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首页> 外文期刊>Journal of Energy Resources Technology >Analysis of Fouling Degree of Individual Heating Surfaces in a Pulverized Coal Fired Boiler
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Analysis of Fouling Degree of Individual Heating Surfaces in a Pulverized Coal Fired Boiler

机译:煤粉锅炉各个受热面的结垢度分析

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The paper presents the method of fouling degree evaluation of the heating surfaces in pulverized coal-fired boiler during coal combustion and biomass co-combustion. The fouling processes have a negative impact on the boiler operation by reducing the steam outlet temperature, increasing the mass flow rate of cooling spray water, and may be the reason for overheating of the superheater (SH) tube material. This leads to a reduction of the boiler efficiency and can cause shortening of a lifetime as well as damage of boiler heat exchangers, in particular, the steam SH. The basis of fouling degree assessment method are the dimensionless coefficients, which represent current values of heat absorbed by an individual heat exchanger in comparison to the value for a clean surface. The coefficients are determined based on the calculated heat power of individual heat exchanger taking into account the adjustment resulting from the flue gas temperature inside a combustion chamber. The results of the analysis showed a significant reduction of the amount of heat absorbed by the convection SH during continuous boiler operation. The next important conclusion is a large increase of the heat amount transferred to the radiant SH, which may result in exceeding the permissible temperature of the tube material. The proposed method together with on-line monitoring system installed on the boiler is used to calculate the fouling degree of individual heating surfaces. Accurate monitoring of boiler heating surface conditions can be used to optimize soot blowers operation and finally to improve process efficiency.
机译:提出了煤粉燃烧和生物质混合燃烧过程中粉煤锅炉受热面结垢程度的评价方法。结垢过程会降低蒸汽出口温度,增加冷却喷淋水的质量流量,从而对锅炉运行产生负面影响,并且可能是过热器(SH)管材料过热的原因。这导致锅炉效率的降低,并且可能导致寿命的缩短以及锅炉热交换器,特别是蒸汽SH的损坏。结垢度评估方法的基础是无量纲系数,该系数代表与清洁表面的值相比,单个热交换器吸收的热量的当前值。系数是根据计算出的各个热交换器的热功率确定的,其中要考虑到燃烧室内烟气温度所引起的调节。分析结果表明,在连续锅炉运行期间,对流SH吸收的热量显着减少。下一个重要的结论是传递到辐射SH的热量的大量增加,这可能导致超出管材的允许温度。该方法与锅炉上安装的在线监测系统一起用于计算单个受热面的结垢程度。准确监测锅炉受热面状况可用于优化吹灰器的运行并最终提高工艺效率。

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