首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >In Situ Characterization of Ash Thermal Conductivity for Three Coal Types Formed Under Oxidizing and Reducing Conditions in a Laboratory Furnace
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In Situ Characterization of Ash Thermal Conductivity for Three Coal Types Formed Under Oxidizing and Reducing Conditions in a Laboratory Furnace

机译:在实验室炉中氧化还原条件下形成的三种煤的灰分热导率的原位表征

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摘要

This work presents in situ measurements of the effective thermal conductivity in particulate coal ash deposits under both reducing and oxidizing environments. Laboratory experiments generated deposits on an instrumented deposition probe of loosely bound particulate ash from three coals generated in a down-fired flow reactor with optical access. An approach is presented for making in situ measurements of the temperature difference across the ash deposits, the thickness of the deposits, and the total heat transfer rate through the ash deposits. Using this approach, the effective thermal conductivity was determined for coal ash deposits formed under oxidizing and reducing conditions. Three coals were tested under oxidizing conditions: two bituminous coals derived from the Illinois #6 basin and a subbituminous Powder River Basin coal. The subbituminous coal exhibited the lowest range of effective thermal conductivities (0.05-0.18 W/m K) while the Illinois #6 coals showed higher effective thermal conductivities (0.2-0.5 W/m K). One of the bituminous coals and the subbituminous coal were also tested under reducing conditions. A comparison of the ash deposits from these two coals showed no discernible difference in the effective thermal conductivity based on stoichiometry. All experiments indicated an increase in effective thermal conductivity with deposit thickness, probably associated with deposit sintering.
机译:这项工作提出了还原和氧化环境下颗粒煤灰沉积物中有效热导率的原位测量。实验室实验在仪器沉积探针上产生了松散结合的颗粒灰分,这些颗粒灰分是由带有光通道的向下燃烧流反应器中产生的三种煤产生的。提出了一种方法,用于现场测量灰烬沉积物之间的温度差,沉积物的厚度以及通过灰烬沉积物的总传热速率。使用这种方法,可以确定在氧化和还原条件下形成的煤灰沉积物的有效导热系数。在氧化条件下测试了三种煤:来自伊利诺伊州6号盆地的两种烟煤和粉末河盆地的次烟煤。次烟煤的有效热导率范围最低(0.05-0.18 W / m K),而伊利诺伊州#6煤的有效热导率较高(0.2-0.5 W / m K)。还在还原条件下测试了一种烟煤和次烟煤。对这两种煤的灰分沉积物的比较表明,基于化学计量的有效导热率没有明显区别。所有实验均表明有效导热系数随沉积物厚度的增加而增加,这可能与沉积物烧结有关。

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