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Effect of the Modification of the Start-Up Sequence on the Thermal Stresses for a Microgas Turbine

机译:启动序列对微磁汽轮机热应力的改变的影响

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Microgas turbines (MGT) are an alternative for small-scale energy production; however, their small size becomes a drawback since it enhances the heat transfer among their components. Moreover, heat transfer drives to temperature gradients which become higher during transient cycles like start-up. The influence of different start-up curves on temperature and thermal stresses of a microgas turbine was investigated. Stationary and rotational blades of the turbine were numerically simulated using CFD and FEM commercial codes. Conjugated heat transfer cases were solved for obtaining heat transfer from fluid toward the blades. Changes of temperature gradients within the blades during the start-ups were calculated under transient state with boundary conditions according to each curve to assess accurate thermal stresses calculations. Results showed that the modification of the start-up curves had an impact on the thermal stresses levels and on the time when highest stresses appeared on each component. Furthermore, zones highly stressed were located near the constraints of blades where thermal strains are restricted. It was also found that the curve that had a warming period at the beginning of the start-up allowed reducing the peaks of stresses making it more feasible and safer for the turbine start-up operation.
机译:微磁汽轮机(MGT)是小型能源生产的替代方案;然而,它们的体积小成为缺点,因为它增强了它们的组件之间的传热。此外,传热驱动到温度梯度,在瞬态周期中变得更高,如启动。研究了研究了不同启动曲线对微磁涡轮机的温度和热应力的影响。使用CFD和FEM商业代码进行数值模拟涡轮机的固定和旋转刀片。解决了共轭的传热案例,用于获得从流体朝向叶片的热传递。在瞬态状态下在瞬态状态下计算叶片内的叶片内的温度梯度的变化,其边界条件根据每个曲线来评估精确的热应力计算。结果表明,启动曲线的修改对热应力水平的影响和在每个组分上出现的最高应力时的时间。此外,高度应力的区域位于叶片的约束附近,其中热菌株受到限制。还发现,在启动开始时具有变暖时段的曲线允许减少应力的峰值,使其更加可行并且对涡轮机启动操作更加可行并且更安全。

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