采用特殊气流分布喷嘴对涡流流化床内燃料-空气流动的研究

Serhii Alforov
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引用次数: 0

摘要

本文介绍了用一种特殊的配风喷嘴对带流化床的涡流炉内燃料-空气流动进行实验研究的结果。如今,对化石能源的依赖问题是欧洲国家面临的最重要的问题。解决这个问题的一个很有希望的方法是使用涡流固体燃料炉来燃烧低热量的燃料,比如木工和农业工业的废物。我国发展了农业和木工经济,因此这些行业产生的废物量很大,这使得它们可以用来满足国家的能源需求。与此同时,乌克兰境内有相当数量的固体燃料锅炉可用于这项任务。在固体燃料锅炉中燃烧低品位燃料的主要困难是这些涡流炉的效率水平较低,而这方面的理论资料不足。为了进行实验,使用了一个内部有喷嘴的圆柱体形式的特殊装置。喷嘴的板倾角为15°,不超过实验装置室总活截面积的10%。在实验过程中,确定了不同燃料量和不同空气流量下涡流形成的边界条件,并给出了压力损失值和流速值。结果以图表和表格的形式呈现。例如,对于2.9 kg的锯末,涡流形成的最大速度为0.72 m/s,对于5.8 kg的锯末,该值为0.57 m/s。所获得的结果使制定改进现有固体燃料炉的建议成为可能,因为使用了特殊的喷嘴来加强燃烧过程。这为该国能源部门的发展创造了前景。关键词:燃料燃烧;涡流炉;炉膛空气动力学;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INVESTIGATION OF THE FUEL-AIR FLOW INSIDE A VORTEX FURNACE WITH A FLUIDIZED BED USING A SPECIAL AIR-DISTRIBUTING NOZZLE
The article presents the results of an experimental study of the fuel-air flow inside a vortex furnace with a fluidized bed using a special air distribution nozzle. Nowadays, the issue of dependence on fossil energy resources is the most important problem for the countries of Europe. One of the promising solutions to this problem is the use of vortex solid fuel furnaces for burning low-calorie types of fuel, such as waste from the woodworking and agricultural industries. Our country has developed agricultural and woodworking sectors of the economy, so the amount of waste from these industries is significant, which allows them to be used to cover the energy needs of the state. At the same time, there is a significant number of solid fuel boilers on the territory of Ukraine that can be used for this task. The main difficulties in burning low-grade fuels in solid-fuel boilers are the low level of efficiency of these vortex furnaces and insufficient theoretical information about this. To conduct the experiment, a special installation in the form of a cylinder with a nozzle inside is used. The nozzle has a plate inclination of 15 °, which does not exceed 10% of the total live cross-sectional area of the chamber of the experimental setup. In the course of the experiment, the boundary conditions for the formation of a vortex flow at different amounts of fuel and different air flows were determined, and the values of pressure loss and flow velocity were shown. The results are presented in graphical and tabular form. For example, for 2.9 kg of sawdust, the maximum speed of vortex flow formation is 0.72 m/s, for 5.8 kg this value is 0.57 m/s. The obtained results make it possible to formulate recommendations for the improvement of existing solid fuel furnaces due to the use of special nozzles for the intensification of combustion processes. This creates prospects for the development of the country's energy sector. Keywords: fuel combustion, vortex furnaces, furnace aerodynamics, special nozzle. 
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