I found this in the cyclingpeaks forum (by wwhiley....thanks) and this answer my question :
Torque is a measurement of rotational force over distance, typically measured in newton-meters. This can be expressed as T = N*m. Wattage is a measurement of this torque over a unit of time, so W = T/s, or N*m/s. The m/s here is a measure of rotational velocity, and is directly proportional to your cycling cadence. So, to simplify this, your wattage is a factor of the force you apply and your cadence - makes since, since turning a gear faster will generate more watts, and turning a harder gear at the same cadence as an easier gear will also generate more watts.
In terms of what this tells you about your ride, torque quite simply tells you how hard you were pushing on the pedals. When you analyze your data, pull up the power, torque, and cadence lines on your graph, and you will see the relationship. 300 Watts at a cadence of 60rpm requires more torque than 300 Watts at 90rpm, because the rotational distance traveled in 1 second at 90rpm is 1.5 times the distance traveled at 60rpm, and since W = N*m/s, if m increases, then N (the force component) must decrease if W is to stay constant. How this will look in your data is the torque line will generally run below the power line when cadence is higher, but above the power line when cadence is low. This could possibly help you determine your most efficient cadence, or perhaps determine what your cadence/force ratio was when you felt the strongest or weakest during a ride.
For example, I will look for sections of a ride where my power was highest in relation to my torque at my threshold heartrate, because this is where I'm being most economical with my strength, which is critical during a race, since high-torque efforts generally mean more muscular exertion and hence more buildup of the harfmul byproducts like lactate. At least, that's how it works for me - I always feel less muscle fatigue putting out 300W at 90rpm than I do at 60rpm.