Absolutely, Lack of channels in the treads makes standing water a problem. Once my Tacoma did a freeway power slide where I was looking through the driver’s side window instead of the windshield.
Stay under 55 mph and it’s manageable.
There's a reason for this. And it's not necessarily the tire. I'm a pilot, and we learn to calculate hydroplaning speed on the fly.
Dynamic hydroplaning speed is calculated as:
Vp (hydroplaning speed in knots) = the square root of tire PSI x 8.6
So... if your tires are at 35 psi, the square root of that is 5.916, and we multiply that by 8.6 to get 50.87 knots per hour.
Converting 54 knots to mph is 58.5 mph. This is why under 55 mph your tires feel more stable ... because you're under the dynamic hydroplaning speed. Above 58.5 mph at 35 psi your chance of hydroplaning goes up exponentially.
My point is that you may find some slight differences in hydroplaning above the dynamic hydroplaning speed from one model of tire to another, but generally they will all hydroplane (for a given tire size and psi) at the same speed.
And all tires will hydroplane at some point, its inevitable.
Running a lower PSI actually
decreases the speed at which you hydroplane (this is bad, not good) because you're increasing your tire surface area coming into contact with the standing water, giving it more room to contact water surface and slip. A smaller tire footprint would technically have a
higher hydroplaning speed (this is good) because it has a smaller surface area contact patch with the standing water. I.e. smaller tire surface area, lower chance of hydroplaning.
Tires can hydroplane on as little at 1/1000th of an inch of water.
Science class is dismissed.
Edit: Your first sentence about lack of channels causing issues is absolutely correct. They help because (1) they reduce the surface area (contact patch) with the standing water (this doesn't take into account the added surface area from the channels themselves, which actually increase overall tire surface area), and (2) the channels provide an outlet for the standing water.