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Unification of Design Solutions for Two Groups of Drum-Type Gas-Fired Boilers with Different Capacities and Steam Parameters

机译:两组容量和蒸汽参数不同的鼓式燃气锅炉设计方案的统一

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摘要

Difficulties in implementing methods for unification of design solutions for power-generating boilers of different capacities are considered. The unification of the designs could result in cost reduction at all stages of boiler manufacturing. Approaches are described that were used to search for solutions for two groups of drum-type gas-fired boilers with capacities of 75–150 and 200–320 t/h that function at different values of the superheated steam pressure and temperature. The selection of the design solutions for the boiler-flow diagrams and the method for the arrangement of the burning process common for all boilers, as well as the evaluation of the efficiency and reasonability of the adopted solutions, have been validated. Considering the experience of manufacturing and operating the boilers and the reliability and efficiency of the heating surfaces, the design solutions are set forth and justified, which include the selection of the material of the tubes and their diameters and wall thickness, the number of parallel coils from one cross section, the coil spacing, and the arrangement of the coils. The criteria for determining the geometry of the heating surfaces for the basic boilers of each group have been established. The possibility of extending the geometric parameters on the boilers of other capacities is considered. The variants of the thermal designs for the boilers operating at 100, 50, and 30% loads calculated using the Boiler Designer and Furnace software programs are provided. The causes as to why the required superheated steam temperature cannot be achieved in all boilers at low loads at the excess air coefficients at the furnace exist specified in the current normative documents have been analyzed. Depending on the parameters that determine the arrangement of swirl burners in the furnace, two different but stable burning process patterns are possible.
机译:考虑了在实现不同容量发电锅炉设计方案统一方法上的困难。设计的统一可以降低锅炉制造各个阶段的成本。描述了用于寻找两组容量为75–150和200–320 t / h的鼓式燃气锅炉的解决方案的方法,这些锅炉在不同的过热蒸汽压力和温度值下起作用。已经验证了锅炉流程图的设计方案的选择以及所有锅炉通用的燃烧过程的布置方法,以及对所采用方案的效率和合理性的评估。考虑到锅炉的制造和运行经验以及受热面的可靠性和效率,提出并证明了设计方案,包括选择管道的材料及其直径和壁厚,平行线圈数从一个横截面,线圈间距和线圈的布置来看。建立了确定每组基本锅炉受热面几何形状的标准。考虑了在其他容量的锅炉上扩展几何参数的可能性。提供了使用Boiler Designer和Furnace软件程序计算出的在100%,50%和30%负荷下运行的锅炉的热设计变量。分析了当前规范性文件中规定的为什么在所有锅炉在低负荷,炉膛中的空气系数过高时都无法达到所需的过热蒸汽温度的原因。根据确定炉中涡旋式燃烧器布置的参数,可以使用两种不同但稳定的燃烧过程模式。

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