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以熔盐为传热流体的塔式接收器技术对能量产生的影响

Abstract第4页
摘要第5-8页
Nomenclature第8-9页
Greek Letters第9-14页
Chapter 1 Introduction第14-32页
    1.1 Background and Significance of Study第14-16页
    1.2 Literature review第16-31页
        1.2.1 CSP technology and its types第16-22页
        1.2.2 World’s interest towards CSP第22-23页
        1.2.3 Properties of Heat transfer fluid and storage fluids第23-27页
        1.2.4 Concept of Energy Storage Technology第27-31页
    1.3 Objectives and outlines of this research第31页
    1.4 Organization of Thesis第31-32页
Chapter 2 Mathematical modeling of parameters involving in CSP calculation第32-41页
    2.1 Formalism第32-35页
        2.1.1 The atmospheric pressure第32页
        2.1.2 The optical air mass第32-35页
    2.2 Irradiance on a plane oriented in sun position第35-37页
        2.2.1 Direct irradiance第35-36页
        2.2.2 Overall irradiance第36-37页
    2.3 Irradiance on a horizontal plane第37-39页
        2.3.1. Calculation of the solar ray as function of the zenith angle第37-38页
        2.3.2. Influence of altitude第38-39页
    2.4 Calculation of the sun position as function of the latitude and time第39-41页
Chapter 3 Research work and Results第41-66页
    3.1 Development of CSP plant model第41-42页
    3.2 The thermal solar Energy generation system:第42页
    3.3 Solar Positions:第42-45页
    3.4 Calculation of solar angles on proposed field layout第45-49页
        3.4.1 Solar Azimuth angle for each heliostat as reference to tower receiver第47页
        3.4.2 Solar altitude angle of each heliostat relative to tower第47页
        3.4.3 Distance of each heliostat from tower base第47页
        3.4.4 Rotation angles of heliostat第47-48页
        3.4.5 Solar incidence angle第48-49页
    3.5 Calculating efficiencies and defining plant parameters第49-50页
    3.6 Modeling solar radiations on the tower receiver第50-54页
        3.6.1 Extraterrestrial radiation第51页
        3.6.2 Solar beam irradiance第51页
        3.6.3 Relative optical air mass第51页
        3.6.4 Rayleigh optical thickness第51-52页
        3.6.5 Total solar thermal power received at the tower receiver第52-54页
    3.7 Mathematical Model and Simulation of CSP第54-66页
Chapter 4 Analysis on Simulation results第66-75页
    4.1 Simulation results by modeling of molten salts for desired autonomy第66-72页
    4.2 Simulation results by modeling of latent heat storage system for improving energyefficiency第72-75页
Conclusion第75-76页
The Future Works第76-77页
References第77-81页
Appendix 1第81-82页
Appendix 2第82-85页
Acknowledgement第85页

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