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| 1 | Improvement of a Multi-Stage Flash Seawater Desalination System for Cogeneration Power Plants 显示文摘 | Yan Junjie Shao Shufeng Liu Jiping | 2007 | Desalination2007,217,13: | 1 |
| 2 | Improvement of a multi stage flash seawater desalination system for cogeneration power plants显示文摘 | Yan Junjie Shao Shufeng Wang Jinhua | 2007 | Desalination2007,217,: | 1 |
| 3 | Experiment and analysis on performance of steam-driven jet injector for district-heating system显示文摘 | YAN Junjie SHAO Shufeng LIU Jiping | 2005 | Applied Thermal Engineering2005,25,: | 1 |
| 4 | Experimental study on the condensation of supersonic steam jet submerged in quiescent subcooled water:steam plume shape and heat transfer显示文摘 | WU Xinzhuang YAN junjie SHAO shufeng | 2007 | International Journal of Multiphase Flow2007,33,12: | 1 |
| 5 | Experiment and analysis on performance of steam-driven jet injector for district-heating system显示文摘 | YAN Junjie SHAO Shufeng LIU Jiping | 2005 | Applied Thermal Engineering2005,25,89: | 1 |
| 6 | Experimental Study on the Condensation of Supersonic Steam Jet Submerged in Quiescent Subcooled Water: Steam Plume Shape and Heat Transfer 显示文摘 | WU Xinzhuang YAN Junjie SHAO Shufeng | 2007 | International Journal of Multiphase Flow2007,33,12: | 1 |
| 7 | Experiment and Analysis on Performance of Steam-driven Jet Injector for District-heating System显示文摘 | Junjie YAN Shufeng SHAO Jiping LIU | 2005 | Applied Thermal Engineering2005,25,: | 1 |
| 8 | Experimental Study on the Condensation of Supersonic Steam Jet submerged in Quiescent Subcooled Water: Steam Plume Shape and Heat Transfer 显示文摘 | Wu Xinzhuang Yan Junjie Shao Shufeng | 2007 | International Journal of Multiphase Flow2007,33,12: | 1 |
| 9 | Experimental study on the condensation of supersonic steam jet submerged in quiescent subcooled water: steam plume shape and heat transfer 显示文摘 | WU Xingzhuang YAN Junjie SHAO Shufeng | 2007 | International Journal of Multiphase Flow2007,33,12: | 1 |
| 10 | Ex- periment and analysis on performance of steam-driven jet injector for district-heating system 显示文摘 | YAN Junjie SHAO Shufeng LIU Jiping | 2005 | Applied Thermal Engineering2005,25,8: | 1 |
| 11 | Experiment and analysis on performance of steam-driven jet injector for district-heating system 显示文摘 | Yah Junjie Shao ShuFeng Liu Jipiag | 2005 | Applied ThermalEngineering2005,25,8: | 1 |
| 12 | Improvement of a multi-stage flash seawater desalination system for cogeneration power plants显示文摘 | Yan Junjie Shao Shufeng Wang Jinhua Liu Jiping | 2007 | Desalination2007,,1: | 1 |
| 13 | Improvement of a multi-stage flash seawater desalination system for cogeneration power plants 显示文摘 | Yan Junjie Shao Shufeng Wang Jinhua Liu Jiping | 2007 | Desalination2007,217,123: | 1 |
| 14 | Experi- ment and analysis on performance of steam-driven jet in- jector for district-heating system 显示文摘 | YAN Junjie SHAO Shufeng LIU Jiping | 2005 | Applied Thermal Engineering2005,25,89: | 1 |
| 15 | Experiment and analysis on performance of steam-driven jet injector for dis-triet-heating system显示文摘 | Yan Junjie Shao Shufeng Liu Jiping | 2005 | Applied Thermal Engineering2005,25,: | 1 |
| 16 | Improvement of a multi-stage flash seawater desalination system for cogeneration power plants显示文摘 | Yan Junjie Shao Shufeng Wang Jinhua | 2007 | Desalination2007,217,: | 1 |
| 17 | Exper- imental Study on the Condensation of Supersonic Steam Jet Submerged in Quiescent Subcooled Water: Steam Plume Shape and Heat Transfer 显示文摘 | Xinzhuang Wu Junjie Yan Shufeng Shao | 2007 | International Jour- hal of Multiphase Flow2007,33,12: | 1 |
| 18 | Experiment and analysis on performance of steam-driven jet injector for dis- trict-heating system 显示文摘 | Yan Junjie Shao Shufeng Liu Jiping | 2005 | Applied Thermal Engineering2005,25,89: | 1 |
| 19 | Cell-cell contact-induced gene editing/activation in mammalian cells using a synNotch-CRISPR/Cas9 system显示文摘Dear Editor,The CRISPR system has been widely used for genome manipulation in various cells,tissues and whole organisms.Although an increasing variety of inducible CRISPR systems have been exploited for a variety of applications,such as chemical switch(Zetsche et al.,2015),photo switch(Shao et al.,2018)and solution ligand switch(Baeumler et al.,2017;Kipniss et al.,2017;Schwarz et al.,2017)systems,a cell-cell interaction inducible system is absent.The synthetic Notch(synNotch)receptor is a recently developed cell-cell contact sensing platform,which contains a customized extracellular sensor module,a transmembrane core domain of native Notch,and a customized intracellular responder module(Morsut et al.,2016). | Hongxin Huang Xin Zhang Jie Lv Hongcheng Yang Xinlong Wang Shufeng Ma Ruoyang Shao Xin Peng Ying Lin Zhili Rong | 2020 | Protein & Cell2020,11,4: | 0 |
| 20 | Theoretical investigation of DFSI with immunity to both Doppler effect and frequency-sweep nonlinearity显示文摘Frequency-swept interferometry(FSI) is a well-known ranging technique, but it suffers from three problems, namely, the Doppler effect, the frequency-sweep nonlinearity, as well as the slow frequency-sweep rate. The first two problems hinder the measurement accuracy, while the third problem limits the measurement rate. In this paper, we present a dynamic FSI(DFSI) that solves these three fundamental problems simultaneously. The DFSI consists of two auxiliary interferometers(AU1 and AU2) and two measurement interferometers(FSI and frequency-fixed interferometry(FFI)). We use FSI to obtain the Doppler and nonlinearity affected ranging signal, AU1 to monitor the frequency-tuning nonlinearity in the frequency-swept laser(FSL), and FFI and AU2 to constitute a laser vibrometer for monitoring the target motion-induced Doppler effect. Then, a novel signal fusion processing technique is applied to reconstruct the real dynamic distance from the above-measured signals. The dynamic ranging error caused by the Doppler effect and frequency-sweep nonlinearity in FSI can be eliminated and the dynamic distance at each sampling point can be obtained. The validity of this method is demonstrated by numerical experiments. | ZHENG Feiteng SHAO Bin SUN Shufeng ZHANG Wu TAN Qinggui ZHANG Wei | 2022 | Optoelectronics Letters2022,18,11: | 0 |