FEATURES OF THE APPLICATION OF HEAT STORAGE ELEMENTS WITH A PHASE TRANSITION IN THE REGENERATIVE HEAT EXCHANGERS OF GLASS FURNACES

O. Koshelnik, S. Hoisan, T. Pugacheva, O. Kruglyakova, V. Pavlova
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Abstract

Increasing the air temperature in regenerative heat exchangers is one of the most effective means of increasing the efficiency of glass furnaces and reducing their fuel consumption. The value of losses with flue gases in furnaces remains quite high and amounts to 25–40 %. As a result, the question arises in the modernization of flue gas utilizers of glass furnaces, the purpose of which is to increase the amount of heat extracted from flue gases without a significant change in overall dimensions, as well as the aerodynamic characteristics of heat exchangers. One such measure is the use of heat storage elements with a phase change in the packing of regenerators. A feature of such materials is the presence of «residual» heat of the phase transition, i.e., such a packing will receive and transfer more heat by this amount compared to the traditional one. However, when solving this problem, the question arises of choosing a fusible material that satisfies the operating conditions of the packing of regenerative heat exchangers of glass furnaces. The paper analyzes the thermophysical properties of some inorganic substances, the characteristics of which make it possible to use them as a fusible material for packing elements. However, at the moment, inorganic compounds of barium sulfate BaSO4 and sodium sulfate Na2SO4 in combination with magnesite and periclase refractories have acquired practical use for high-temperature installations (regenerative heat exchangers of blast-furnace metallurgical production). Such materials have shown good thermal stability and stability under thermal cycling. The study of the possibility of using materials with a phase transition for heat storage elements of packings is associated with the need for mathematical modeling of complex heat exchange processes in the working space of regenerative heat exchangers under conditions of a quasi-stationary mode of their operation. Therefore, the final conclusions about the effectiveness of the modernization of regenerative heat exchangers by using packing with a phase change can only be made based on the results of additional studies, which will determine the influence of a whole complex of various factors that affect the performance of heat storage elements of this design.
相变蓄热元件在玻璃炉蓄热式换热器中的应用特点
提高蓄热式换热器内的空气温度是提高玻璃炉效率和降低玻璃炉燃料消耗的最有效手段之一。炉内烟气损失的价值仍然相当高,达25 - 40%。因此,在玻璃炉烟气利用器现代化方面出现了问题,其目的是在不显著改变总体尺寸和热交换器的空气动力学特性的情况下增加从烟气中提取的热量。其中一种措施是在蓄热器的填料中使用相变蓄热元件。这种材料的一个特点是存在相变的“残余”热,也就是说,与传统的填料相比,这种填料将接收和传递更多的热量。然而,在解决这一问题时,出现了选择一种满足玻璃炉蓄热式换热器填料工作条件的易熔材料的问题。本文分析了一些无机物质的热物理性质,这些特性使它们有可能用作填料的易熔材料。然而,目前,硫酸钡BaSO4和硫酸钠Na2SO4的无机化合物与菱镁矿和方长石耐火材料结合,已经在高温装置(高炉冶金生产的蓄热式换热器)中获得了实际应用。这种材料表现出良好的热稳定性和热循环稳定性。研究在填料蓄热元件中使用相变材料的可能性,需要对蓄热式换热器工作空间中在准平稳运行模式下的复杂换热过程进行数学建模。因此,关于采用相变填料对蓄热式换热器进行现代化改造的有效性的最终结论,只能基于进一步的研究结果,这些研究结果将确定影响该设计蓄热元件性能的各种因素的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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