Simulation of turbulent non-premixed combustion in pulverized coal from Kalimantan Indonesia

Agus Prasetyo Nuryadi, Chairunnisa Chairunnisa, Fitrianto Fitrianto
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引用次数: 0

Abstract

A computational simulation was created to investigate pollutants during coal combustion in a Drop Tube Furnace using Kalimantan coal. Previous research has explored Drop Tube Furnace combustion with Kalimantan coal, but lacked an understanding of combustion phenomena and pollutants, which are challenging to observe experimentally. This study utilized three samples of Kalimantan coal, namely RP, MB, and KC, acquired from various mining sources. This research is new study of simulation combustion coal in Drop Tube Furnace using non-premixed turbulent combustion and the Probability Density Function model with structured grid. The study reports on the temperatures and mass fractions of pollutants, including NOX, SO2, and CO2, along the centerline of the domain. The findings show that RP coal produced the highest combustion temperature, while KC coal produced the lowest. MB coal had the highest CO2 mass fraction, KC coal had the highest NOx value, and RP coal had the highest SO2 value.
印尼加里曼丹煤粉湍流非预混燃烧模拟
以加里曼丹煤为原料,建立了滴管炉燃烧过程中污染物的计算模拟。以往的研究已经探索了加里曼丹煤的降管炉燃烧,但缺乏对燃烧现象和污染物的了解,这对实验观察具有挑战性。本研究利用了加里曼丹煤炭的三个样本,即RP, MB和KC,从不同的采矿来源获得。本研究是采用非预混湍流燃烧和结构网格概率密度函数模型模拟落管炉内燃烧煤的新研究。该研究报告了沿区域中心线的污染物(包括NOX, SO2和CO2)的温度和质量分数。结果表明,RP煤的燃烧温度最高,KC煤的燃烧温度最低。MB煤的CO2质量分数最高,KC煤的NOx质量分数最高,RP煤的SO2质量分数最高。
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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