煤炭工程 ›› 2023, Vol. 55 ›› Issue (9): 122-126.doi: 10.11799/ce202309021

• 研究探讨 • 上一篇    下一篇

不同变质程度煤芳香结构对传热特性的影响

王俊红,高宏,刘东   

  1. 1. 晋城蓝焰煤业股份有限公司 成庄矿, 山西 晋城 048000 2. 安徽理工大学 安全科学与工程学院, 安徽 淮南 232001 3. 中煤科工集团沈阳研究院有限公司, 辽宁 抚顺 113122 4. 煤矿安全技术国家重点实验室, 辽宁 抚顺 113122
  • 收稿日期:2022-09-25 修回日期:2022-11-22 出版日期:2023-09-20 发布日期:2023-11-23
  • 通讯作者: 高宏 E-mail:g.h.f.w@163.com

Study on influence of aromatic structure on heat transfer characteristics of coals with different metamorphism degrees

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  • Received:2022-09-25 Revised:2022-11-22 Online:2023-09-20 Published:2023-11-23

摘要:

为了探究不同变质程度煤中芳香微晶结构对煤热输运特性的影响, 选取褐煤、长焰煤、不黏煤、气肥煤、焦煤及贫瘦煤, 采用X 射线衍射仪和激光导热仪测定煤的芳香微晶结构及30~300℃内热扩散系数、比热容和导热系数, 并运用灰色关联方法得到煤中芳香微晶结构参数与热输运特性参数间的相关性。结果表明: 随着变质程度加深, 煤的芳香层片层间距逐渐减小, 而延展度、堆砌高度和有效芳香层片数逐渐增大。随着温度升高, 热扩散系数先减小后增大, 比热容逐渐增大, 煤导热系数先缓慢增大, 210℃后快速增大。此外, 变质程度较高的煤热扩散系数和导热系数较大, 比热容较小, 这是由于煤中芳香层片延展度和层间距对其热输运特性贡献较大。

关键词: 变质程度, 芳香微晶结构, 热扩散系数, 比热容, 导热系数

Abstract:

To study the effect of aromatic micro-crystalline structure in coals with different metamorphic degrees on thermal transport properties of coal, the lignite, long-flame coal, non-stick coal, gas-fat coal, coking coal, and lean coal were selected, and X-ray diffractometer and laser-flash apparatus were adopted to measure aromatic micro-crystalline structure as well as thermal diffusivity, specific heat capacity, and thermal conductivity at 30°C–300°C. The correlation between the parameters of aromatic micro-crystalline structure and thermal conductivity of coals with different metamorphism degrees was obtained by using grey correlation method. Results indicated that, with the deepening of metamorphism degree, the aromatic interlayer spacing of coal gradually decreased, whereas extension length, stacking height, and number of effective aromatic layers gradually enhanced. With the increase of temperature, thermal diffusivity decreased firstly and increased secondly, specific heat capacity enhanced gradually, and the thermal conductivity of coal increased slowly and then swiftly after 210°C. Moreover, the thermal diffusivity and thermal conductivity of coal with higher metamorphism was higher, while the specific heat capacity was lower, this phenomenon can be explained that the extension length and aromatic interlayer spacing of coal contributed greatly to the thermal transport change of coal. The research findings are helpful to understand the heat transport process of coal.

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