首页> 外文会议>Annual international conference on incineration and thermal treatment technologies >A GENERAL EXCEL/VBA COMPUTER CODE FOR RAPID CALCULATION OF TEMPERATURE AND PRODUCT SPECIES WITH C-H-O-N-S FUELS
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A GENERAL EXCEL/VBA COMPUTER CODE FOR RAPID CALCULATION OF TEMPERATURE AND PRODUCT SPECIES WITH C-H-O-N-S FUELS

机译:具有C-H-O-N-S燃料的快速计算温度和产品种类的一般Excel / VBA计算机代码

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A general calculation procedure has being developed that permits very rapid calculation of general fuel-air combustion with many parameter variations. The program calculations are via Excel/VBA with immediate graphics of the parameter effects on the results. Thus, an extensive range of parameter effects may be quickly investigated and assessed. The very-general fuel is specified by way of its C-H-O-N-S content and additional water content and the "air" by way of the volume percent of oxygen, and the other component of "air" (nitrogen and/or carbon dioxide), each specified by the user. The temperature of each inlet (fuel and "air") is specified by the user. The methodology and computer code takes as input also the equivalence ratio. Then, results of adiabatic flame temperature are calculated along with the equilibrium product species both with and without dissociation. Alternatively, the products temperature may be specified and the heat transfer in the combustor is then calculated. The computer code is very user friendly, with automatic nested loops for parameter variation and automatic generation of graphs, which are particularly useful in assessing the particular process under consideration. It has application directly to the new trend toward high temperature air combustion processes, for which some useful results are generated and discussed.
机译:已经开发了一般计算过程,其允许与许多参数变化的一般燃料 - 空气燃烧计算。程序计算通过Excel / VBA,即时参数效果的立即图形。因此,可以快速研究和评估广泛的参数效果。通过其氧含量和额外的含水量和“空气”的氧气百分比和额外的燃料,以及每种指定的“空气”(氮气和/或二氧化碳)的其他组分来规定的非常一般的燃料。由用户。每个入口(燃料和“空气”)的温度由用户指定。方法和计算机代码也是输入的等效率。然后,将绝热火焰温度的结果与均衡的产品物种一起计算,无论是否有解离。或者,可以指定产品温度并且然后计算燃烧器中的热传递。计算机代码非常用户友好,具有自动嵌套环路,用于参数变化和自动生成图形,这对于评估所考虑的特定过程特别有用。它直接应用于高温空气燃烧过程的新趋势,为此产生了一些有用的结果。

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