry Scored Journals List 2019
2019 200 Ministry Scored Journals List 2019
2018 35 A
2017 35 A
2016 35 A
2015 35 A
2014 35 A
2013 35 A
2012 30 A
2011 30 A
2010 32 A
2009 32 A
2008 32 A

Model:

Hybrid

Punkty CiteScore:

Punkty CiteScore
2018 3.75
Punkty CiteScore
Year Points
2018 3.75
2017 3.2
2016 3.09

Impact Factor:

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Publishing policy:

Pre-print
author's version of the article before the review
Post-print
author's version of the article after the review

Status table SHERPA RoMEO

Status table SHERPA RoMEO
RoMEO color Archiving policy
Green can archive pre-prints and post-prints or a version of the publisher
Blue can archive post-prints
Yellow can archive pre-prints
White can not archive any materials
Gray unknown

Filters

total: 12

  • Category
  • Year

Catalog Journals

2017
2015
  • Fast bubble dynamics and sizing
    Publication

    - JOURNAL OF SOUND AND VIBRATION - 2015

    Single bubble sizing is usually performed by measuring the resonant bubble response using the Dual Frequency Ultrasound Method. However, in practice, the use of millisecond-duration chirp-like waves yields nonlinear distortions of the bubble oscillations. In comparison with the resonant curve obtained under harmonic excitation, it was observed that the bubble dynamic response shifted by up to 20 percent of the resonant frequency...

    Full text in external service

2012
2010
2007
2006
2003
2002
  • VIBRATION PARAMETERS FOR DAMAGE DETECTION IN STRUCTURES

    The aim of this paper is to examine how damage indicators are sensitive to changing number of frequencies and mode shapes and also to number and location of measurement points. The influence of measurement errors was also analyzed for all cases. For the analysis, those damage indicators are chosen which use changes in such modal parameters as natural frequencies and mode shapes and also differences between the curvatures of the damaged...

    Full text in external service

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