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水厂运营效率提升策略研究
Research on the Strategy of Improving the Operational Efficiency of Water Plant

DOI: 10.12677/fia.2025.141007, PP. 52-61

Keywords: 水厂运营,绩效评价体系,效率提升,流程优化,技术创新,管理策略
Water Plant Operation
, Performance Evaluation System, Efficiency Improvement, Process Optimization, Technological Innovation, Management Strategies

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Abstract:

随着经济社会的快速发展,水厂运营效率的提升已成为水资源管理的关键。本文通过对水厂运营现状的详尽分析,构建了一个科学的绩效评价体系,并识别了影响运营效率的核心因素。在内部管理和外部环境两个层面详细探讨了影响效率的因素。基于这些分析,本文提出了一系列切实可行的策略,包括对流程的优化方案和运用技术创新以提高效率。研究结果表明,通过这些策略实施,可以有效提升水厂的运营效率。本文的研究不仅填补了水厂运营效率提升策略研究的空白,而且为实践中的效率提升提供了具体的参考和指导,对水厂管理具有重要的现实意义和应用价值。
With the rapid development of the economy and society, enhancing the operational efficiency of water treatment plants has become a key aspect of water resource management. This paper provides a comprehensive analysis of the current operational status of water treatment plants, establishes a scientific performance evaluation system, and identifies the core factors influencing operational efficiency. It discusses the factors affecting efficiency in detail from both internal management and external environment perspectives. Based on these analyses, the paper proposes a series of practical strategies, including process optimization plans and the application of technological innovations to improve efficiency. The research results indicate that implementing these strategies can effectively enhance the operational efficiency of water treatment plants. This study not only fills the gap in the research on strategies for improving the operational efficiency of water treatment plants but also provides concrete references and guidance for practical efficiency enhancement, holding significant relevance and application value for water treatment plant management.

References

[1]  郭杨, 张雪, 蒋福春, 等. 基于碳达峰碳中和目标下供水节能降耗技术研究及管理探讨[J]. 给水排水, 2022, 48(7): 11-15.
[2]  于冰. 缺水城市多水源供水管理的系统分析方法与应用研究[D]: [博士学位论文]. 大连: 大连理工大学, 2019.
[3]  Du, B., Zha, D., Guo, J. and Yu, X. (2023) Optimization of Pump Scheduling in Waterworks Considering Load Balancing Using Improved Genetic Algorithm. Journal of Intelligent & Fuzzy Systems, 44, 9651-9669.
https://doi.org/10.3233/jifs-224245
[4]  孙星星. 环境废弃物基功能化材料的制备及吸附性能研究[D]: [硕士学位论文]. 镇江: 江苏大学, 2023.
[5]  彭冬水, 胡贵州, 黄阳辉. 水泵效率影响因素分析与运行控制节能研究[J]. 中华建设, 2023(12): 169-171.
[6]  Endo, T., Iizuka, T., Koga, H. and Hamada, N. (2023) Governance of Disaster Emergency Wells in Three Cities in Japan Affected by Earthquakes. Hydrogeology Journal, 31, 1147-1163.
https://doi.org/10.1007/s10040-023-02649-y
[7]  夏星宇, 徐乐中. 苏南某水厂深度处理稳定运行效能分析研究[J]. 广东化工, 2019, 46(9): 48-49.
[8]  李文彪. 基于自然解决方案的工业厂区景观设计[D]: [硕士学位论文]. 沈阳: 沈阳建筑大学, 2022.
[9]  Alexander, M.D. (2023) M&A: Foundry Capacity Boosted with Purchase. FF Journal, 4, 58-64.
[10]  张龙, 卢伟. 利用云计算技术提升水厂用能效率分析系统的数据处理能力[J]. 信息产业报道, 2023(11): 178-180.
[11]  孟冠州. 基于引黄水库水的炭砂滤池参数优化与过滤性能研究[D]: [硕士学位论文]. 济南: 山东建筑大学, 2019.
[12]  赵阁阁. 过硫酸盐协同超顺磁性纳米吸附剂强化脱水污泥磷回收效能的研究[D]: [硕士学位论文]. 济南: 山东建筑大学, 2021.
[13]  宋亮, 王正中, 谭剑波, 等. 水厂水泵变频调速技改方案及节能效益分析[J]. 电气传动, 2019, 49(6): 79-82.
[14]  孙汉良. 基于细胞完整性分析优化预氧化-混凝处理含藻水的效能[D]: [硕士学位论文]. 广州: 广州大学, 2023.
[15]  易海军. 水厂运行管理与供水安全问题研究[J]. 中国房地产业, 2021(6): 196, 198.

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