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煤粉发电厂中用于负荷跟踪运行的过热器设计与多目标动态优化

Design and Multiobjective Dynamic Optimization of Superheaters for Load-Following Operation in Pulverized Coal Power Plants.

作者信息

Le Quang Minh, Ma Jinliang, Bhattacharyya Debangsu, Zitney Stephen E, Burgard Anthony P

机构信息

Department of Chemical and Biomedical Engineering, West Virginia University, Morgantown, West Virginia 26506, United States.

National Energy Technology Laboratory, Pittsburgh, Pennsylvania 15236, United States.

出版信息

Ind Eng Chem Res. 2023 Dec 20;63(1):330-344. doi: 10.1021/acs.iecr.3c02130. eCollection 2024 Jan 10.

Abstract

Pulverized coal power plants are increasingly participating in aggressive load-following markets, therefore necessitating the design and optimization of primary superheaters for flexible operations. These superheaters play a critical role in maintaining the final steam temperature of the steam turbine, but their high operating temperatures and pressures make them prone to failure. This study focuses on the optimal design of future-generation primary superheaters for a fast load-following operation. To achieve this, a detailed first-principles model of a primary superheater is developed along with submodels for stress and fatigue damage. Two single-objective optimization problems are solved: one for minimizing metal mass as a measure of capital cost and another for minimizing pressure drop on the steam side as a measure of operating cost. Since these objective functions conflict, a multiobjective optimization problem is executed using a weighted metric methodology. Results from these optimization studies show that the base case design can violate stress constraints during the aggressive load-following operation. However, by optimizing the design variables, it is possible to not only satisfy tight stress constraints but also achieve the desired number of allowable cycles and adhere to the steam outlet temperature constraint. In addition, the optimized design reduces either the metal mass or the steam-side pressure drop compared to that of the base case design. Importantly, this approach is not limited to primary superheaters alone but can also be applied to similar high-temperature heat exchangers in other applications.

摘要

煤粉发电厂越来越多地参与到具有挑战性的负荷跟踪市场中,因此需要对一次过热器进行设计和优化,以实现灵活运行。这些过热器在维持汽轮机的最终蒸汽温度方面起着关键作用,但它们的高运行温度和压力使其容易出现故障。本研究聚焦于下一代一次过热器的优化设计,以实现快速负荷跟踪运行。为此,开发了一个详细的一次过热器第一性原理模型以及应力和疲劳损伤子模型。求解了两个单目标优化问题:一个是将金属质量最小化作为资本成本的衡量指标,另一个是将蒸汽侧的压降最小化作为运行成本的衡量指标。由于这些目标函数相互冲突,因此采用加权度量方法执行多目标优化问题。这些优化研究的结果表明,基础案例设计在剧烈的负荷跟踪运行期间可能会违反应力约束。然而,通过优化设计变量,不仅可以满足严格的应力约束,还可以实现所需的允许循环次数,并遵守蒸汽出口温度约束。此外,与基础案例设计相比,优化后的设计减少了金属质量或蒸汽侧压降。重要的是,这种方法不仅限于一次过热器,还可应用于其他应用中的类似高温热交换器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b660/10785806/3b534d9fe791/ie3c02130_0001.jpg

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