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
Prediction models were proposed to estimate the reduced Townsend ionization coefficient and ionization cross-section.A shape function of the reduced Townsend ionization coefficient curves was derived from the ionizati...Prediction models were proposed to estimate the reduced Townsend ionization coefficient and ionization cross-section.A shape function of the reduced Townsend ionization coefficient curves was derived from the ionization collision probability model.The function had three parameters:the first ionization potential energy,A_(α),and B_(α).A_(α)and B_(α)were related to the molecule symmetry and size.The polarization of molecules could characterize the molecule symmetry.The multi-layer molecular cross-section(MMCS)was proposed to describe the contributions of electrons and molecule radius on different molecule surfaces to collisions.A prediction model of the ionization cross-section was also proposed based on Aα.The molecule parameters were calculated by the Becke3–Lee–Yang–Parr(B3LYP)method and the 6–311G**basis set.We used available data of 30 and 23 gases,respectively,to build the prediction models of reduced Townsend ionization coefficients and ionization cross-sections.The relationships between the molecular parameters Aαand Bαand the ionization cross-section were built up via nonlinear fittings.The determination coefficients R^(2)of Aα,Bα,and the ionization cross-section were 0.877,0.887,and 0.838,respectively.The results showed that the accuracy of models was positively correlated with the molecule symmetry and reduced electric field.This was mainly related to the accuracy of the MMCS model in predicting Aα.The MMCS model needed to be improved to describe the collision direction selectivity caused by the molecule asymmetry.Under a high reduced electric field,that error of Aαhad less influence on the prediction results.However,the prediction results for single atoms with high symmetry were poor.This may be due to the absolute error of the model close to single atoms’reduced Townsend ionization coefficients.The models could provide the basis for gas insulation prediction and discharge calculations,especially for symmetric molecules under a high electric field.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
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.
基金supported by National Natural Science Foundation of China(No.U1966211)National Key R&D Program of China(No.2021YFB2401400)。
文摘Prediction models were proposed to estimate the reduced Townsend ionization coefficient and ionization cross-section.A shape function of the reduced Townsend ionization coefficient curves was derived from the ionization collision probability model.The function had three parameters:the first ionization potential energy,A_(α),and B_(α).A_(α)and B_(α)were related to the molecule symmetry and size.The polarization of molecules could characterize the molecule symmetry.The multi-layer molecular cross-section(MMCS)was proposed to describe the contributions of electrons and molecule radius on different molecule surfaces to collisions.A prediction model of the ionization cross-section was also proposed based on Aα.The molecule parameters were calculated by the Becke3–Lee–Yang–Parr(B3LYP)method and the 6–311G**basis set.We used available data of 30 and 23 gases,respectively,to build the prediction models of reduced Townsend ionization coefficients and ionization cross-sections.The relationships between the molecular parameters Aαand Bαand the ionization cross-section were built up via nonlinear fittings.The determination coefficients R^(2)of Aα,Bα,and the ionization cross-section were 0.877,0.887,and 0.838,respectively.The results showed that the accuracy of models was positively correlated with the molecule symmetry and reduced electric field.This was mainly related to the accuracy of the MMCS model in predicting Aα.The MMCS model needed to be improved to describe the collision direction selectivity caused by the molecule asymmetry.Under a high reduced electric field,that error of Aαhad less influence on the prediction results.However,the prediction results for single atoms with high symmetry were poor.This may be due to the absolute error of the model close to single atoms’reduced Townsend ionization coefficients.The models could provide the basis for gas insulation prediction and discharge calculations,especially for symmetric molecules under a high electric field.
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。