Maybe he just doesn't have a good intuitive understanding of an inductor?
I don't think anybody has an intuitive understanding of induction! How can the energy flowing through a conductor to create a magnetic field that stores the energy, and that can then case energy to flow through another nearby conductor? it doesn't happen with water in a pipes, so why does it happen with electricity?
The closest analogy to induction that I can think of is a turbine with a flywheel on it, where the energy in the flowing through it converts to kenetic energy stored in the flywheel. If you suddenly block the outflow, the energy stored in the turbine keeps trying to push the fluid, and pressure builds up far higher than the original flow. A transformer is much the same, but instead of the flywheel there is a pump that can move a secondary flow around at a different pressure or rate of flow.
It does happen with water in pipes, the inertia of moving water behaves in a corresponding way -- look up the water hammer effect. And yes, a turbine (specifically, the one in hydraulic analog illustrations that completely blocks flow until the wheel is turning) is a perfect analogy of an inductor. A
hydraulic ram is a perfect component-for-component analogy for a DC-DC boost converter, etc etc. Transformers are much more difficult, but the correct response there is to ditch the water analogy when working with transformers, not to declare the water analogy broken under all conditions*.
Is the universe filled with little turbines? not really, and so the analogy falls apart pretty quickly. 
The analogy is from inductor to turbine, energy in magnetic field to kinetic energy, and the equations and behaviour line up perfectly, so you have all you need. If you want a deeper understanding of how inductors work, then obviously you need to ditch the water analogy, but the point of the analogy is to understand the behaviour and interactions of the components, not their underlying workings -- even the analogy for a simple wire vs pipe is awful for
that purpose.
It's a lot easier if you ditch the awful water analogy.
You don't like the water analogy, but a lot of people do find it very helpful, especially for starting concepts like current and voltage. I suspect a lot of people dislike it because I see poor analogies suggested often -- open buckets (that disobey KCL) instead of springed-piston-in-pipe for capacitors, etc. But I'm sure there's already a hundred other water analogy debate threads on this forum... * I do support weaning off the water analogy as your confidence grows, since a natural intuitive understanding is always going to be better.