Gas-insulated equipment(GIE)that utilizes the most potent greenhouse gas sulfur hexafluoride(SF_(6))as insulation and arc-quenching medium has been widely used in the power industry.Seeking eco-friendly insulating gas...Gas-insulated equipment(GIE)that utilizes the most potent greenhouse gas sulfur hexafluoride(SF_(6))as insulation and arc-quenching medium has been widely used in the power industry.Seeking eco-friendly insulating gas with advanced performance for next-generation SF_(6)-free GIE is significant for the“net-zero”goal and sustainable development.In this paper,the utilization,emission,and reduction policies of SF_(6)around the world were summarized first.Then,we systematically reviewed the latest progress in comprehensive performance evaluation of eco-friendly insulating gas in terms of molecular design,dielectric insulation,arc-quenching,stability and decomposition,materials compatibility,biosafety,etc.Further,the representative applications of eco-friendly insulating gas in medium-voltage,high-voltage GIE as well as relevant maintenance-related technologies were highlighted.Accordingly,the existing challenges and future perspectives were proposed,presenting a roadmap to hopefully steer the development of eco-friendly insulating gas and GIE.展开更多
This research was conducted to study the performances of the heat and multilayer reflection insulators used for buildings in South Korea to realize eco-friendly, low-energy-consumption, green construction, and to cont...This research was conducted to study the performances of the heat and multilayer reflection insulators used for buildings in South Korea to realize eco-friendly, low-energy-consumption, green construction, and to contribute to energy consumption reduction in buildings and to the nation's greenhouse gas emission reduction policy (targeting 30% reduction compared to BAUCousiness as usual) by 2020). The heat insulation performance test is about the temperatures on surfaces of test piece. The high air temperature and the low air temperature were measured to determine the overall heat transfer coefficient and thermal conductivity. The conclusions are drawn that the heat transmission coefficients for each type of existing reflection insulator are: A-1 (0.045 W/(m-K)), A-2 (0.031 W/(m.K)), A-3 (0.042 W/(m.K)), A-4 (0.078 W/(m.K)), and the average heat conductivity is 0.049 W/(m-K); The heat conductivity for each type of Styrofoam insulator are 0.030 W/(m.K) for B-l, 0.032 W/(m-K) for B-2, 0.037 W/(m'K) for B-3, 0.037 W/(m.K) for B-4, and the average heat conductivity is 0.035 W/(m'K) regardless of the thickness of the insulator; The heat conductivity values of the multilayer reflection insulators are converted based on the thickness and type C-1 (0.020 W/(m.K)), C-2 (0.018 W/(m.K)), C-3 (0.016 W/(m.K)), and C-4 (0.012 W/(m.K)); The multilayer reflection insulator keeps the indoor-side surface temperature high (during winter) or low (in summer), enhances the comfort of the building occupants, and conducts heating and moisture resistance to prevent dew condensation on the glass-outer-wall surface.展开更多
This paper has researched the insulation characteristics of 10% c-C4F8/N2/CO2 mixtures under lightning impulse voltage by experiment. It is shown that the positive and negative lightning impulse breakdown voltages of ...This paper has researched the insulation characteristics of 10% c-C4F8/N2/CO2 mixtures under lightning impulse voltage by experiment. It is shown that the positive and negative lightning impulse breakdown voltages of 10%c-C4F8/N2/CO2 gas mixtures rise linearly as the electrode gap distance and gas pressure increase and under the same conditions, the positive lightning impulse breakdown voltage of the gas mixtures is always higher than the negative lightning impulse breakdown voltage. As the gas mixtures have a little higher liquefied temperature than SF6 and the comprehensive GWP is about 5% of SF6, and the positive and negative lightning impulse breakdown voltages can both reach 60% of SF6, 10%c-C4F8/N2/CO2 gas mixtures can be applied as insulation gas in electrical equipment such as C-GIS, GIT, GIL and so on.展开更多
SF_6气体由于其优异的电气性能而广泛应用于电力行业,然而,由于其全球变暖潜能值极高,国内外学者在过去的几十年里对SF_6替代气体做了广泛研究,但由于它们都各有缺陷,故很难在实际生产中加以应用。文中以C_5F_(10)O/CO_2混合气体作为主...SF_6气体由于其优异的电气性能而广泛应用于电力行业,然而,由于其全球变暖潜能值极高,国内外学者在过去的几十年里对SF_6替代气体做了广泛研究,但由于它们都各有缺陷,故很难在实际生产中加以应用。文中以C_5F_(10)O/CO_2混合气体作为主要研究对象、以SF_6气体作为对照,研究了混合气体中C_5F_(10)O分压力分别为20 k Pa和40 k Pa、总压力为0.1~0.5 MPa时的工频耐压和雷电冲击(lightning impulse,LI)性能,并分析了其作为SF_6替代气体的可能性。实验结果表明,0.2 MPa的混合气体中混入20 k Pa和40 k Pa的C_5F_(10)O,可分别使混合气体的工频放电电压达到相同气压下SF_6气体的61.89%和81.99%。C_5F_(10)O分压力40 k Pa、总压力0.5 MPa的混合气体正、负极性雷电冲击放电电压分别是0.3 MPa时SF_6气体的88.9%和89.9%。因此,通过增加C_5F_(10)O的含量或提高混合气体的总压力,均可有效提高混合气体的绝缘性能,其中,前者更为有效。展开更多
电力电子变压器长期运行于高频正弦电压下,其绝缘更易受到局部放电作用影响从而导致老化失效。为此以环氧树脂材料为研究对象,模拟电力电子变压器的运行条件,在30 k Hz、4 kV的正弦电压和温度120℃下开展了电热联合加速老化试验,研究了...电力电子变压器长期运行于高频正弦电压下,其绝缘更易受到局部放电作用影响从而导致老化失效。为此以环氧树脂材料为研究对象,模拟电力电子变压器的运行条件,在30 k Hz、4 kV的正弦电压和温度120℃下开展了电热联合加速老化试验,研究了不同老化阶段下绝缘的高频局部放电特征。实验结果表明:高频正弦电压下残余电荷扩散少,放电连续,放电相位范围超过90°,局部放电频繁冲击绝缘材料;随着老化时间的增长,高相位上的最大放电幅值由0.02 V增加到0.03 V,局部放电相位分布谱图(PRPD)中第2簇"三角"特征更为明显,统计参量Sk能较准确地反应绝缘的老化状态;同时,随着绝缘缺陷表面有效起始电子产生概率的变化,放电量和放电次数总体呈上升趋势,局部放电的相位范围向两端扩展。展开更多
基金supported in part by the National Natural Science Foundation of China(Nos.52277144,52107145,and 51907023)the fellowship of China Postdoctoral Science Foundation(No.2022M712446).
文摘Gas-insulated equipment(GIE)that utilizes the most potent greenhouse gas sulfur hexafluoride(SF_(6))as insulation and arc-quenching medium has been widely used in the power industry.Seeking eco-friendly insulating gas with advanced performance for next-generation SF_(6)-free GIE is significant for the“net-zero”goal and sustainable development.In this paper,the utilization,emission,and reduction policies of SF_(6)around the world were summarized first.Then,we systematically reviewed the latest progress in comprehensive performance evaluation of eco-friendly insulating gas in terms of molecular design,dielectric insulation,arc-quenching,stability and decomposition,materials compatibility,biosafety,etc.Further,the representative applications of eco-friendly insulating gas in medium-voltage,high-voltage GIE as well as relevant maintenance-related technologies were highlighted.Accordingly,the existing challenges and future perspectives were proposed,presenting a roadmap to hopefully steer the development of eco-friendly insulating gas and GIE.
基金Project(NRF-2010-0024155) supported by the National Research Foundation of Korea
文摘This research was conducted to study the performances of the heat and multilayer reflection insulators used for buildings in South Korea to realize eco-friendly, low-energy-consumption, green construction, and to contribute to energy consumption reduction in buildings and to the nation's greenhouse gas emission reduction policy (targeting 30% reduction compared to BAUCousiness as usual) by 2020). The heat insulation performance test is about the temperatures on surfaces of test piece. The high air temperature and the low air temperature were measured to determine the overall heat transfer coefficient and thermal conductivity. The conclusions are drawn that the heat transmission coefficients for each type of existing reflection insulator are: A-1 (0.045 W/(m-K)), A-2 (0.031 W/(m.K)), A-3 (0.042 W/(m.K)), A-4 (0.078 W/(m.K)), and the average heat conductivity is 0.049 W/(m-K); The heat conductivity for each type of Styrofoam insulator are 0.030 W/(m.K) for B-l, 0.032 W/(m-K) for B-2, 0.037 W/(m'K) for B-3, 0.037 W/(m.K) for B-4, and the average heat conductivity is 0.035 W/(m'K) regardless of the thickness of the insulator; The heat conductivity values of the multilayer reflection insulators are converted based on the thickness and type C-1 (0.020 W/(m.K)), C-2 (0.018 W/(m.K)), C-3 (0.016 W/(m.K)), and C-4 (0.012 W/(m.K)); The multilayer reflection insulator keeps the indoor-side surface temperature high (during winter) or low (in summer), enhances the comfort of the building occupants, and conducts heating and moisture resistance to prevent dew condensation on the glass-outer-wall surface.
基金supported by National Natural Science Foundation of China (No. 51337006)
文摘This paper has researched the insulation characteristics of 10% c-C4F8/N2/CO2 mixtures under lightning impulse voltage by experiment. It is shown that the positive and negative lightning impulse breakdown voltages of 10%c-C4F8/N2/CO2 gas mixtures rise linearly as the electrode gap distance and gas pressure increase and under the same conditions, the positive lightning impulse breakdown voltage of the gas mixtures is always higher than the negative lightning impulse breakdown voltage. As the gas mixtures have a little higher liquefied temperature than SF6 and the comprehensive GWP is about 5% of SF6, and the positive and negative lightning impulse breakdown voltages can both reach 60% of SF6, 10%c-C4F8/N2/CO2 gas mixtures can be applied as insulation gas in electrical equipment such as C-GIS, GIT, GIL and so on.
文摘SF_6气体由于其优异的电气性能而广泛应用于电力行业,然而,由于其全球变暖潜能值极高,国内外学者在过去的几十年里对SF_6替代气体做了广泛研究,但由于它们都各有缺陷,故很难在实际生产中加以应用。文中以C_5F_(10)O/CO_2混合气体作为主要研究对象、以SF_6气体作为对照,研究了混合气体中C_5F_(10)O分压力分别为20 k Pa和40 k Pa、总压力为0.1~0.5 MPa时的工频耐压和雷电冲击(lightning impulse,LI)性能,并分析了其作为SF_6替代气体的可能性。实验结果表明,0.2 MPa的混合气体中混入20 k Pa和40 k Pa的C_5F_(10)O,可分别使混合气体的工频放电电压达到相同气压下SF_6气体的61.89%和81.99%。C_5F_(10)O分压力40 k Pa、总压力0.5 MPa的混合气体正、负极性雷电冲击放电电压分别是0.3 MPa时SF_6气体的88.9%和89.9%。因此,通过增加C_5F_(10)O的含量或提高混合气体的总压力,均可有效提高混合气体的绝缘性能,其中,前者更为有效。