This page explains how a switching-surge study result is converted into a deterministic line-clearance design using \(V_3 = E_m\), CFO equations and gap factors.
Using the statistical insulation strength of tower insulation, a simple deterministic method can be built. This method was used to design the first 500 kV and 765 kV lines; only later was the improved probabilistic method adopted. The deterministic method is the natural starting point — it turns a switching-surge study directly into a strike distance.
This note covers the deterministic design rule and a worked 500 kV example, then the switching-impulse strength of post insulators and the general gap-factor approach that lets the same idea be applied to any gap geometry.