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18篇 您的检索式:作者名="Long EE"
    题名 作者 年代 出处 被引量
1Improved biological performance of Ti implants due to surface modi- fication by micro - arc oxidation显示文摘Long - Hao Li Young - Min Kong Hae - Won Kim Young - Woon Kim Hyoun - Ee Kim Seong - Joo Heo Jai - Young Koak 2004Biomaterials2004,25,:1
2Computed tomography,endoscopic,laparoscopic,and intra-operative sonography for assessing resectability of pancreatic cancer显示文摘Long EE Van Dam J Weinstein S 2005Surg Oncol2005,14,2:1
3Computed tomography, endoscopic, laparoscopie, and intra-operative sonography for assessing resectability of pancreatic cancer 显示文摘Long EE Van Dam J Weinstein S 2005Surg Oncol2005,14,2:1
4Severity of respiratory syncytial virus infection is related to virus strain显示文摘Walsh EE McConnochie KM Long CE 1997J Infect Dis1997,175,4:1
5Mutational dynamics of the SARS coronavirus in cell culture and human populations iso- lated in 2003 显示文摘Vega VB Ruan Y Liu J Lee WH Wei CL Se-Thoe SY Tang KF Zhang T Kolatkar PR Ooi EE Ling AIE Stan- ton LW Long PM Liu ET 2004BMC Infect Dis2004,4,:1
6Severity of respiratory syncytial virus infection is related to virus strain显示文摘Walsh EE McConnochie KM Long CE 0,,:1
7Severity of respiratory syncytial virus infection is re- lated to virus strain 显示文摘Walsh EE McConnochie KM Long CE 1997J Infect Dis1997,175,4:1
8Flavanoid of Drynaria fortunei Protects against Gentamicin Ototoxicity显示文摘Long M Smouha EE Qiu D 0,,03:1
9Computed tomography, endoscopic, laparoscopic, and intra-operative sonography for as- sessing respectability of pancreatic cancer 显示文摘Long EE Van Dam J Weinstein S 2005Surg Oncol2005,14,2:1
10Severity of respiratory syncytial virus infection is related to virus strain显示文摘Walsh EE McConnochie KM Long CE 1996J Infect Dis1996,175,:1
11Computed tomography,endoscopic,laparoscopic,and intra-operative sonography for assessing resectability of pancreatic cancer显示文摘Long EE Van Dam J Weinstein S 0,,:1
12Computed tomography, endoscopic, laparoscopic, and intra-operative sonography for assess- ing resectability of pancreatic cancer 显示文摘Long EE Van Dam J Weinstein S 2005Surg Oncol2005,14,2:1
13Renal Artery Stenosis:Detection and Quantification with Spiral CT Angiography Versus Optimized Digital Subtraction Angiography显示文摘Kaatee R Beek FJ de Longe EE 1997Radiology1997,205,1:1
14Myocardin is a bifunctional switch for smooth versus skeletal muscle differentiation显示文摘Long X Creemers EE Wang DZ 2007Proc Natl Acad Sci U S A2007,104,16:1
15Computed tomography,endoscopic,laparoscopic,and intra-operative sonography for assessing respectability of pancreatic cancer显示文摘Long EE Van Dam J Weinstein S 0,,02:1
16Computed tomography,endoscopic,laparoscopic,and intra-operative sonography for assessing resectability of pancreatic cancer显示文摘Long EE Van Dam J Weinstein S 2005Surg Oncol2005,14,2:1
17Immunity to and frequency of reinfection with respiratory syncytial virus 显示文摘HALL CB WALSH EE LONG CE 1991J Infect Dis1991,163,4:1
18Effect of Yaw Angle on Large Scale Three-blade Horizontal Axis Wind Turbines显示文摘Offshore Horizontal Axis Wind Turbines(HAWT)are used globally as a source of clean and renewable energy.Turbine efficiency can be improved by optimizing the geometry of the turbine blades.Turbines are generally designed in a way that its orientation is adjustable to ensure the wind direction is aligned with the axis of the turbine shaft.The deflection angle from this position is defined as yaw angle of the turbine.Understanding the effects of the yaw angle on the wind turbine performance is important for the turbine safety and performance analysis.In this study,performance of a yawed HAWT is studied by computational fluid dynamics.The wind flow around the turbine is simulated by solving the Reynolds-Averaged Navier-Stokes equations using software ANSYS Fluent.The principal aim of this study is to quantify the yaw angle on the efficiency of the turbine and to check the accuracy of existing empirical formula.A three-bladed 100-m diameter prototype HAWT was analysed through comprehensive Computational Fluid Dynamics(CFD)simulations.The turbine efficiency reaches its maximum value of 33.9%at 0°yaw angle and decreases with the increase of yaw angle.It was proved that the cosine law can estimate the turbine efficiency with a yaw angle with an error less 10%when the yaw angle is between-30°and 30°.The relative error of the cosine law increase at larger yaw angles because of the power is reduced significantly.Thomas Posenauer Ming Zhao Ee Long Tan 2022Hydro Science & Marine Engineering2022,4,1:0
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