HCPD-9209
Partial discharge detector
More details HCPD-9209 The partial discharge inspection instrument is a multi-functional handheld instrument. It is based on geoelectric wave, ultrasonic wave, ultra-high frequency and high frequency current detection methods. It tests the partial discharge condition of the equipment and can read out the partial discharge amplitude and map waveform. It can provide The storage and readout functions of two-dimensional and three-dimensional maps can better evaluate the partial discharge situation of electrical equipment. Inductive voltage test series for partial discharge detection
HCPD-2000
Ultrasonic local discharge
inspection instrument
More details HCPD-2000 ultrasonic partial discharge inspection instrument is a detection device that collects abnormal ultrasonic signals of power lines and diagnoses hidden dangers of power line faults through software analysis. It is also suitable for the detection of partial discharges of insulators, cable heads, high-voltage bushings, CT/PT, lightning arresters, switches, etc. This device can determine the location and type of hidden faults without power outages. Inductive voltage test series for partial discharge detection
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HCPD-9209 Partial discharge inspection instrument HCPD-2000 Ultrasonic partial discharge inspection instrument HCPD-9109P Ultrasonic Partial Discharge Tester HCPD-9104 Partial Discharge Comprehensive Analyzer HCR3102A Transformer DC resistance tester HCR3103C Transformer DC resistance tester Click on the name to view details

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3108, 2021

10kV电网单相接地故障-单相接地故障的特征

(1)配电系统发生单相接地故障时,变电所绝缘监察装置的警铃响,“××母线接地”光字牌亮。中性点经消弧线圈接地的,还有“消弧线圈动作”的光字牌。 (2)当生发接故障时,绝缘监察装置的电压表指示为:故障相相电压降低或接近零,另两相电压高于相电压或接近于线电压。如是稳定性接地,电压表指示无摆动,若是电压表指针来回摆动,则表明为间歇性接地。 (3)当发生弧光接地产生过电压时,非故障相电压很高,电压表指针打到头。同时还伴有电压互感器一次熔丝熔断,严重时还会烧坏互感器。 但在某些情况下,配电系统尚未发生接地故障,系统的绝缘没有损坏,而是由于产生不对称状态等,绝缘监察也会报出接地信号,这往往会引起误判断而停电查找。

3108, 2021

10kV电网单相接地故障-单相接地信号虚与实的判断

(1)电压互感器高压熔断器一相熔断报出接地信号时,如果故障相对地电压降低,而另两相电压升高,线电压不变,此情况则为单相接地故障。 (2)变电所母线或架空导线的不对称排列;线路中跌落式熔断器一相熔断;使用RW型跌落式开关控制长线路的倒闸操作不同期等,均会造成三相对地电容不平衡,从而使中性点电压升高而报出接地信号,此情况多发生在操作时,而线路实际上并未发生接地。 (3)在合闸空母线时,由于励磁感抗与对地电抗形成不利组合而产生铁磁谐振过电压,也会报出接地信号。此情况多发生在单相断线,间歇性弧光接地等引起的谐振过电压所致,而系统并未发生接地故障。 (4)当10kV线路遭受雷击而产生弧光接地时,使健全相电压互感器电压突然升高,线圈流过很大励磁涌流,使互感器铁心磁饱和,导致线圈电感减少,感抗降低。当感抗小于容抗,健全相互感器铁心磁饱和后,会使中性点电压升高,这时绝缘监察也报出接地信号,实际上电网并未发生接地。 (5)10kV电网运行中,由于单相导线断线;避降调荷时的人为“缺相运行”;大功率单相设备的投运等,均会造成三相负荷的严重不平衡,从而导致中性点电压升高,此时绝缘监察也报出接地信号,而电网并未发生接地。 (6)10kV线路遭受雷击时,由于电场发生突变,导线上束缚电荷变成自由电荷,向导线两侧以近似光速运动,形成过电压进行波而产生感应过电压。此进行波到达线路避雷器时,当冲击电压大于避雷器放电电压时,间隙击穿放电电压受到限制。但由于避雷器放电间隙伏安特性不一致,阀片非线性系数不同及制造工艺的影响等,使各相避雷器放电电压、残压、灭弧电压不等,导致放电有快有慢而出现三相电压不平衡,从而使中性点电压升高,报出接地信号,然而电网并未发生接地故障。

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