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20篇 您的检索式:作者名="Lin Bihong"
    题名 作者 年代 出处 被引量
1Performance of a two-state quantum engine improved by the superposition effect显示文摘The performance of a two-state quantum engine under different conditions is analyzed.It is shown that the efficiency of the quantum engine can be enhanced by superposing the eigenstates at the beginning of the cycle.By employing the finite-time movement of the potential wall,the power output of the quantum engine as well as the efficiency at the maximum power output(EMP) can be obtained.A generalized potential is adopted to describe a class of two-level quantum engines in a unified way.The results obtained show clearly that the performances of these engines depend on the external potential,the geometric configuration of the quantum engines,and the superposition effect.Moreover,it is found that the superposition effect will enlarge the optimally operating region of quantum engines.OU CongJie HUANG ZhiFu LIN BiHong CHEN JinCan 2013Science China(Physics,Mechanics & Astronomy)2013,56,10:4
2A three-process quantum engine cycle consisting of a two-level system显示文摘Based on the thermodynamic properties of isoenergetic,adiabatic and isothermal quantum processes,it is shown that it is possible to combine the three processes into a quantum engine cycle.The efficiency of the three-process cycle can be derived and is dependent on the highest and lowest temperatures.The efficiency in some operation regions does not demonstrate a monotonically increasing function of the temperature difference.When the highest temperature of the cycle is larger than the critical temperature,which can be determined by the characteristics of the three-process cycle,a unique region where the efficiency decreased with the increase of the temperature difference exists.OU CongJie HUANG ZhiFu LIN BiHong CHEN JinCan 2014Science China(Physics,Mechanics & Astronomy)2014,57,7:3
3The parametric optimum design of a new combined system of semiconductor thermoelectric devices显示文摘Chen Xiaohang Lin Bihong Chen Jincan 0,,83:1
4Optimal Design of a Multi-couple Thermoelectric Generator显示文摘Chen Jincan Lin Bihong Wang Hongjie 2000Semiconductor Science and Technology2000,2,15:1
5The parametric optimum design of a new combined system of semicon- ductor thermoelectric devices 显示文摘Chen Xiaohang Lin Bihong Chen Jinean 2006Applied Energy2006,83,7:1
6Optimum perior-mance characteristics of an irreversible solar-driven Brayton heat engine at the maximum overall efficieney 显示文摘Zhang Yue Lin Bihong Chen Jincan 2007Renewable Energy2007,32,5:1
7Optimal Design of a Multi-couple Thermoelectric Generator显示文摘Chen Jincan Lin Bihong Wang Hongjie 2000Semiconductor Science and Technology2000,2,15:1
8Optimal Analysis on the Per- formance of an Irreversible Harmonic Quantum Bray- ton Refrigerator Cycle 显示文摘LIN Bihong CHEN Jincan 2003Phys Rev E2003,68,05:1
9Optimization on the performance of a harmonic quantum Braytou heat engine 显示文摘LIN Bihong CHEN Jincan 2003Journal of Applied Physics2003,94,9:1
10Optimum Performance Characteristics of an Irreversible Solar-Driven Brayton Heat Engine at the Maximum Overall Efficiency 显示文摘ZHANG Yue LIN Bihong CHEN Jincan 2007Renewable Energy2007,32,:1
11Late Quaternary right-lateral displacement along active faults in the Yanqi Basin, southeastern Tianshan, northwest China显示文摘Lin Aiming Fu Bihong Kano Ken-ichi 2002Tectonophysics2002,354,34:1
12Optimal design of a multieouplethermoeleetrie generator显示文摘Chen Jinean Lin Bihong Wang Hongjie 2000Semieond Sei Technol2000,,15:1
13The parametric optimum design of a new combinedApplied system of semiconductor thermoelec- tric devices显示文摘Chen Xiaohang Lin Bihong Chen Jincan 2006Energy2006,83,:1
14The parametric optimum design of a new combined system of semiconductor thermoelectric devices显示文摘Chen Xiaohang Lin Bihong Chen Jincan 2006Applied Energy2006,83,6:1
15Late Quaternary right- lateral displacement along active faults in the Yanqi Basin, southeastern Tian Shan, Northwest China显示文摘Lin Aiming Bihong Fu Ken-ichi Kano 2002Tectonophysics2002,354,:1
16The unified cycle model of a class of solar-driven heat engines and their optimum performance characteristics显示文摘Zhang Yue Lin Bihong Chen Jincan 2005J Appl Phys2005,97,:1
17The parametric optimum design of a new combined system of semiconductor thermoelectric devices显示文摘CHEN Xiaohang LIN Bihong CHEN Jincan 2006Applied Energy2006,83,:1
18Performance analysis and parametric optimal design of an irreversible multicouple thermoelectric refrigerator under various operating conditions 显示文摘Pan Yuzhuo Lin Bihong Chen Jincan 2007Applied Energy2007,84,9:1
19Optimum periormance characteristics of an irreversible solar- driven Brayton heat engine at the maximum overall efficieney 显示文摘Zhang Yue Lin Bihong Chen Jincan 2007Renewable Energy2007,32,5:1
20High-efficiency removal of NOx by a novel integrated chemical absorption and two-stage bioreduction process using magnetically stabilized fluidized bed reactors显示文摘To enhance the bioregeneration of Fe(II)EDTA and to avoid the inhibition of the components in nitrogen oxides(NOx) scrubbing solution, a novel integrated process of metal chelate absorption and two-stage bioreduction was developed. In this process, magnetically stabilized fluidized beds(MSFB) were used as the bioreactors, and the phase diagram for the MSFB operation was determined. Factors including inlet NO, O2 and SO2 concentrations, magnetic field intensity, gas flow rate and liquid circulation rate, were studied experimentally to investigate their effects on NO removal. In addition, a mathematical model for NO removal in this integrated system was developed. The results revealed that the integrated system could be steadily operated with a high NO removal efficiency and elimination capacity, even under the condition of high NO and O2 shock-loading. The established model showed that NO removal efficiency was related to the spray column property and the active Fe(II)EDTA concentration, while the latter depends on the bioregeneration of the disabled absorbent in the MSFB.Zuoming Zhou Tianming Lin Guohua Jing Bihong Lv Yixuan Liu 2015Science China Chemistry2015,58,10:0
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