Your typical US home consumes more than 10,000 KWH per year. So, a 1 MW turbine could produce 2.5 to 3 million KWH per year, depending on your average wind speed. Your 1.9 MW turbine could potentially produce up to 6 million a year. This would equate to around 600 homes. In my little part of the state, we have over 4000 turbines. Some of ours are rated into the mid to upper 2 MW range.
We curtail ours frequently. Our grid won't be able to catch up for several more years. This problem is nationwide. The turbines I worked on in northern Maine had to route their power through western New Brunswick, Canada in order for it to reach southern Maine. They are missing 17 miles of transmission lines in that region. Bottom line, we need more high tension power lines to distribute all this new available energy.
In your part of the country, your highest production comes in the winter months. Your turbines reap the benefits from numerous cold fronts. California gets more production in the summer months. I once clocked a 10 minute average wind speed of 110 MPH in Palm Springs. BTW, never ever approach a wind turbine in icy conditions. The blades act like wings in freezing weather. They can and do begin to accumulate ice at a few degrees above freezing when they are running. We usually shut them down if they begin to ice. They run very inefficiently and become hazardous. They can throw ice up to several hundred feet. Imagine a 3 inch thick, 8 ft long sheet of ice falling 300 ft. It will ruin your day!
As to the usage question, turbines have several systems that draw power when they are not running. They have computer systems, cooling fans, heaters, hydraulic brake pumps, oil pumps, yaw drives, lights, and blade pitch motors. I usually shut down the oil pumps and coolers when I enter the top. This quiets my work environment considerably. At this point, my computer screen shows that I am drawing 1 or 2 KW. As the turbine yaws to stay into the wind, my KW's shoot up to between 8 and 11. My turbine is running 4 500V motors to stay facing into the wind. You are drawing a lot of amperage to rotate a 60 ton machinery room (nacelle). Some blades weigh over 16000 lbs each x3. It takes a lot of power. But once you are up and running, all your power comes from the turbine itself.
If you have more questions, keep 'em coming. There is also a group I belong to, the American Wind Energy Association. Very informative.
http://awea.org/faq