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3篇 您的检索式:作者名="P.Wheeler"
    题名 作者 年代 出处 被引量
1Compatible osmolytes modulate the response of porcine endothelial cells to hypertonicity and protect them from apoptosis显示文摘Roberta R.Alfieri AndreaCavazzoni Pier GiorgioPetronini Mara A.Bonelli Alessandro E.Caccamo Angelo F.Borghetti Kenneth P.Wheeler 2004The Journal of Physiology2004,,:1
2Short-circuit fault analysis and isolation strategy for matrix converters显示文摘The behavior of matrix converter(MC) drive systems under the condition of MC short-circuit faults is comprehensively investigated. Two isolation strategies using semiconductors and high speed fuses(HSFs) for MC short-circuit faults are examined and their performances are compared. The behavior of MC drive systems during the fuse action time under different operating conditions is explored. The feasibility of fault-tolerant operation during the fuse action time is also studied. The basic selection laws for the HSFs and the requirements for the passive components of the MC drive system from the point view of short-circuit faults are also discussed. Simulation results are used to demonstrate the feasibility of the proposed isolation strategies.王莉娜 L.De Lillo C.Brunson L.Empringham P.Wheeler 2015Journal of Central South University2015,22,9:0
3Numerical study of high-lift hydrofoil near free surface at moderate Froude number显示文摘Shallow hydrofoils are known to produce lower lift in normal operating conditions in comparison with deep hydrofoils.However,the maximum lift capability of shallow hydrofoils at moderate speeds,which is important for transitional regimes of hydrofoil boats,is studied insufficiently.In this work,two-dimensional flow around a high-lift hydrofoil at a moderate Froude number is numerically simulated in a broad range attack angles up to the stall occurrence in both single-phase fluid and in the vicinity of free surface.It is found that nearly the same maximum lift coefficient can be produced by the shallow foil in the modeled condition as by the deep foil,but much higher attack angle is required near the free surface,which also results in larger drag.Additionally,it is shown that higher Reynolds numbers lead to higher lift coefficients,especially at large attack angles.Tao Xing Konstantin I.Matveev Miles P.Wheeler 2020Journal of Hydrodynamics2020,32,1:0
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