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163篇 您的检索式:作者名="Sunden"
    题名 作者 年代 出处 被引量
1Heat transfer behaviors of some supercritical fluids: A review显示文摘Supercritical fluids(e.g.,hydrocarbon fuels,water,carbon dioxide,and organic working medium,etc)have been recognized as working media to improve thermal efficiencies in power cycles and energy conversion,and have been used or selected as the working fluids in engineering fields such as aerospace,nuclear power,solar energy,refrigeration,geothermal energy,chemical technology,and so on.To better understand the interesting characteristic or abnormal behaviors of supercritical fluids,most valuable research works(including experimental results and numerical studies)from domestic and abroad have been documented.As such,this paper presents a comprehensive review on heat transfer behaviors of some supercritical fluids in engineering applications.This review focuses on recently available articles published mainly from 2016 up to the present time.The common problems(i.e.,heat transfer enhancement and heat transfer deterioration particularly for the supercritical hydrocarbon fuels)in the supercritical field are summarized and some perspectives on future prospects are also included.Gongnan XIE Xiaoxiao XU Xianliang LEI Zhouhang LI Yong LI Bengt SUNDEN 2022Chinese Journal of Aeronautics2022,35,1:7
2截断肋排布方式对内冷通道换热性能的影响显示文摘在给定通道雷诺数的条件下,实验研究了矩形内冷通道中截断肋片在6种不同排布方式下的换热特性,并结合三维数值模拟方法,基于流动特征深入分析了其中的对流换热机理。研究表明:6种不同排布方式下,结构2-3-5-9通道的换热性能最好,结构2-5-3-9通道的换热性能最差;结构2-3-5-9通道的压力损失最大,结构2-5-9-3通道的压力损失最小。就总体热性能而言,结构2-9-5-3的最好,结构2-3-5-9的次之,结构2-5-3-9的最差。对流动特征的分析可知,肋片截断区域诱导的横向涡增强主流与边界层流体的掺混,强化了受热壁面与流体间的换热;截断肋片的不同方式排布使通道中流动特征不尽相同,但截断区域的涡结构基本相似。张国花 谢公南 SUNDEN Bengt 李书磊 2021南京航空航天大学学报2021,53,4:2
3Evaluation of genetic variation in a domestic population of Penaeus qannamei Boone: a comparison with three natural populations 显示文摘Sunden S L F Davis S K 1991Aquaculture1991,97,:1
4Analysis of intermediate temperature solid oxide fuel cell transport processes and Performance显示文摘Yuan J Sunden B 2005Journal of Heat Transfer2005,127,12:1
5Optimization of Compact Heat Exchangers by a Genetic Algorithm 显示文摘XIE G N Sunden B WANG Q W 2008Applied Thermal Engineering2008,28,89:1
6Application a genetic algo- rithm into thermal design of fin-and-tube heat exchangers 显示文摘XIE G N WANG Q W SUNDEN B 2008Heat Transfer Engineering2008,29,7:1
7Enhancement of convective heat transfer in ribroaghened rectangular ducts显示文摘SUNDEN B 1999Enhanced Heat Transfer1999,6,:1
8Optimization of compact heat exchangers by a genetic algorithm显示文摘XIE G N SUNDEN B WANG Q W 2008Applied Thermal En- gineering2008,28,89:1
9Parametric study and multiple correlations on air-side heat transfer and friction characteristics of fin-and-tube heat exchangers with large number of large-diameter tube rows显示文摘G Xie Q Wang B Sunden 2009Applied Thermal Engineering2009,29,1:1
10SmaIl peptide-catatyzed enantioselective addition of ketones to nitroolefins显示文摘Xu Y M Zou W Sunden H 2006Advanced Synthesis Catalysis2006,348,4:1
11Analysis of intermediate temperature solid oxide fuel cell transport processes and performance显示文摘YUAN J L SUNDEN B 2005ASME2005,127,:1
12Heat transfer and pressure drop in a newtype of corrugated channels 显示文摘Sunden B Skoldheden T 1985International Journal of Heat andMass Transfer1985,,12:1
13Pensions, Social Security, and the Distribution of Wealth 显示文摘Kenniekel A A Sunden 1999Federal Reserve Board of Washing- ton1999,,:1
14Evaluation of the cross corrugation and some other candidate heat transfer surface for microturbine recuperators 显示文摘Utriainen E Sunden B 2002Journal of Engineering for Gas Turbines and Power2002,124,4:1
15Computational Study and Optimization of Laminar Heat Transfer and Pres- sure Loss of Double-Layer Mierochannels for Chip Liquid Cooling 显示文摘XIE G N LIU Y Q SUNDEN B 2013Journal of Thermal Science and Engineering Applications2013,5,:1
16Performance predictions of laminar and turbulent heat transfer and fluid flow of heat exchangers having large tube-diameter and large tube-row by artificial neural networks显示文摘Xie Gongnan Sunden B Wang Qiuwang 2009International Journal of Heat and Mass Transfer2009,52,3:1
17Persistent elevation of high mobility group box-1 protein (HMGBI) in patients with severe sepsis and septic shock显示文摘SUNDEN C J NORRBY T A ROUHIAINEN A 2005Crit Care Med2005,33,:1
18Turbulence and reynolds number effects on the flow and fluid forces on a single cylinder in cross flow 显示文摘Norberg C Sunden B 1987Journal of Fluids and Structures1987,1,:1
19Evaluation of the cross corrugated and some other candidate heat transfer surfaces for microturbine recuperators显示文摘Utriainen E Sunden B 2002ASME Journal of Engineering for Gas Turbines and Power2002,12,:1
20Expression of multiple isoforms of nitric oxide synthase in normal and atherosclerotic vessels显示文摘Wilcox JN Subramanian RR sunden CL 1997Arterioscler Thromb Vase Biol1997,17,11:1
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