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Optimizing the Excess Air Ratio of Coal-Fired Boiler

机译:优化燃煤锅炉的过量空气比

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摘要

This paper investigates on optimization problem of excess air ratio of coal-fired boiler by using the following three-step strategy. Firstly, the net efficiency of boiler (NEB) and the Cost of Boiler Heat Production (CBHP) are both taken as the objective functions, and the excess air ratio (EAR) is taken as the input variable. Secondly, the relationship between the objective functions and the EAR is established based on the model of variable working conditions. Finally, the implicit enumeration algorithm is employed to obtain the optimal EAR value that optimizing the objective functions, under the constraints that the EAR must be committed. Three cases of boiler load, such as 100%, 75% and 50%, are studied. The results show that NEB has the optimal value by using different EAR values. The cost of the boiler thermo genesis is affected not only by the EAR, but also by the coal price and the pool purchase price of thermal power plants. When the pool purchase price is fixed, the EAR has the decreasing trend corresponding to the lowest cost of the boiler thermo genesis in keeping with the economics laws. The calculation result was strongly by the result of the performance optimization test of the boiler.
机译:本文通过以下三步策略研究了燃煤锅炉过量空气比的优化问题。首先,锅炉(NEB)的净效率和锅炉热量生产成本(CBHP)被视为目标函数,并且过量的空气比(耳)作为输入变量。其次,基于可变工作条件的模型建立目标函数与耳朵之间的关系。最后,采用隐式枚举算法来获得优化目标函数的最佳耳值,在必须提交耳朵的约束下。研究了锅炉负荷的三种情况,如100%,75%和50%。结果表明,NEB通过使用不同的耳值具有最佳值。锅炉Thermo Genesis的成本不仅受到耳朵的影响,还受煤价和热电厂的池代购价格影响。当池购买价格固定时,耳朵具有与锅炉热创世纪的最低成本相对应的趋势,以与经济学法保持相比。通过锅炉的性能优化测试的结果,计算结果强烈。

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