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The influence of variable operating conditions on the design and exploitation of fly ash pneumatic transport systems in thermal power plants

机译:变工况对火电厂粉煤灰气力输送系统设计和开发的影响

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The efficiency of an air-slide pneumatic conveying system depends, first of all, on several basic elements chosen or calculated during the design of a plant: air-slide design parameters, air mover characteristics, as well as the physical and chemical properties of the material to be transported. However, during the exploitation of this type of system which is used for handling ash in thermal-power plants, either gradual and/or sudden changes in the operating conditions can arise. This may be due to changes both in the proportion of ash content, and in the flow characteristics of the porous membrane. The consequences of changes in these conditions on the performance of the ash handling system are analyzed, based upon the results of the experimental work carried out on the test rig at the Faculty of Mechanical Engineering in Belgrade, and upon the on-site measurements at the thermal-power plant "Nikola Tesla B".
机译:气浮式气动输送系统的效率首先取决于在工厂设计过程中选择或计算的几个基本要素:气浮式设计参数,鼓风机特性以及气化炉的物理和化学特性。要运输的材料。然而,在开发用于在火力发电厂中处理灰烬的这种类型的系统的过程中,操作条件可能会逐渐变化和/或突然变化。这可能是由于灰分含量的比例以及多孔膜的流动特性的变化。根据在贝尔格莱德机械工程学院的试验台上进行的实验工作的结果,以及在现场进行的测量,分析了这些条件变化对灰分处理系统性能的影响。火力发电厂“尼古拉·特斯拉B”。

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