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Effect of NaCl Solution and Temperatures on Water Treeing Propagation in XLPE Underground Cable for Medium Voltage

机译:NaCl溶液和温度对XLPE中压地下电缆中水树传播的影响。

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Water tree has been studied for many years due to it is the cause of insulation failure in HV Cross-Link Polyethylene (XLPE) cable. The insulation failure was mostly associated with the presence of ionic solutions in water treeing. This paper presents the study results on the effect of NaCl ionic solution and temperature to water treeing propagation in HV XLPE cable. A 22 KV XLPE HV underground cable using in the distribution system of Provincial Electricity Authority (PEA) of Thailand was used as a testing specimen. The study was performed by dip testing specimens in 0.1 mol/L of NaCI ionic solution with difference temperature, i.e., ambient temperature, 50 °C, and 70 °C, respectively. Testing specimens were subjected to 24 kV 50 Hz during the testing period for 1000 hours and 2000 hours. A comparative study of the effects of relative permittivity, bulk conductivity, and behavior of water treeing was presented. The experimental results show that at ambient temperature of 50 °C and 70 °C for 1000 hrs. However, for 2000 hrs., water treeing propagation was not similar at 1000 hrs. Such results may be due to the role of the testing period. The trend of water treeing propagation is faster than at 1000 hrs.
机译:水树已被研究了很多年,因为它是HV交联聚乙烯(XLPE)电缆绝缘失效的原因。绝缘失效主要与水树中离子溶液的存在有关。本文介绍了NaCl离子溶液和温度对HV XLPE电缆中水树传播的影响的研究结果。使用在泰国省电力管理局(PEA)的配电系统中使用的22 KV XLPE HV地下电缆作为测试样本。通过在0.1 mol / L的NaCl离子溶液中分别以不同的温度(即环境温度,50°C和70°C)浸入试样来进行研究。在测试期间,使测试样品经受24 kV 50 Hz 1000小时和2000小时。提出了对相对介电常数,体积电导率和水生树行为的影响的比较研究。实验结果表明,在50°C和70°C的环境温度下持续1000 hr。但是,在2000小时内,水生树木在1000小时内的繁殖情况并不相似。这样的结果可能是由于测试期间的作用。水树传播的趋势快于1000小时。

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