Wind turbine and bearing arrangement therefor
A bearing arrangement for a wind turbine includes a bearing and a bearing housing. The bearing housing defines an interior space wherein the bearing is accommodated. A discharge opening is provided for discharging lubricant from the interior space. A pipe system includes a fluidic connection with the discharge opening. The pipe system includes a first part inclining upwardly to a predetermined height relative to the discharge opening to throttle a lubricant flow out of the interior space.
1 . A bearing arrangement for a wind turbine, the bearing arrangement comprising:
a bearing;
a bearing housing defining an interior space for accommodating said bearing therein;
a discharge opening for discharging lubricant from said interior space;
a pipe system providing a fluidic connection with said discharge opening;
said pipe system including a first part inclined upwardly to a predetermined height relative to said discharge opening to throttle a lubricant flow out of said interior space; and,
said bearing arrangement defining a second opening arranged above said discharge opening.
2 . The bearing arrangement of claim 1 , wherein at least one of said bearing housing and said pipe system defines said discharge opening.
3 . The bearing arrangement of claim 1 , wherein said pipe system is arranged at least partly outside of said interior space and/or inside said interior space.
4 . The bearing arrangement of claim 1 , wherein said pipe system includes a second part; and, said second part is inclined downwardly and includes an outlet port.
5 . The bearing arrangement of claim 4 , wherein each of said first part and said second part includes a hose.
6 . The bearing arrangement of claim 4 , wherein said first part has a first diameter and said second part has a second diameter greater than said first diameter.
7 . The bearing arrangement of claim 4 , wherein said second part defines an open drain channel.
8 . The bearing arrangement of claim 4 , wherein said pipe system includes a transition part connecting said first part and said second part at said predetermined height.
9 . The bearing arrangement of claim 1 , wherein at least a portion of said pipe system defines an interior surface; and, said interior surface has a predetermined coefficient of friction and/or a predetermined roughness to throttle the lubricant flow out of said discharge opening.
10 . The bearing arrangement of claim 1 , wherein said bearing housing defines a vertical height and said predetermined height of said first part is at least one eighth of said vertical height of said bearing housing.
11 . The bearing arrangement of claim 1 , wherein said discharge opening is located at a lower hemispherical portion of said bearing housing.
12 . The bearing arrangement of claim 8 , wherein said pipe system includes a valve disposed at said transition part and/or a throttle valve to throttle the lubricant flow out of said interior space.
13 . The bearing arrangement of claim 12 , wherein said valve is a breather valve.
14 . The bearing arrangement of claim 1 , further comprising a thermal control module for regulating a temperature of said pipe system.
15 . The bearing arrangement of claim 12 , further comprising a control unit operatively coupled to at least one of said valve, said throttle valve and a heating arrangement.
16 . A wind turbine, comprising:
a nacelle;
a bearing arrangement arranged within said nacelle;
said bearing arrangement including:
a bearing;
a bearing housing defining an interior space for accommodating said bearing therein;
a discharge opening for discharging lubricant from said interior space;
a pipe system providing a fluidic connection with said discharge opening;
said pipe system including a first part inclined upwardly to a predetermined height relative to said discharge opening to throttle a lubricant flow out of said interior space; and,
the bearing arrangement defining a second opening arranged above said discharge opening.