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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Investigation of the Performance of CF3I Gas as a Possible Substitute for SF6
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Investigation of the Performance of CF3I Gas as a Possible Substitute for SF6

机译:CF3I气体可替代SF6的性能研究

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Our research has investigated the use of CF3I, which has lower Global Warming Potential (GWP), as a substitute gas for SF6. The use of pure CF3I in gas insulated switchgear (GIS) and gas circuit breakers (GCB) is difficult because liquid CF3I has a high boiling point. We have therefore mixed CF3I with CO2 or N2. By investigating the decomposed gas after a current interruption, we have shown that the iodine density from CF3I-CO2(30%-70%) is about 1/3 of that of pure CF3I. In addition, no fluorine was detected from the gas mixture. Our investigation of the breakdown voltage characteristics has shown that the dielectric strength of CF3I-CO2 (30%-70%) is about 0.75 to 0.80 times that of SF6. In breaker terminal fault (BTF) and short line fault (SLF) interruption, CF3I-CO2 is superior to CF3I-N2. Because of the high boiling point of CF3I, the proportion of CF3I should be small. In BTF interruption, the performance approximates to that of pure CF3I when the proportion of CF3I exceeds 30%. Similarly, the SLF interruption performance approximates to that of pure CF3I when the proportion of CF3I exceeds 20%.
机译:我们的研究调查了具有较低全球变暖潜势(GWP)的CF3I作为SF6的替代气体的用途。由于气体CF3I的沸点高,因此很难在气体绝缘开关设备(GIS)和气体断路器(GCB)中使用纯CF3I。因此,我们将CF3I与CO2或N2混合。通过研究电流中断后的分解气体,我们发现CF3I-CO2中的碘浓度(30%-70%)约为纯CF3I的碘浓度的1/3。另外,从混合气体中未检测到氟。我们对击穿电压特性的研究表明,CF3I-CO2的介电强度(30%-70%)约为SF6的0.75至0.80倍。在断路器端子故障(BTF)和短线故障(SLF)中断中,CF3I-CO2优于CF3I-N2。由于CF3I的沸点高,因此CF3I的比例应小。在BTF中断中,当CF3I的比例超过30%时,性能近似于纯CF3I。类似地,当CF3I的比例超过20%时,SLF中断性能近似于纯CF3I。

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