Modal impact testing for non-destructive evaluation of wood pole transmission lines
Modal impact testing for non-destructive evaluation of wood pole transmission lines
批准号:
485821-2015
负责人:
Rideout, Donald
金额:
$0.94万
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2017
资助国家:
加拿大
项目状态:
已结题
起止时间:
2017-01-01 至 2018-12-31
中文摘要
Nalcor能源公司是纽芬兰和拉布拉多最大的发电公司,目前维护着大约2400公里的木杆输电线路,由大约26000个不同年龄的电线杆组成。由于许多因素,如老化、腐烂、周期性潮湿或冻结,木杆会失去强度。及早发现“危险极点”,以避免对检查人员造成安全隐患,并最大限度地利用防腐处理等纠正措施的机会。低强度的电线杆可能在风和冰载荷下失效,导致级联故障和大面积停电。另一方面,过早拆除电线杆会浪费能源、材料和金钱。现有的商业无损评估(NDE)设备往往会高估旧电线杆的强度,造成危险电线杆使用时间过长。纳尔科能源公司和纪念大学正在进行一项研究计划,以开发基于模态冲击试验的新无损检测方法。初步结果表明,阻尼比(在实验室条件下用模态冲击锤测量)与实验室强度之间存在良好的相关性。拟议的研究阶段将在现场进行极点测试,目的是提高该方法对现实世界条件的鲁棒性。要重新安置的输电线路电线杆将使用便携式现场测试设备进行模态测试,有和没有导体,以便确定电线的影响。然后,这些杆子将被移除并运送到实验室,在一个刚性夹具中进行测试,以量化和帮助建模基础的效果。最后将对极点进行破坏性测试,破坏性测试结果用于基于振动数据创建预测模型。考虑到这样的电极在加拿大大西洋地区约有17万个,在北美约有200万个,研究项目的成功将推动商业市场上多功能和便携式测试程序和设备的发展。
英文摘要
Nalcor Energy, Newfoundland and Labrador's largest power generation utility, currently maintains approximately 2400 km of wood pole transmission lines, consisting of approximately 26000 poles of varying ages. Wooden poles lose strength due to a number of factors such as aging, rot, and cyclical wetting or freezing. It is essential to detect "danger poles" early to avoid safety hazards to inspection personnel, and to maximize the opportunity to apply corrective actions such as preservative treatment. Low strength poles can fail during wind and ice loading, leading to cascade failure and extensive power outages. On the other hand, prematurely removing a pole from service wastes energy, materials and money. Existing commercial non-destructive evaluation (NDE) equipment tends to overpredict strength of old poles, creating the risk of leaving danger poles in service for too long.Nalcor Energy and Memorial University have an ongoing research program to develop new NDE methods based on modal impact testing. Preliminary results show good correlation between damping ratios (as measured with a modal impact hammer under laboratory conditions) and strength in the laboratory. The proposed phase of research will see testing of poles in the field, with the goal of improving the robustness of the method to real-world conditions. Transmission line poles that are to be relocated will be subjected to modal testing, using portable field-test equipment, with and without conductors so that the effect of wires can be determined. The poles will then be removed and transported to the laboratory for testing in a rigid clamp, to quantify and aid in modeling the effect of the foundation. The poles will finally be destructively tested, with the destructive test results used to create prediction models based on vibration data. Given that the number of such poles is approximately 170000 in Atlantic Canada and 2 million in North America, success in the research program will motivate development of versatile and portable test procedures and equipment for the commercial market.
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项目类别:Discovery Grants Program - Individual
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负责人:Rideout, Donald
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依托单位:
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项目类别:Discovery Grants Program - Individual
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批准号:329318-2012
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项目类别:Discovery Grants Program - Individual
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资助金额:$1.46万
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负责人:Rideout, Donald
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依托单位:
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