SPECIFICS OF THE COMBINED ELECTROMAGNETIC AND THERMAL PRE-TREATMENT OF THE COAL-WATER FUEL

被引:0
|
作者
Kuzmin A. [1 ]
Pinchuk V. [2 ]
Koshelenko Y. [2 ]
Lutsenko I. [2 ]
Arango D.A.G. [3 ]
Villa C.F.H. [4 ]
机构
[1] Institute for Engineering Thermal Physics of NAS of Ukraine, Zhelyabova Str., 2a, Kiev
[2] Dnipro University of Technology, Dmytra Yavornytskoho Ave., 19, Dnipro
[3] Administrative Management Consultants SAS, CR 7 #23 Sur 94 CA 4, Envigado, Antioquia
[4] Digital University Institution of Antioquia, Cra. 55 #42-90 Int. 101, Antioquia, Medellín
关键词
active power; asynchronous electric motor; coal-water fuel; electromagnetic field; fuel activation;
D O I
10.1615/InterJEnerCleanEnv.2024053062
中图分类号
学科分类号
摘要
An increase in fuel usage efficiency is the path to eliminate environmental impact, decrease greenhouse gas emissions, and prevent climate warming. Coal-water fuel (CWF) is seen as a replacement for coal and heavy oil in some applications but it has a number of disadvantages that must be addressed before it can be gasified or burned. Pretreatment (or activation) is one of the methods for improving the fuels. Since CWF is an electrically conductive substance, the electromagnetic field can be used for various types of influences: heating, stirring by rotation, etc. Numerical research was carried out to study the possibility of simultaneous heating and movement of CWF by a rotating electromagnetic field created in the stator of an asynchronous electric motor. The correlations between the required electromagnetic field parameters and tangential velocity profile were investigated. It was found that a change in the position of the maximum tangential velocity with increasing rotation speed can lead to a decrease in magnetic reluctance and, consequently, to a decrease in the active power required to rotate the CWF. © 2024 by Begell House, Inc.
引用
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页码:93 / 116
页数:23
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