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Titlebook: Analysis of Energy Efficiency of Industrial Processes; Vladimir S. Stepanov Book 1993 Springer-Verlag Berlin Heidelberg 1993 Energie.Energ

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期刊全称Analysis of Energy Efficiency of Industrial Processes
影响因子2023Vladimir S. Stepanov
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图书封面Titlebook: Analysis of Energy Efficiency of Industrial Processes;  Vladimir S. Stepanov Book 1993 Springer-Verlag Berlin Heidelberg 1993 Energie.Energ
影响因子It is universally recognized that the end of the current and the beginning of the next century will be characterized by a radical change in the existing trends in the economic development of all countries and a transition to new principles of economic management on the basis of a resource and energy conservation policy. Thus there is an urgent necessity to study methods, technical aids and economic consequences of this change, and particularly, to determine the possible amounts of energy resources which could be conserved (energy "reserves") in different spheres of the national economy. An increased interest towards energy conservation in industry, one of the largest energy consumers, is quite natural and is manifested by the large num­ ber of publications on this topic. But the majority of publications are devoted to the solution of narrowly defined problems, determination of energy reserves in specific processes and plants, efficiency estimation of individual energy conserva­ tion measures, etc. However, it is necessary to develop a general methodological approach to the solution of such problems and create a scientific and methodical base for realizing an energy conservation pol
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Efficiency of Technological Processes Based on Energy Balance,y balance. The methods of drawing the energy balance and the possibilities it affords for studying various technical systems can differ. This author has developed his own version for studying processes with complex physico-chemical transformations of matter and energy.
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Optimizing the Use of Thermal Secondary Energy Resources,duction processes [5, 15, 24, 42, 73, 118, 124, 141, 188, 192, 194, 196]. Secondary energy resources imply an energy potential of products and wastes formed in technological processes (aggregates) that is not used fully in the primary considered process, but can be used as a source of energy supply
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Energy Use and Energy Efficiency Increase in Non-Ferreous Metallurgy,t of the energy supply. It was the study of the energy efficiency of the processes in this industry that led to improvements in the techniques for drawing up and analyzing energy balances. Advantages of the methodology developed by the author are most vividly revealed in studies on the processes of
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Predicting Energy Conservation in an Industry by Modeling Individual Sectors, design better policies is being continued even now. These methods must take into account the inter-sectoral character of energy consumption, and thus be comprehensive, using the available mathematical modeling to formalize the problem of determining the energy reserves, and the best methods for the
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https://doi.org/10.1007/978-3-662-56551-3Consumption of iron and its alloys currently accounts for nearly 90% of the total consumption of all metals. This fact above all stipulates the urgency of increasing the energy efficiency of ferrous metallurgy, as even a small increase can have a net considerable effect on the sector on the whole.
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The Technological Process as a Subject of Thermodynamic Analysis,All processes proceeding in nature and technical facilities transform some given form of energy into another. Therefore, material changes that underlie any technological process should be considered as the consequences of the energy transformations.
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