Agree Walt
You don't have any control.
However, figuring it the other way
dV/dt = L * dI/dt ---> dI/dt = (1/L) dV/dt
Given a lightning strike current (dI/dt) if you increase the inductance you would have to also increase dV/dt. So you get a high voltage change at the point where the inductance increased. That is what I'm looking for, a high change in voltage through the inductor keeping the high voltages out of the salon and up on the mast and rigging where my low impedance path to the surface takes care of it.
So the high dV/dt at the mast base keeps the bottom of the mast at "lightning potential" while the mast support in the salon has a much lower potential. Basically the coil's magnetic field chokes off the current causing a charge pile up at the mast base and a high voltage there.
Thoughts?
You don't have any control.
However, figuring it the other way
dV/dt = L * dI/dt ---> dI/dt = (1/L) dV/dt
Given a lightning strike current (dI/dt) if you increase the inductance you would have to also increase dV/dt. So you get a high voltage change at the point where the inductance increased. That is what I'm looking for, a high change in voltage through the inductor keeping the high voltages out of the salon and up on the mast and rigging where my low impedance path to the surface takes care of it.
So the high dV/dt at the mast base keeps the bottom of the mast at "lightning potential" while the mast support in the salon has a much lower potential. Basically the coil's magnetic field chokes off the current causing a charge pile up at the mast base and a high voltage there.
Thoughts?