薄覆冰导线气动力特性风洞试验研究  被引量:4

Wind Tunnel Test on Aerodynamic Characteristic of Conductor with Thin Ice Accretions

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作  者:李海若[1] 郭海超 谢强[1] 

机构地区:[1]同济大学土木工程学院,上海市200092 [2]机械工业第六设计研究院有限公司,郑州市450001

出  处:《电力建设》2013年第3期12-16,共5页Electric Power Construction

基  金:教育部霍英东教育基金会优选资助课题(114021)

摘  要:薄覆冰舞动是一种常见而又难以用传统理论来解释的现象,需采用风洞试验对薄覆冰导线的气动力特性进行研究。根据某工程舞动现场调查结果,设计了3种覆冰厚度导线模型做风洞试验,利用六分量高频天平测得在2种不同流场中准椭圆形覆冰导线模型的平均气动力。通过平均气动力系数的对比分析结果,指出DenHartog系数不适合用来分析薄覆冰导线的舞动特性。在Den Hartog对导线舞动定性分析的理论基础上,提出了2个发生舞动的必要条件。通过试验结果的分析,得到薄覆冰导线可能发生驰振不稳定的风向角。Galloping of conductor with thin ice accretions is a common but unexplained phenomenon. Wind tunnel tests are needed to study the aerodynamic characteristics of conductors with thin ice accretions. Based on the galloping investigation of real transmission lines with ice, three conductor models with different ice thickness are designed and tested in the wind tunnel. The average aerodynamics of quasi-oval shape iced conductor models in two different flow fields are measured by using six-component high-frequency balance. Through the comparison and analysis of average aerodynamic coefficients, Den Hartog coefficient is found not suitable for the analysis on thin ice wire. On the basis of qualitative explanation of Den Hartog to galloping, two necessary conditions of galloping are proposed. Through the analysis of test results, the wind attack angle has been acquired when the conductor gallops with thin ice accretions.

关 键 词:薄覆冰 导线舞动 风洞试验 气动力 驰振不稳定 

分 类 号:TM752.5[电气工程—电力系统及自动化]

 

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