1. 上海理工大学能源与动力工程学院, 上海市 杨浦区,200093
2. 中国联合重型燃气轮机技术有限公司, 北京市 昌平区,100020
3. 东南大学能源与环境学院,江苏省,南京市,210096
纸质出版:2025
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茹梦崖, 丁勤卫, 张万福, 等. 基于流-固-热耦合的叶顶密封泄漏与动力特性研究[J]. 中国电机工程学报, 2025,45(17):6863-6873.
RU Mengya, DING Qinwei, ZHANG Wanfu, et al. Study on Leakage and Dynamic Characteristic of Tip Seal Based on Thermal Fluid Structure Interaction[J]. 2025, 45(17): 6863-6873.
茹梦崖, 丁勤卫, 张万福, 等. 基于流-固-热耦合的叶顶密封泄漏与动力特性研究[J]. 中国电机工程学报, 2025,45(17):6863-6873. DOI: 10.13334/j.0258-8013.pcsee.240674.
RU Mengya, DING Qinwei, ZHANG Wanfu, et al. Study on Leakage and Dynamic Characteristic of Tip Seal Based on Thermal Fluid Structure Interaction[J]. 2025, 45(17): 6863-6873. DOI: 10.13334/j.0258-8013.pcsee.240674.
叶顶密封泄漏及稳定性是影响透平机械综合性能的关键。该文建立透平叶顶密封三维流-固-热耦合分析模型,研究转子在离心力、热应力及流场作用力共同影响下的变形、密封流场与密封齿之间流-固-热耦合及两者共同作用对泄漏性能及转子稳定性的影响。结果表明,转子变形的影响使泄漏量减少约58.7%,有效阻尼增大约151%,负切向力绝对值增加,密封性能提升。密封流场与密封齿之间流-固-热耦合导致泄漏量减少约2.3%,有效阻尼减小约27%,负切向力绝对值降低,抑制转子涡动能力降低,不利于系统稳定。同时考虑两者综合影响,泄漏量减少约60.5%,有效阻尼与仅考虑转子变形影响的情况基本一致,密封性能主要受离心力、热应力及流场作用力带来的转子变形影响。
Leakage and stability of the tip seal is critical to the overall performance of the turbomachinery. This paper establishes a three-dimensional thermal fluid structure interaction analysis model for turbine tip seal
and investigates the deformation of rotor under the joint influence of centrifugal force
thermal stress
and flow field force
the thermal fluid structure interaction between the flow field and the seal teeth
and their joint effects on leakage performance and rotor stability. The results show that the effect of rotor deformation reduces the leakage by about 58.7%
increases the effective damping by about 151%
increases the absolute value of negative tangential force
and improves the sealing performance. The thermal fluid structure interaction between the sealing flow field and the sealing teeth leads to a reduction in the leakage of about 2.3%
a decrease in the effective damping of about 27%
a decrease in the absolute value of the negative tangential force
and a decrease in the ability to inhibit rotor swirl
which is not conducive to the stability of the system. Considering the combined effect of both at the same time
the leakage is reduced by about 60.5%
the effective damping is basically the same as that of the case where only the effect of rotor deformation is taken into account
and sealing performance is mainly affected by the rotor deformation brought about by the centrifugal force
thermal stresses
and the force of the flow field.
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