炼油技术与工程 ›› 2023, Vol. 53 ›› Issue (12): 42-47.

• 设计方法 • 上一篇    下一篇

大口径高温高压蒸汽长距离输送管线保温设计方案研究

顾黎东1, 郑建伟1, 施俊林2, 李中丹1   

  1. 1.中国石油化工股份有限公司镇海炼化分公司; 2.中国石油化工股份有限公司天津分公司
  • 收稿日期:2023-09-20 出版日期:2023-12-15 发布日期:2023-12-20
  • 作者简介:顾黎东,高级工程师,1991年毕业于浙江大学电厂热能动力专业,主要从事炼油化工热能动力规划、能源开发和优化利用工作。联系电话:13566354208,E-mail:guld.zhlh@sinopec.com。

Research on insulation design scheme of large-diameter pipelines for long- distance transportation of high-temperature and high-pressure steam

Gu Lidong1, Zheng Jianwei1, Shi Junlin2, Li Zhongdan1   

  1. 1.SINOPEC Zhenhai Refining & Chemical Company; 2.SINOPEC Tianjin Company
  • Received:2023-09-20 Online:2023-12-15 Published:2023-12-20

摘要:

某工程项目要求大口径高温高压蒸汽长距离输送管线在设计工况下的温降为3~5℃/km,针对该严苛的保温要求,研究构建了完整的蒸汽管线多层保温散热损失数学模型。通过模型的大量迭代计算,实现了在不同环境条件下对蒸汽管线不同方式热损失的量化模拟。对气凝胶与传统保温材料进行优化组合,设计了满足工程项目要求的6层气凝胶+2层微孔硅酸钙+聚氨酯的大口径长距离输送蒸汽管线保温方案;对工程施工环节中可能影响保温效果的因素进行了分析,提出了针对性的完善措施。

关键词: 大口径, 高温高压蒸汽, 长距离输送, 管线保温, 复合保温, 导热系数, 气凝胶, 散热损失

Abstract:

A certain engineering project requires a temperature drop of 3~5 ℃/km for large-diameter long-distance pipeline transporting high-temperature and high-pressure steam under design conditions. In response to the strict insulation requirements, a complete mathematical model for multi-layer insulation and heat dissipation loss of steam pipelines has been studied and constructed. Through numerous iterative calculations of the model, the goal of quantitatively simulating heat loss of steam pipeline under different environmental conditions has been achieved. By optimizing the combination of aerogel and traditional thermal insulation materials, the thermal insulation scheme of large-diameter long-distance steam transmission pipeline with 6 layers of aerogel+2 layers of microporous calcium silicate+polyurethane was designed to meet the engineering requirements. The factors that may affect the thermal insulation effect in the construction process were analyzed, and the necessary improvement measures were put forward.

Key words: large-diameter, high-temperature and high-pressure steam, long distance transportation, pipeline insulation, composite insulation, thermal conductivity, aerogel, heat loss