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Titlebook: Journal Bearings in Turbomachinery; D. M. Smith Book 1969 David Macleish Smith 1969 Europe.correlation.design.development.engine.future.ma

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書目名稱Journal Bearings in Turbomachinery
編輯D. M. Smith
視頻videohttp://file.papertrans.cn/502/501233/501233.mp4
圖書封面Titlebook: Journal Bearings in Turbomachinery;  D. M. Smith Book 1969 David Macleish Smith 1969 Europe.correlation.design.development.engine.future.ma
描述This book deals with the functioning of hydrodynamic journal bearings in turbomachinery. It makes particular reference to large turbine- generator and marine propulsion plant. Journal-bearing design in this field has been based mainly on experience supplemented by full-scale experimental test. Development is becoming influenced to an increasing extent by research and analysis. Particular attention is given in this book to correlation of research and analytical work with the observed operating characteristics of journal bearings. The physical phenomena in bearings are complicated, and analysis is rendered convenient only by making simplifying assumptions. The engineer must know which assumptions are serviceable and in what operating conditions they may be applied. Current British and European practice in journal bearings is illus- trated. An examination is made of steady running characteristics, as predicted by theory and as established by test. Some account is given of the dynamic characteristics of journal bearings and of their in- fluence in machine vibration. Service experience of journal bearings is reviewed, and reference is made to possible future trends in develop- ment. The
出版日期Book 1969
關鍵詞Europe; correlation; design; development; engine; future; machine; propulsion; research; service; turbomachine
版次1
doihttps://doi.org/10.1007/978-1-4757-5623-4
isbn_softcover978-1-4757-5625-8
isbn_ebook978-1-4757-5623-4
copyrightDavid Macleish Smith 1969
The information of publication is updating

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D. M. Smith D.Sc., LL.D., F.I.Mech.E., F.R.Ae.S., F.R.S.ch more complex 3d flows that feature massive separation and strong vortical transverse motion. While anisotropy-resolving closures may give a superior representation of the response of the stress field to different types of strain, they cannot account (in common with all other RANS models) for the
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D. M. Smith D.Sc., LL.D., F.I.Mech.E., F.R.Ae.S., F.R.S.ch more complex 3d flows that feature massive separation and strong vortical transverse motion. While anisotropy-resolving closures may give a superior representation of the response of the stress field to different types of strain, they cannot account (in common with all other RANS models) for the
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D. M. Smith D.Sc., LL.D., F.I.Mech.E., F.R.Ae.S., F.R.S.ch more complex 3d flows that feature massive separation and strong vortical transverse motion. While anisotropy-resolving closures may give a superior representation of the response of the stress field to different types of strain, they cannot account (in common with all other RANS models) for the
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D. M. Smith D.Sc., LL.D., F.I.Mech.E., F.R.Ae.S., F.R.S.e annotation scheme to characterize its correctness. For this inliner, correctness of the level?II annotations can be decided efficiently by a weakest precondition annotation checker, thus allowing on-device checking of inlining correctness in a proof-carrying code setting.
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