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  • 1
    Publication Date: 2018-12-20
    Description: With the development of society, large capacity and super large capacity thermal power units have gradually become the main force of China’s electric power industry. How to improve the efficiency of power plant units has become increasingly important. Effectively increasing the cooling efficiency of cooling towers can reduce the temperature of cold sources and improve the efficiency of the units. This paper introduces the development of the cooling tower and the internal structure and working principle of the cooling tower. Combined with the existing optimization methods of several cooling towers, the feasible direction of the optimization design of the cooling tower is put forward to provide support for finding the new energy saving technology to enhance the heat and mass transfer of the circulating water and air to further reduce the water temperature of the tower.
    Print ISSN: 1755-1307
    Electronic ISSN: 1755-1315
    Topics: Geography , Geosciences , Physics
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  • 2
    Publication Date: 2018-12-20
    Description: The removal of industrial dust is mainly realized by various dust removal equipment. The electrostatic dust remover can remove more than 99.5% of the dust particles of various diameters, but the dust removal effect of particulate particles is not significant. Among them, for the finer particles in the dust, the dust removal effect is poor. After measurement, the efficiency of electrostatic dust removal is 80%-85% for fine particles with a particle diameter of 10-1μm [1]. With our higher demand for particulate emissions, improving the removal of industrial fine particulates is imminent. In the process of dust generation, dust particles collide or come into contact through various paths, thereby combining to generate larger particles, and this process becomes the condensation of dust. The dust agglomeration technology is generally used as a pre-treatment of the flue gas in the field of flue gas dust removal. By enriching the fine particles, the fine particles become larger, and th...
    Print ISSN: 1755-1307
    Electronic ISSN: 1755-1315
    Topics: Geography , Geosciences , Physics
    Location Call Number Expected Availability
    BibTip Others were also interested in ...
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