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窑尾系统联接管道内烟气测温误差的分析
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作者 陈晓奇 徐迅 +2 位作者 王俊杰 房晶瑞 汪澜 《水泥》 CAS 2019年第12期1-7,共7页
对五种热电偶,特别是双层遮热罩热电偶对窑尾系统联接管道内烟气测温误差的计算方法进行了推导。根据计算的需要,由联接管道外壁温度计算出了其内壁温度。计算了五种类型热电偶在審尾系统各联接管道位置的烟气测温相对误差d,并与相关计... 对五种热电偶,特别是双层遮热罩热电偶对窑尾系统联接管道内烟气测温误差的计算方法进行了推导。根据计算的需要,由联接管道外壁温度计算出了其内壁温度。计算了五种类型热电偶在審尾系统各联接管道位置的烟气测温相对误差d,并与相关计算和实测结果进行了对比。对热电偶测温误差的主要影响因素进行了简单计算分析。分析结果显示,使用热电偶对窑尾联接管道内烟气进行测温时的读数一般比实际值偏小,各种样式热电偶测温的相对误差范围:普通式为7.20%~16.39%,单层遮热罩式为0.69%~6.34%,单层遮热罩抽气式为0.46%~5.23%,双层遮热罩式为0.07%~2.68%,双层遮热罩抽气式为0.04%〜2.01%。相比普通热电偶,遮热罩抽气式热电偶的测温准确性大幅度提高。最后对实际生产中热电偶的选配提出了合理建议。 展开更多
关键词 窑尾系统联接管道 内壁 烟气测温 遮热罩抽式热电偶 数值计算
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Improved analytic methods for coal surface area and pore size distribution determination using 77 K nitrogen adsorption experiment 被引量:6
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作者 Wang Gongda Wang Kai Ren Tingxiang 《International Journal of Mining Science and Technology》 SCIE EI 2014年第3期329-334,共6页
77 K nitrogen adsorption was the most widely used technique for determining surface area and pore size distribution of coal. Brunauer–Emmett–Teller(BET) and Barrett–Joyner–Halenda(BJH) model are commonly used anal... 77 K nitrogen adsorption was the most widely used technique for determining surface area and pore size distribution of coal. Brunauer–Emmett–Teller(BET) and Barrett–Joyner–Halenda(BJH) model are commonly used analytic methods for adsorption/desorption isotherm. A Chinese anthracite coal is tested in this study using an improved experimental method and adsorption isotherm analyzed by three adsorption mechanisms at different relative pressure stages. The result shows that the micropore filling adsorption predominates at the relative pressure stage from 6.8E 7 to 9E 3. Theoretically, BET and BJH model are not appropriate for analyzing coal samples which contain micropores. Two new analytic procedures for coal surface area and pore size distribution calculation are developed in this work. The results show that BET model underestimates surface area, and micropores smaller than 1.751 nm account for 35.5% of the total pore volume and 74.2% of the total surface area. The investigation of surface area and pore size distribution by incorporating the influence of micropore is significant for understanding adsorption mechanism of methane and carbon dioxide in coal. 展开更多
关键词 77 K nitrogen adsorption BET model BJH model D-A model Langmuir model
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