[1]李德艳,张金泽,董智.缠绕管换热器在连续重整装置上的应用[J].石化技术与应用,2022,4:276-278.
LI De-yan,ZHANG Jin-ze,DONG Zhi.Application of coiled pipe heat exchanger in continuous catalytic reforming unit[J].Petrochemical technology & application,2022,4:276-278.
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《石化技术与应用》[ISSN:1009-0046/CN:62-1138/TQ]
- 期数:
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2022年4期
- 页码:
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276-278
- 栏目:
-
- 出版日期:
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2022-07-10
文章信息/Info
- Title:
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Application of coiled pipe heat exchanger in continuous catalytic reforming unit
- 文章编号:
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1009-0045(2022)04-0276-03
- 作者:
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李德艳; 张金泽; 董智
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中国石油大连石化公司 生产技术处,辽宁 大连 116023
- Author(s):
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LI De-yan; ZHANG Jin-ze; DONG Zhi
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Production and Technology Department of Dalian Petrochemical Company,PetroChina,Dalian 116023
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- 关键词:
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连续重整; 换热器; 缠绕管换热器; 结构; 压差; 燃料气; 蒸汽
- Keywords:
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continuous catalytic reforming ; heat exchanger; coiled pipe heat exchanger; structure; differential pressure; fuel gas; steam
- 分类号:
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TE 624.3
- DOI:
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DOI:10.19909/j.cnki.ISSN1009-0045.2022.04.0276
- 文献标识码:
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B
- 摘要:
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对比了缠绕管换热器与板壳式换热器的结构特点,并对连续重整装置进料换热器由板壳式换热器更换为缠绕管换热器后的运行状况进行了分析。结果表明:2种换热器运行1 a后,在重整装置处理量接近的工况下,与板壳式换热器相比,缠绕管换热器的热端温差降低13.6 ℃,换热器总压差降低15.2 kPa,第1反应器燃料气消耗量降低0.90 t/h,3.5 MPa蒸汽消耗量降低15.41 t/h。
- Abstract:
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Structure characteristics of shell-and-plate heat exchanger and coiled pipe heat exchanger were compared, and operation conditions of a continuous catalytic reforming unit of which the feed heat exchanger had been changed from shell-and-plate heat exchanger to coiled pipe heat exchanger were analyzed. The results showed that after both types of heat exchanger was running for 1 a under the same working condition,compared to shell-and-plate heat exchanger,the differential temperature and heat differential pressure of coiled pipe heat exchanger had decreased 13.6 ℃ and 15.2 kPa respectively, and consumption of fuel gas and 3.5 MPa steam had reduced by 0.90 and 15.41 t/h respectively.
参考文献/References
[1] 肖娟,冠简平,王家瑞,等.缠绕管式换热器性能及应用研究进展[J].化工机械,2016,43(4):423-426.[2] 潘洋.重整进料换热器压力降问题解决方案探讨[J].炼油技术与工程,2010,40(3):44-45.[3] 董智,张金泽.连续重整进料板换堵塞对换热效率的影响[J].当代化工研究,2019(9):151.[4] 徐承恩.催化重整工艺与工程[M].北京:中国石化出版社,2014:374.
更新日期/Last Update:
2022-07-10