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Effect of creep lifetime on geometric optimization of boiler tubes for thermal power plants

机译:蠕变寿命对热电厂锅炉几何优化的影响

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摘要

In this study, thermomechanical and creep analyses of boiler tubes are performed and a procedure for cost-based optimization of boiler tube geometries is presented. First, analytical thermal convection and conduction heat transfer under ultra-supercritical (USC) and advanced ultra-supercritical (A-USC) conditions as well as numerical evolution of creep stresses in the boiler tube are obtained. Subsequently, the results are used to calculate the thermal efficiency and creep lifetime of austenitic stainless steel Super 304H and Ni-based alloy Nimonic alloy 80A. The geometric parameters of the boiler tube are then optimized to minimize the total cost related to the boiler tubes including capital investment and operational costs. Comparing with the conventional approach which assumes a fixed creep lifetime for simplicity, the present results also showed that creep lifetime assessment is important and should be included in the optimization. This optimization procedure can also be applied to other boiler tube materials under various operating conditions of thermal power plants.
机译:在该研究中,提出了锅炉管的热机械和蠕变分析,并提出了一种用于锅炉管几何形状的成本优化的过程。首先,获得超超临界(USC)和高级超超临界(A-USC)条件下的分析热对流和导通热传递以及锅炉管中蠕变应力的数值演化。随后,结果用于计算奥氏体不锈钢超304h和Ni基合金弯曲合金80a的热效率和蠕变寿命。然后优化锅炉管的几何参数以最小化与锅炉管相关的总成本,包括资本投资和运营成本。与用于简单起见的固定蠕变寿命的传统方法相比,目前的结果还表明蠕变寿命评估是重要的,并且应包括在优化中。在热电厂的各种操作条件下,该优化过程也可以应用于其他锅炉管材料。

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