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10篇 您的检索式:作者名="Songping Mo"
    题名 作者 年代 出处 被引量
1Effective temperature and exergy of monochromic blackbody radiation显示文摘A new parameter named monochromic effective temperature Tλ is proposed, which represents the thermodynamic quality of monochromic blackbody radiation. The exergy of the monochromic blackbody radiation is expressed by Tλ. The monochromic effective temperature equation is developed, which shows that the product of Tλ and the wavelength is constant, which equals 5.33016×10-3 m·K. The exergy function of monochromic blackbody radiation is presented. The cause of the view that there is negative entropy production in photosynthesis can be explained by the results of this work.Chen Zeshao Mo Songping 2007Progress in Natural Science:Materials International2007,17,10:5
2Recent progress in thermodynamics of radiation——exergy of radiation, effective temperature of photon and entropy constant of photon显示文摘The recent progress on thermodynamic properties of spectral radiant energy in the field of thermodynamics of radiation is reviewed. The effective temperature of photon Tλ representing the energy quality of photon is introduced. The relation between Tλ and the wavelength λ is given as λTλ =c3=5.33016×10?3 m·K. The en- tropy constant of photon is given as sλ=3.72680×10?23 J/K. The exergy, entropy and enthalpy of the spectral blackbody radiation, the equilibrium cavity radiation, the radiation flux in open system are discussed by using Tλ and sλ, as well as the en- tropy change in the process of the state transformation of photon gas. By analyzing the exergy of spectral radiation, the exergy efficiency of spectral radiant energy available for photosynthesis is proved to be higher than that of light energy. The method for the irreversible loss of exergy calculation in radiant energy converters is also discussed.CHEN ZeShao MO SongPing HU Peng 2008Science China(Technological Sciences)2008,51,8:4
3Solid-liquid phase transition of nanofluids显示文摘JIA Lisi CHEN Ying MO Songping 2013International Journal of Heat and Mass Transfer2013,59,:1
4Reduction of Subcooling of water by TiO2 Nanoparticles as Observed Using Differential Scanning Calorimeter 显示文摘MO Songping CHEN Ying JIA Lisi 2013Journal of Ex- perimental Nanoscience2013,8,4:1
5Optical Modelling for a Two-Stage Parabolic Trough Concentrat- ing Photovoltaic/Thermal System Using Spectral Beam Splitting Technology 显示文摘JIANG Shouli HU Peng MO Songping 2010Solar Energy Materials & Solar Cells2010,94,10:1
6Optical modeling for a two-stage parabolic trough concentratingphotovoltaic/thermal system using spectral beam splitting technology显示文摘Jiang Shouli Hu Peng Mo songping 2010Solar Energy Materials & Solar Cells2010,94,10:1
7Experimental investigation of crystallization process of nanofluid by DSC 显示文摘Chen Ying Jia Lisi Mo Songping 2010Journal ofSoutheast University2010,26,2:1
8Solid–liquid phase transition of nanofluids显示文摘Lisi Jia Ying Chen Songping Mo 2013International Journal of Heat and Mass Transfer2013,,:1
9Reply to“Comment on ‘Recent progress in thermodynamics of radiation—Exergy of radiation,effective temperature of photon and entropy constant of photon'”显示文摘Two counterexamples in Liu's comment on'Recent Progress in Thermodynamics of Radiation—Exergy of radiation,effective temperature of photon and entropy constant of photon'are analyzed and the incorrect applications of the related concepts are indicated.The similarities and differences between the concepts of the effective temperature of photon,the exergy of spectral radiation,the entropy constant of photon and the macroscopic concepts of temperature,exergy,and entropy are further discussed.The duality of radiant energy,micro-state quantum characteristic and macro-state thermal characteristic is presented.CHEN ZeShao 1,MO SongPing 1,2 &HU Peng 1 1Department of Thermal Science and Energy Engineering,University of Science and Technology of China,Hefei 230027,China 2 Faculty of Material and Energy,Guangdong University of Technology,Guangzhou 510006,China 2010Science China(Technological Sciences)2010,53,3:0
10Thermocapillary flow-induced core release from double-emulsion droplets in microchannels显示文摘The use of double emulsions(DEs),which represent colloidal structures composed of droplets nested within droplets,can provide for unparallel droplet manipulation in droplet-based microfluidic technology due to their unique core–shell structures.The controlled release of cores in DEs is of particular interest.However,this process remains poorly explored.In this work,the thermocapillary flow induced by a temperature gradient is used as a driving force to control the core release and the impacts of different linear temperature gradients,core diameters,shell diameter,and core/shell diameter ratios on the thermocapillary flow and core release characteristics of DE droplets consisting of a water-in-n-hexadecane-in-water system within a cylindrical microchannel are investigated.Most of the core and shell diameter conditions considered result in a double-core release process,where the inner droplet volume is partially ejected before the remaining core is rewrapped by the outer droplet,and the remaining inner droplet volume is ejected later during a second core release event.However,relatively small core diameters of 50 and 75μm produce conditions where the full inner droplet volume is ejected during a singlecore release process.In addition,we provide empirical relationships for accurately determining the time at which core release initially occurs under given DE parameters as well as for precisely determining whether the applied conditions will lead to single-or double-core release processes.Therefore,the results of this study provide insights enabling the development of accurate inner droplet release technologies under thermocapillary migration.Jingyi Qin Zhibin Wang Ying Chen Songping Mo Jian Liu 2023Droplet2023,2,3:0
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