首页> 外文会议>Proceedings of the ASME power conference 2009 >PREDICTION OF PERFORMANCE FROM PRB COAL FIRED IN UTILITY BOILERS WITH VARIOUS FURNACE AND FIRING SYSTEM ARRANGEMENTS
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PREDICTION OF PERFORMANCE FROM PRB COAL FIRED IN UTILITY BOILERS WITH VARIOUS FURNACE AND FIRING SYSTEM ARRANGEMENTS

机译:用各种炉膛和燃烧系统布置预测公用事业锅炉中PRB煤的性能

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Present regulatory requirements enforces the modification of the firing modes of existing coal-fired utility boilers and the use of coals different from those originally designed for these boilers. The reduction of SO_2 and NO_x emissions were the primary motivation for these changes. However, economic considerations played a major role too. Using sub-bituminous coals has become an important solution for emissions compliance due to their unique constituents and combustion characteristics; these coals are often referred to as enviro coals. Powder River Basin (PRB) Coals are classified as sub-bituminous ranked coals. Unlike higher ranked bituminous coals, which have tight pore structures that limit the amount of moisture they could hold, low rank coals, such as PRB coals, have looser pore structure and additional moisture retention capacity. PRB coals differ in many properties from those of the commonly burned bituminous coals, including low heating value, low fusion temperature, and high moisture content. However, PRB coals have low sulfur content and are relatively low cost. They can also lower NO_x emission from power plants due to higher volatile content. When power plants switch from the designed coal to a PRB coal, operational challenges, including transportation, handling, storage, and combustion, were encountered. A major problem faced when using PRB coals is severe slagging and excess fouling on the heating surface. Not only is there an insulating effect from deposit, but there is a change in reflectivity of the surface. Excess furnace fouling and high reflectivity ash may cause reduction of heat transfer in the furnace, which results in higher furnace exit gas temperatures (FEGT), especially with opposite wall burners and with single backpass. Higher FEGT usually result in higher stack gas temperature and increasing in the reheater spray flow and therefore decreasing the boiler efficiency with higher heatrnrate of the unit. The modification of an existing unit for firing of PRB coals is confined to- and constrained by- existing equipment. All successful conversions happen when in the design phase of a project the following parameters are evaluated: (1) capacities or limitations of furnace size, (2) firing system type and arrangement, (3) heat transfer surface, (4) pulverizers, (5) sootblowers, (6) fans, and (7) airheaters. In the present study we used a comprehensive methodology to predict the behavior of three PRB coals fired in a 575MW T-fired boiler.
机译:当前的法规要求强制修改现有燃煤公用锅炉的燃烧方式,并使用与最初为这些锅炉设计的煤不同的煤。减少SO_2和NO_x排放是这些变化的主要动力。但是,经济因素也起着重要作用。由于亚烟煤的独特成分和燃烧特性,使用亚烟煤已成为实现排放合规的重要解决方案。这些煤通常被称为环保煤。粉末河盆地(PRB)煤被分类为亚烟煤。与较高等级的烟煤具有紧密的孔结构限制了它们所能容纳的水分的量不同,低等级的煤(例如PRB煤)具有较松散的孔结构和附加的保水能力。 PRB煤的许多特性与通常燃烧的烟煤的特性不同,包括低热值,低熔融温度和高水分含量。但是,PRB煤的硫含量低且成本较低。由于挥发物含量较高,它们还可以降低发电厂的NO_x排放量。当电厂从设计的燃煤转换为PRB燃煤时,会遇到运输,搬运,存储和燃烧等运营挑战。使用PRB煤时面临的主要问题是严重的结渣和受热面上的积垢。不仅沉积物具有绝缘作用,而且表面的反射率也发生变化。过多的炉子结垢和高反射率的灰烬可能会导致炉子内的传热减少,从而导致较高的炉子出口气体温度(FEGT),尤其是在相对的壁式燃烧器和单回程情况下。较高的FEGT通常会导致较高的烟囱气体温度,并增加再热器的喷雾流量,因此,随着装置的较高热量降低锅炉效率。对现有PRB煤燃烧装置的改造仅限于现有设备并受其限制。当在项目的设计阶段评估以下参数时,所有成功的转换都将发生:(1)窑炉容量或限制,(2)燃烧系统类型和布置,(3)传热表面,(4)粉碎机,( 5)吹灰器,(6)风扇和(7)空气加热器。在本研究中,我们使用一种综合的方法来预测在575兆瓦T型锅炉中燃烧的三种PRB煤的行为。

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