石油化工设备技术 ›› 2026, Vol. 47 ›› Issue (5): 11-16,10.doi: 10.3969/j.issn.1006-8805.2026.05.002

• 静设备 • 上一篇    

大型塔器的轻量化设计

杨良瑾,谢智刚,张喆光   

  1. 中国石化工程建设有限公司,北京 100102
  • 收稿日期:2025-10-11 修回日期:2026-07-27 接受日期:2026-08-31 出版日期:2026-09-15 发布日期:2026-09-16
  • 作者简介:杨良瑾,男,1998年毕业于北京化工大学化工过程机械专业,工学硕士,长期从事压力容器设计工作,正高级工程师。

Lightweight Design of Large-Scale Tower Vessels

Yang Liangjin, Xie Zhigang, Zhang Zheguang   

  1. SINOPEC Engineering Incorporation, Beijing, 100101
  • Received:2025-10-11 Revised:2026-07-27 Accepted:2026-08-31 Online:2026-09-15 Published:2026-09-16

摘要: 随着炼油、石油化工和煤化工等装置持续向大型化发展,其核心工艺设备——塔器也呈现大型化、重型化趋势。这一趋势对塔器的设计、制造、运输、吊装以及内件安装等环节构成了严峻挑战,进一步凸显了大型塔器轻量化设计的迫切需求与重要性。文章聚焦大型塔器轻量化设计的关键目标,基于大量工程实践数据,从塔体结构优化、高性能材料选用和合理设计方法应用3个维度开展研究,得出采用高效塔内件、高强度材料以及精细化设计方法可显著降低塔器整体质量,并可有效克服因塔器质量过大而带来的制造、运输和吊装等工程难题的结论。同时,针对大型塔器轻量化的设计提出了相应策略,对提升装置经济性与市场竞争力、突破大型设备工程能力瓶颈限制、缩短项目建设周期、提升HSE标准以及推动低碳减排目标的实现具有重要意义。

关键词: 大型塔器, 轻量化, 高效塔内件, 高强度材料, 压力试验方法, 塔器分段设计, 应力分析设计, 内件厚度

Abstract: As refining, petrochemical, coal-chemical and other facilities continue to develop toward large-scale capacity, tower vessels, their core process equipment, are also trending toward larger size and heavier weight. This trend poses significant challenges for tower design, manufacturing, transportation, lifting, and internal component installation, further underscoring the critical need and significance for lightweight design in large-scale tower vessels. This paper focuses on the key objectives of lightweight design for large-scale tower vessels. Based on extensive engineering practice data, research is carried out from three dimensions: optimization of tower structure, selection of high-performance materials and application of appropriate design methods. It is concluded that the adoption of high-efficiency tower internals, high-strength materials and refined design methods can significantly reduce the overall mass of towers and effectively overcome engineering challenges such as manufacturing, transportation, and hoisting arising from excessive vessel weight. Meanwhile, corresponding strategies are proposed for the lightweight design of large-scale towers, which are of great significance for improving the economic efficiency and market competitiveness of plants, breaking through bottlenecks in the engineering capacity of large-scale equipment, shortening project construction cycles, enhancing HSE standards and promoting the achievement of low-carbon emission reduction targets.

Key words: large-scale tower vesselllightweight; high-efficiency tower internalslhigh-strength materialslpressure test methodlsectional design of towerlstress analysis designlthickness of internals