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Exact(18)
Obtaining full-field engineering flow measurements using existing techniques is difficult and seldom done.
The study has important applications in buoyancy-driven, chemical engineering flow regimes.
Applications of the model arise in metallurgical materials processing, chemical engineering flow control, geothermal hydromagnetics, etc.
This model finds applications in metallurgical materials processing, chemical engineering flow control, etc.
The implication of these results on the applicability of difference approximations to engineering flow problems in the underresolved case is discussed.
Conventional engineering flow measurement techniques are usually limited to providing measurements at discrete points or planes and are either intrusive or require direct optical access.
Similar(42)
This phenomenon is present in numerous environmental and engineering flows.
Modern medical imaging techniques offer the potential to provide noninvasive detailed, three-dimensional, full-field, information of relevant engineering flows.
Particle-laden turbulent flows are ubiquitous in natural and engineering flows.
Wall modeling is necessary to simulate practical engineering flows at high Reynolds numbers.
We perceived this situation is a source of inaccuracies in modeling practical engineering flows.
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