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Autorenporträt
Univ.-Prof. Dr. Manfred Becker, seit 1993 Inhaber des Lehrstuhls für Allgemeine Betriebswirtschaftslehre, insbesondere Organisation und Personalwirtschaft an der Martin-Luther-Universität Halle-Wittenberg, von 1990 bis 1993 Universitätsprofessor für Betriebswirtschaftslehre an der Gerhard-Merkator-Universität Duisburg; von 1980 bis 1990 in leitenden Funktionen der Personalwirtschaft eines internationalen Industrieunternehmens tätig; Promotion 1979, Habilitation 1987 an der Johannes Gutenberg-Universität Mainz.
Inhaltsangabe
Receivers.- Investigation and Selection of Materials Resistant to Temperatures and Radiation to Construct a Metallic/Ceramic Secondary Concentrator as well as Measurements at Premodels.- Investigations of Hard Coating and Heat Mirrors for Simultaneous Energy Conservation in a Photovoltaic/Solarthermic Hybrid System or for Use in a Secondary Reflector.- Optimization of Terminal Concentrators.- Receivers.- 200 kW Stirling Engine for SSP Module; Solar Stirling Receiver with Heat Storage System Analysis.- The Construction of a Volumetric Receiver with a Staggered Structure.- Analysis of Convective Heat Transfer in Volumetric Receivers Built of Porous Media.- Solar Chemistry.- Thermochemical H2 - Production with Sulfur-Iodine Process and Solar Energy Adaptation.- The Use of Thermal Solar Energy to Treat Waste Materials.- Solar Thermal Energy Cycle Based on Sulfur and Sulfide Oxidizing Bacteria.- Experiments on the Decomposition of Toxic and Hazardous Chemicals under High Pressure and High Temperature Light Flux Conditions.
Receivers.- Investigation and Selection of Materials Resistant to Temperatures and Radiation to Construct a Metallic/Ceramic Secondary Concentrator as well as Measurements at Premodels.- Investigations of Hard Coating and Heat Mirrors for Simultaneous Energy Conservation in a Photovoltaic/Solarthermic Hybrid System or for Use in a Secondary Reflector.- Optimization of Terminal Concentrators.- Receivers.- 200 kW Stirling Engine for SSP Module; Solar Stirling Receiver with Heat Storage System Analysis.- The Construction of a Volumetric Receiver with a Staggered Structure.- Analysis of Convective Heat Transfer in Volumetric Receivers Built of Porous Media.- Solar Chemistry.- Thermochemical H2 - Production with Sulfur-Iodine Process and Solar Energy Adaptation.- The Use of Thermal Solar Energy to Treat Waste Materials.- Solar Thermal Energy Cycle Based on Sulfur and Sulfide Oxidizing Bacteria.- Experiments on the Decomposition of Toxic and Hazardous Chemicals under High Pressure and High Temperature Light Flux Conditions.
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