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25篇 您的检索式:作者名="Wenxia Pan"
    题名 作者 年代 出处 被引量
1Wind farm polymerization influences on security and economic operation in power system based on Copula function显示文摘Wind speed dependences on different areas in a wind farm have influences on security and economic operation in power system.In order to simulate the correlation of wind speed series between different positions,this paper applies Copula function and rank correlation matrix methods to measure the coherence of wind speed in a wind farm.The correlated wind sample space is established.According to active power output characteristics of wind turbines,the polymerization model in a wind farm can be achieved.Monte Carlo optimal power flow is applied to IEEE-30 and IEEE-300 bus systems based on the principle of energy saving dispatching.The study shows that the accuracy of outputs is improved,thus reducing the fluctuation ranges in unit generating costs and power flow in branches while considering wind speed polymerization.This approach provides a new method to improve the effectiveness of energy saving dispatching and system operation arrangement.Results have been tested to be effective.Xiong PAN Zhuo LIU Wenxia LIU Yanqing LI 2015Journal of Modern Power Systems and Clean Energy2015,3,3:4
2Characterization of Low Pressure RF Plasma Heating显示文摘Compacts of a-Al2O3 and Mo powder were heated in radio-frequency (RF) induced low pressure N2, H2,Ar, and their mixture plasma. An optical pyrometer, a radiation pyrometer, and a system called Accufiber Model310 were used to measure the temperature of compacts heated in the plasma. The results indicate that there are different heat transfer mechanisms from plasma to specimens of different physical properties. The Ar plasma showed thehighest heating ability among N2, H2, and Ar plasma for Al2O3 specimens, whereas the H2 plasma could heat Mospecimens to a higher temperature than the Ar plasma did, even under the same generating conditions.Wenxia Pan Fanxiu Lu Toyonobu Yoshida (Materials Science and Engineering School, University of Science and Technology Beijing, Beijing 100083, China)(Department of Metallurgy, The University of Tokyo, Tokyo 113, Japan) 1998International Journal of Minerals,Metallurgy and Materials1998,12,1:2
3Generation of long, laminar plasma jets at atmospheric pressure and effects of flow turbulence显示文摘Pan Wenxia Zhang Wenhua Zhang Wenhong 2001Plasma Chemistry and Plasma Processing2001,21,1:1
4Investigation of laminar plasma remehing/cladding processing显示文摘Ma Wei Fei Qunxing Pan Wenxia 2006Applied Surface Science2006,252,10:1
5Superwettable interface towards biodetection in confined space显示文摘The detection of biomarkers with both high sensitivity and specificity is crucial for the diagnosis and treatment of related diseases.However,many current detections employ ex-situ detection method and non-confined condition,thus have many problems,which may eventually lead to inaccurate detection results.Compared to detection in non-confined space,detection in confined space can better reflect the real in-vivo situation.Therefore,the construction of detection for target molecules in confined space has great significance for both theoretical research and practical application.To realize the detection of target molecules in confined space,the probes should accurately enter the confined space where the target molecules reside and interact with the interface.Thus,how to explore and utilize the properties of the interface(for example,bioinspired superwettability)has always been a hot and difficult topic in this field.Herein,the recent advances and our efforts in recent 10 years on detection of bio-target molecules in confined space with superwettable interface have been introduced from the perspective of the detection methods.The suitable and most widely employed detection methods for target molecules in confined spaces are introduced firstly.Then,recent progresses for related detections based on visual,optical,and electrochemical detection methods are presented successively.Finally,the perspective for detection in confined space is discussed for the future development of biochemical detection.Zexu Pang Zhikang Cao Wanlu Li Wenxia Xu Yingying Zhang Qitao Zhou Jing Pan Fan Xia 2024Nano Research2024,17,2:1
6Experimental Study on the Thermal Argon Plasma Generation and Jet Length Change Characteristics at Atmospheric Pressure显示文摘Wenxia Pan Xian Meng Chengkang Wu Xi Chen 2006Plasma Chemistry and Plasma Processing2006,,4:1
7Modeling Study on the Flow,Heat Transfer and Energy Conversion Characteristics of Low-power Arc-heated Hydrogen/Nitrogen Thrusters显示文摘Wang Haixing Chen Xi Pan Wenxia 2010Plasma Chemistry and Plasma Processing2010,30,6:1
8Effects of the Length of a Cylindrical Solid Shield on the Entrainment of Ambient Air into Turbulent and Laminar Impinging Argon Plasma Jets显示文摘Wang Haixing Chen Xi Pan Wenxia 2008Plasma Chemistry and Plasma Processing2008,28,1:1
9Generation of Long, Laminar Plasma Jets at Atmospheric Pressure and Effects of Flow Turbulence显示文摘Wenxia Pan Wenhua Zhang Wenhong Zhang Chengkang Wu 2001Plasma Chemistry and Plasma Processing2001,,1:1
10Generation of Long, Laminar Plasma Jets at Atmospheric Pressure and Effects of Flow Turbulence显示文摘Wenxia Pan Wenhua Zhang Wenhong Zhang Chengkang Wu 2001Plasma Chemistry and Plasma Processing2001,,1:1
11Generation of long, laminar plasma jets at atmospheric pressure and effects of flow turbulence显示文摘Pan Wenxia Zhang Wenhua Zhang Wenhong 2001Plasma Chemistry and Plasma Processing2001,21,1:1
12Modeling Study on the Flow,Heat Transfer and Energy Conversion Characteristics of Low-Power Arc-Heated Hydrogen/Nitrogen Thrusters显示文摘Wang Haixing Chen Xi Pan Wenxia 2010Plasma Chemistry and Plasma Processing2010,30,:1
13Investigation of laminar plasma cladding processing显示文摘Ma Wei Fei Qunxing Pan Wenxia and Wu Chengkang 2006Applied Surface Science2006,252,:1
14Sufficiently diffused attachment of nitrogen arc by gasdynamic action显示文摘For realizing diffused anode attachment in pure nitrogen arcs, a special arc plasma generator was designed and combined with suitable working parameters such as gas flow rate and arc current. The anode has a flow-restrictor channel of 2.8 mm diameter and downstream expansion half-angle of 8°, with the purpose of creating a dispersed nitrogen-arc column by strong gasdynamic expansion effect. Results show that,when thermal blocking condition existed in the flow restrictor and the cathode cavity pressure was higher than that in the exit chamber by at least 9 k Pa, the action due to gasdynamic expansion could be much stronger than the self-magnetic contraction effect of the arc and the nitrogen arc column could be effectively dispersed to form a sufficiently diffused attachment on the water-cooled anode surface.Wenxia Pan Lewen Chen Xian Meng Yong Zhang Chengkang Wu 2016Theoretical & Applied Mechanics Letters2016,6,6:1
15Characteristics of argon laminar dc plasma jet at atmospheric pressure 显示文摘Pan Wenxia Zhang Wenhong Ma Wei 2002Plasma Chemistry and Plasma Processing2002,22,2:1
16Generation of Long Laminar Plasma Jets at Atmospheric Pressure and Effects of Flow Turbulence显示文摘Pan Wenxia Zhang Wenhua Zhang Wenhong 2001Plasma Chemistry and Plasma Processing2001,21,1:1
17Characteristics of Argon Laminar DC Plasma Jet at Atmospheric Pressure显示文摘Pan Wenxia Zhang Wenhong Ma Wei 2002Plasma Chemistry and Plasma Processing2002,22,2:1
18Generation of Long Laminar Plasma Jets at Atmospheric Pressure and Effects of Flow Turbulence显示文摘Wenxia Pan Wenhua Zhang Wenhong Zhang 2001Plasma Chemistry and Plasma Processing2001,21,1:1
19Generation of long laminar plasma jets at atmospheric pressure and effects of flow turbulence显示文摘PAN Wenxia ZHANG Weihua ZHANG Weihong 2001Plasma Chemistry and Plasma Process2001,21,1:1
20Rapid Sintering of Alumina in Low Pressure RF Plasma显示文摘PlasmashowsmanypeculiarPrOPertiesforspecimenheating.Manyparaxneters,suchasgeneratingmethods,workingpressure,andgasspeciesofplasmaaffectheatingcharacteristicstospecimens.TheplasmasinteringofoxideceramicswasexaminedtOhavethecharacteristicsofrapidheatin...Wenxia Pan Fanxiu Lu Toyonobu Yoshida (InstitUte of Mechanics, Chinese Academy of Sciences, Beijing 100080, China) (Material Science and Engineering School, University of Science and Technology Beliing, Beliing 100083, China) (Department of Metallurgy, 1999International Journal of Minerals,Metallurgy and Materials1999,13,2:0
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