Research graph
References from Calculation of the local ground-level total electric field near a tower in a multi-circuit AC-to-DC conversion project based on an improved upwind finite element method. Local targets link to admitted publications; unresolved targets remain external evidence.
Study on overvoltage in ±200 kV triple-circuit DC transmission lines on the same tower for an AC-to-DC transmission project [J]
2025 · External reference
Research on key technologies of AC-to-DC transmission lines conversion [J]
2016 · External reference
Über die dichteverteilung unipolarer ionenströme[J]
1933 · External reference
Simulation of ion flow field around high voltage direct current transmission line based on finite element iteration method[J]
2020 · External reference
Numerical analysis of AC Ion flow field in corona cage based on finite element method[J]
2019 · External reference
Corona power loss, electric field, and current density profiles in bundled horizontaland vertical bipolar conductors[J]
10.1109/tia.2002.802931 · 2002 · External reference
Calculation of ion flow fields of HVDC transmission lines[45]by the finite element method[J]
10.1109/tpas.1981.316432 · 1981 · External reference
A highly accurate upwind finite element method for ion-flow field based on the error transport equation[J]
2020 · External reference
Study of total electric field of DC lines converted from double-circuit AC lines[J]
2015 · External reference
Effect of humidity and wind speed on DC total electric field and ion current density[J]
2019 · External reference
Calculation of ionized field under HVDC transmission lines considering the influence of wind speed and wire height[J]
2016 · External reference
Study on total electric field and assessment technology of UHVDC lines based on joint distribution of wind speed and direction[J]
2025 · External reference
Numerical investigation of unsteady inlet flowfields [J]
10.2514/3.9584 · 1987 · External reference
Calculation and measurement of ion flow field of UHVDC transmission line at high altitude and high wind speed[J]
2023 · External reference
A history of the electric wind [J]
10.1119/1.1942021 · 1962 · External reference
Calculation of total electric field at the ground level under double-circuit ±800 kV DC transmission lines arranged on same corridor with upstream FEM method[J]
2012 · External reference
Unresolved reference
2021 · External reference
Fast and stable calculation method for ion flow field of UHVDC power transmission lines[J]
2021 · External reference
Unresolved reference
2000 · External reference
Influence of corona space charge on lightning shielding performance of ground wire of UHVDC transmission line [J]
2018 · External reference
Unresolved reference
1955 · External reference
Characterization of ion flow in ±800 kV HVDC transmission line under bidirectional coupling of flow field and ion flow field [J]
2024 · External reference
Corona power loss, electric field, and current density profiles in bundled horizontaland vertical bipolar conductors[J]
10.1109/tia.2002.802931 · ExternalCitation · doi-reference
Calculation of ion flow fields of HVDC transmission lines[45]by the finite element method[J]
10.1109/tpas.1981.316432 · ExternalCitation · doi-reference
A history of the electric wind [J]
10.1119/1.1942021 · ExternalCitation · doi-reference
Numerical investigation of unsteady inlet flowfields [J]
10.2514/3.9584 · ExternalCitation · doi-reference