Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 1; Volume 7, Part 1American Society of Mechanical Engineers, 1988 - Arctic regions |
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Page 121
... effect of blade thickness on ʼn for a turbine with S = 0.76 and R = 2x105 . The turbine boundary blade and The performance of a monoplane ( single plane ) turbine is compared with biplane turbines in Fig.11 . And finally the effect of ...
... effect of blade thickness on ʼn for a turbine with S = 0.76 and R = 2x105 . The turbine boundary blade and The performance of a monoplane ( single plane ) turbine is compared with biplane turbines in Fig.11 . And finally the effect of ...
Page 123
... Effect of blunt trailing edges 0 0-1 0.2 0.3 0.4 Fig.10 Effect of blade thickness on n increases with the increase in thickness ( 9 % < 123.
... Effect of blunt trailing edges 0 0-1 0.2 0.3 0.4 Fig.10 Effect of blade thickness on n increases with the increase in thickness ( 9 % < 123.
Page 143
... effect of varying the tooth fillet radius on the relationship between SCF and the ratio of axial to tooth load . It ... Thickness As pin wall thickness is increased the stress concentration factor for a given ratio of axial to tooth load ...
... effect of varying the tooth fillet radius on the relationship between SCF and the ratio of axial to tooth load . It ... Thickness As pin wall thickness is increased the stress concentration factor for a given ratio of axial to tooth load ...
Contents
FLOATING PRODUCTION SYSTEMS | 1 |
OFFSHORE MECHANICS | 23 |
Early Production Systems in the North | 31 |
Copyright | |
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analysis angle applied axial bending cable calculated characteristics coefficient components Conference connected considered construction cost curve damage depth determined diameter direction displacement distribution dynamic effect element energy Engineering equation equipment fatigue field Figure flexible flow forces frequency function geometry given important included increase installation International joint length limit linear load lower mass material matrix maximum mean measured Mechanics method mode mooring motion natural normal obtained Offshore operation parameters performance period pile pipe pipeline platform position presented pressure problem production range ratio response riser shear shown shows significant soil static stiffness strength stress structure surface Table Technology tension tower turbine vane vessel wave weight wire