An Analysis of How Physical and Social Factors Influence …
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Acknowledgements This work was carried out in the framework of the research project REMARC
(Renewable Energy extraction in MARine environment and its Coastal impact), supported by
the Romanian Executive Agency for Higher Education, Research, Development and Innovation
Funding—UEFISCDI, grant number PN-III-P4-IDPCE-2016-0017.
References
1. L. Picu, M. Picu, E.V.C. Rusu, Evaluation of human exposure to whole-body vibration -
verification method of Stevens’s power law, in Proceedings 18th International Multidisciplinary Scientific GeoConference, SGEM 2018, vol. 18, no, (5.2). (Albena, Bulgaria (2018),
pp. 413–420
2. L. Picu, E.V.C. Rusu, Multiple physical stress exposures of sailors on several ships—a
longitudinal study. Annals of Dunarea de Jos University, Fascicle II—Mathematics, Physics,
Theoretical Mechanics, Year X(XLI), No. 1, (2018), pp. 84–93
3. A.E. Baitis, F.D. Holcombe, S.L., Conwell, P. Crossland, J. Colwell, J.H. Pattison, 1991–1992
Motion induced interruptions (MII) and motion induced fatigue (MIF) experiments at the Naval
Biodynamics Laboratory. Technical Report CRDKNSWC-HD1423011. (Bethesda, MD: Naval
Surface Warfare Center, Carderock Division 1995)
4. European Parliament and the Council, Directive 2002/44/EC, on the minimum health and
safety requirements regarding the exposure of workers to the risks arising from physical agents
(vibration) (2002)
5. ISO 20283-5:2016, Mechanical vibration—measurement of vibration on ships—Part 5: guidelines for measurement, evaluation and reporting of vibration with regard to habitability on
passenger and merchant ships, International Standard Organization (2016)
6. DNV-GL, Criteria for handling of excessive noise and vibration levels, DNVGL-CG-0493
(2016)
7. Lloyd’s Register, Ship Vibration and Noise, Guidance notes (2006)
8. ABS, Guide for Crew Habitability on Ships (2016)
9. M. Oldenburg, H. Jensen, Merchant seafaring: a changing and hazardous occupation. Occup.
Environ. Med. 69(9), 685–688 (2012)
10. R.E. Kurt, H. Khalid, O. Turan, M. Houben, J. Bos, I.H. Helvacioglu, Towards human-oriented
norms: considering the effects of noise exposure on board ships. Ocean Eng. 120, 101–107
(2016)
11. T.G. Dobie, Critical significance of human factors in ship design. Presented to 2003 RVOC
Meeting, Large Lakes Observatory, University of Minnesota (2003)
12. M. Lundh, M. Lützhöft, L. Rydstedt, J. Dahlman, Working conditions in the engine department—A qualitative study among engine room personnel on board Swedish merchant ships.
Appl. Ergon. 42(2), 384–390 (2011)
13. D.K. Brown, The value of reducing ship motions. Naval Eng. J. 97(3), 41–46 (1985)
14. H.E. von Gierke, K. McCloskey, W.B. Albery, Military performance in sustained acceleration and vibration environments, in Handbook of Military Psychology, ed. by R. Gal, A.D.
Mangelsdorff (Wiley, New York, 1991), pp. 352–364
15. ISO 2631-2:2003, Mechanical vibration and shock—evaluation of human exposure to wholebody vibration—Part 2: vibration in buildings (1–80 Hz) (2003)
16. M. Biot, F. De Lorenzo, Noise and vibrations on board cruise ships: are new standards effective?
in 2nd International Conference on Marine Research and Transportation, ICMRT ‘07, Ischia
(Naples), Italy (2007)
17. ISO 8041-1:2017, Human response to vibration—measuring instrumentation—Part 1: General
purpose vibration meters (2017)
203
Acknowledgements This work was carried out in the framework of the research project REMARC
(Renewable Energy extraction in MARine environment and its Coastal impact), supported by
the Romanian Executive Agency for Higher Education, Research, Development and Innovation
Funding—UEFISCDI, grant number PN-III-P4-IDPCE-2016-0017.
References
1. L. Picu, M. Picu, E.V.C. Rusu, Evaluation of human exposure to whole-body vibration -
verification method of Stevens’s power law, in Proceedings 18th International Multidisciplinary Scientific GeoConference, SGEM 2018, vol. 18, no, (5.2). (Albena, Bulgaria (2018),
pp. 413–420
2. L. Picu, E.V.C. Rusu, Multiple physical stress exposures of sailors on several ships—a
longitudinal study. Annals of Dunarea de Jos University, Fascicle II—Mathematics, Physics,
Theoretical Mechanics, Year X(XLI), No. 1, (2018), pp. 84–93
3. A.E. Baitis, F.D. Holcombe, S.L., Conwell, P. Crossland, J. Colwell, J.H. Pattison, 1991–1992
Motion induced interruptions (MII) and motion induced fatigue (MIF) experiments at the Naval
Biodynamics Laboratory. Technical Report CRDKNSWC-HD1423011. (Bethesda, MD: Naval
Surface Warfare Center, Carderock Division 1995)
4. European Parliament and the Council, Directive 2002/44/EC, on the minimum health and
safety requirements regarding the exposure of workers to the risks arising from physical agents
(vibration) (2002)
5. ISO 20283-5:2016, Mechanical vibration—measurement of vibration on ships—Part 5: guidelines for measurement, evaluation and reporting of vibration with regard to habitability on
passenger and merchant ships, International Standard Organization (2016)
6. DNV-GL, Criteria for handling of excessive noise and vibration levels, DNVGL-CG-0493
(2016)
7. Lloyd’s Register, Ship Vibration and Noise, Guidance notes (2006)
8. ABS, Guide for Crew Habitability on Ships (2016)
9. M. Oldenburg, H. Jensen, Merchant seafaring: a changing and hazardous occupation. Occup.
Environ. Med. 69(9), 685–688 (2012)
10. R.E. Kurt, H. Khalid, O. Turan, M. Houben, J. Bos, I.H. Helvacioglu, Towards human-oriented
norms: considering the effects of noise exposure on board ships. Ocean Eng. 120, 101–107
(2016)
11. T.G. Dobie, Critical significance of human factors in ship design. Presented to 2003 RVOC
Meeting, Large Lakes Observatory, University of Minnesota (2003)
12. M. Lundh, M. Lützhöft, L. Rydstedt, J. Dahlman, Working conditions in the engine department—A qualitative study among engine room personnel on board Swedish merchant ships.
Appl. Ergon. 42(2), 384–390 (2011)
13. D.K. Brown, The value of reducing ship motions. Naval Eng. J. 97(3), 41–46 (1985)
14. H.E. von Gierke, K. McCloskey, W.B. Albery, Military performance in sustained acceleration and vibration environments, in Handbook of Military Psychology, ed. by R. Gal, A.D.
Mangelsdorff (Wiley, New York, 1991), pp. 352–364
15. ISO 2631-2:2003, Mechanical vibration and shock—evaluation of human exposure to wholebody vibration—Part 2: vibration in buildings (1–80 Hz) (2003)
16. M. Biot, F. De Lorenzo, Noise and vibrations on board cruise ships: are new standards effective?
in 2nd International Conference on Marine Research and Transportation, ICMRT ‘07, Ischia
(Naples), Italy (2007)
17. ISO 8041-1:2017, Human response to vibration—measuring instrumentation—Part 1: General
purpose vibration meters (2017)
