1engineer
Moderator
Deep in another thread with a title totally unrelated to tires a question came up about tire width and performance off road. I posted an answer, and because it contains general knowledge some of you who go off road might want to have I will repost it into it's own thread.
Let me attempt to explain:
First off, actual tread width, not section width, would be all that matters for specifying a tire for a surface like sand. I took a few minutes last night and measured my stock 265 tires on my TE and came up with (approximate) these dimensions:
Section width - 10.43" (calculated)
Tread width - 7.50" (measured)
Tread longitudinal contact length - 7.50" (measured)
35 psi in the tire
Now these are measured with a tape measure so they are close but not perfect.
If I take these measurements and also use a curb weight of 4,750 lbs then it is easy to come up with a ground pressure. There is no magic number for ground pressure. The thinner the tire and the higher the inflation pressure, the higher the ground pressure is going to be with respect to the weight of the vehicle.
After doing the calculations I came up with a force of about 21 lbs per square inch of ground. Is this good? Bad? Indifferent? It all depends. See, a passenger vehicle is a design compromise, along with most components on a passenger vehicle. You have to design for all kinds of conditions, and that includes all the different surfaces the vehicle will be driven.
Knowing that, operating on different surfaces (snow, ice, blacktop, mud, sand, etc) optimally will require different ground pressures for the best possible performance. Here is an extreme comparison: A bicycle in loose sand or a 4Runner with 9" wide tires in loose sand. My bike exerts about 35 lbs per square inch and a 4runner with tires that have a 9" wide tread exerts about 17.6 lbs of force per square inch. Have you ever tried to ride a bike in loose sand? Not easy at all but the 4runner only exerts HALF the ground pressure the mtn bike does, and the performance is much better. Basically what a wider tire does is offer FLOTATION over the desired surface. Airing a tire down will increase the contact patch of the tire (not wider but longer) and reduce ground pressure so the tires will not "sink" into the surface. It will also provide increased contact area for traction in loose ground. I did a few examples:
Stock OEM tire with 7.5" of tread = 21 lbs of ground pressure
9" tread - 17.6 lbs of ground pressure
11" tread - 14.4 lbs of ground pressure
If you have seen pictures of the Arctic Toyota trucks with the huge tires they are running just a few lbs of ground pressure, so they can "float" over the deep snow, much like strapping snowshoes to your feet. Conversely, if you have watched a WRC car making a run on ice and snow they are running very thin tires to increase their ground pressure and improve traction.
Bottom line is ground pressure is very important to a vehicle in different conditions, and different conditions require different ground pressure to have optimal traction. In the case of this application and specification from the OP, the park service has probably determined the tire width to keep from having to pull all the dumba$$s out of the sand when they get stuck. Hope this helps.
Let me attempt to explain:
First off, actual tread width, not section width, would be all that matters for specifying a tire for a surface like sand. I took a few minutes last night and measured my stock 265 tires on my TE and came up with (approximate) these dimensions:
Section width - 10.43" (calculated)
Tread width - 7.50" (measured)
Tread longitudinal contact length - 7.50" (measured)
35 psi in the tire
Now these are measured with a tape measure so they are close but not perfect.
If I take these measurements and also use a curb weight of 4,750 lbs then it is easy to come up with a ground pressure. There is no magic number for ground pressure. The thinner the tire and the higher the inflation pressure, the higher the ground pressure is going to be with respect to the weight of the vehicle.
After doing the calculations I came up with a force of about 21 lbs per square inch of ground. Is this good? Bad? Indifferent? It all depends. See, a passenger vehicle is a design compromise, along with most components on a passenger vehicle. You have to design for all kinds of conditions, and that includes all the different surfaces the vehicle will be driven.
Knowing that, operating on different surfaces (snow, ice, blacktop, mud, sand, etc) optimally will require different ground pressures for the best possible performance. Here is an extreme comparison: A bicycle in loose sand or a 4Runner with 9" wide tires in loose sand. My bike exerts about 35 lbs per square inch and a 4runner with tires that have a 9" wide tread exerts about 17.6 lbs of force per square inch. Have you ever tried to ride a bike in loose sand? Not easy at all but the 4runner only exerts HALF the ground pressure the mtn bike does, and the performance is much better. Basically what a wider tire does is offer FLOTATION over the desired surface. Airing a tire down will increase the contact patch of the tire (not wider but longer) and reduce ground pressure so the tires will not "sink" into the surface. It will also provide increased contact area for traction in loose ground. I did a few examples:
Stock OEM tire with 7.5" of tread = 21 lbs of ground pressure
9" tread - 17.6 lbs of ground pressure
11" tread - 14.4 lbs of ground pressure
If you have seen pictures of the Arctic Toyota trucks with the huge tires they are running just a few lbs of ground pressure, so they can "float" over the deep snow, much like strapping snowshoes to your feet. Conversely, if you have watched a WRC car making a run on ice and snow they are running very thin tires to increase their ground pressure and improve traction.
Bottom line is ground pressure is very important to a vehicle in different conditions, and different conditions require different ground pressure to have optimal traction. In the case of this application and specification from the OP, the park service has probably determined the tire width to keep from having to pull all the dumba$$s out of the sand when they get stuck. Hope this helps.