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Influence of solid particle erosion (SPE) on safety and economy of steam turbines

机译:固体颗粒侵蚀(SPE)对汽轮机安全经济的影响

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摘要

At present, the economic deterioration of the unit due to solid particle erosion (SPE) at the governing stage has attracted widespread attention. Based on the Euler-Lagrange equation and the Finnie erosion model, the influence of SPE on the safety and the efficiency of the unit are numerically analyzed for different types of notches in the governing stage of a 1000 MW ultra-supercritical steam turbine in this article. The results indicate that the total pressure loss coefficient and the outlet steam angle increase as the depth of the notch goes up. And with the rising of the notch depth, the erosion at the rear edge of the rotor blade increases and the isentropic efficiency decreases rapidly. Furthermore, the decline trend of efficiency differs when notch type is different. When the notch depth is 20 mm, the maximum decline of entropy efficiency is 4.06%.
机译:目前,控制阶段的固体粒子侵蚀(SPE)的单位经济恶化引起了广泛的关注。 基于Euler-Lagrange方程和芬尼侵蚀模型,在本文中1000MW超超临界蒸汽汽轮机的控制阶段的不同类型的凹口进行了数量分析了SPE对装置的影响和效率的影响 。 结果表明,随着凹口的深度上升,总压力损失系数和出口蒸汽角度增加。 随着凹口深度的上升,转子叶片后边缘的腐蚀增加,速度效率迅速降低。 此外,当缺口类型不同时,效率的下降趋势不同。 当凹口深度为20毫米时,熵效率的最大下降为4.06%。

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