临海钢厂水电共生海水淡化系统的安全控制策略研究
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作者:
作者单位:

1.重庆大学 材料科学与工程学院,重庆 400044;2.首钢京唐钢铁联合有限责任公司,唐山 063200

作者简介:

吴礼云(1972—),男,教授级高工,博士研究生,主要从事钢铁企业能源环保系统的节能低碳研究,(E-mail) 20220989003@stu.cqu.edu.cn。

通讯作者:

郑忠,女,教授,博士生导师,(E-mail)zhengzh@cqu.edu.cn。

中图分类号:

基金项目:

国家科技支撑计划资助项目(2015BAB10B01)。


Research on safety control strategy for a hydropower-seawater desalination symbiosis system in coastal steel plants
Author:
Affiliation:

1.College of Materials Science and Engineering, Chongqing University, Chongqing 400044, P. R. China;2.Shougang Jingtang United Iron& Steel Co., Ltd., Tangshan, Hebei 063200, P. R. China

Fund Project:

Supported by National Science and Technology Support Program (2015BAB10B01).

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    摘要:

    以临海钢铁企业的水电共生海水淡化新技术系统为对象,针对该系统以汽轮机乏汽作为低温多效蒸发海水淡化的热源,汽轮发电机组与海水淡化机组耦合紧密,联合安全控制难度大、技术缺乏的问题,从优先考虑设备安全运行的角度,设计了适合水电共生工艺的启动逻辑、设备故障下的设备安全联锁保护逻辑、汽轮机低负荷场景下海水淡化装置的模式切换保护逻辑等安全控制策略,可实施对汽轮发电机组和海水淡化装置的双向联锁保护。该技术方案在某沿海钢铁厂的实际运用结果表明,所设计的水电共生安全控制策略,可实现整个系统的安全有序启动;在设备故障场景下能够实现主设备系统的双向安全联锁停机,具备既可在汽轮发电机组故障时连停海水淡化装置,也可以在海水淡化装置故障时连停汽轮发电机组;同时,安全策略能适应钢厂煤气大负荷调节的需要,安全运行效果明显。

    Abstract:

    Focusing on a hydropower-seawater desalination symbiosis system implemented in a coastal steel enterprise, this study addresses the challenges of using exhaust steam from a steam turbine as the heat source for low-temperature multi-effect desalination. In this highly coupled configuration between the steam turbine generator set and the desalination unit, coordinated safety control remains difficult and lacks mature technical solutions. To ensure equipment safety, this paper proposes a set of safety control strategies tailored to the symbiosis process, including start-up logic, equipment safety interlock protection under failure conditions, and mode-switching protection for the desalination unit under low steam turbine load. These strategies establish bidirectional interlock protection between the steam turbine generator set and the desalination unit. Application of the proposed control scheme in an actual coastal steel plant verifies its effectiveness. The strategy enables safe and orderly start-up and achieves bidirectional emergency shutdown when either subsystem fails, allowing desalination shutdown induced by turbine failure and vice versa. Concurrently, it accommodates large-scale load fluctuations in the plant’s gas supply, significantly enhancing operational safety.

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引用本文

吴礼云,郑忠,陈素君,于悦波,陈德磊,张开天.临海钢厂水电共生海水淡化系统的安全控制策略研究[J].重庆大学学报,2026,49(2):19-33.

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  • 收稿日期:2024-07-08
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  • 在线发布日期: 2026-02-03
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