Downhole vibratory apparatus
The present disclosure is for a vibratory downhole rotary apparatus. The apparatus includes a cylindrical hollow body, a stator disposed within the cylindrical hollow body and a rotor disposed within the stator. The apparatus also includes a flow resistance system to vary the resistance of fluid flow through the apparatus to increase and decrease backpressure across the apparatus.
1. A vibratory downhole rotary apparatus, the apparatus comprising:
a cylindrical hollow body having a first end and a second end;
a stator disposed within the cylindrical hollow body;
a rotor rotatably disposed within the stator, the rotor having an internal passageway disposed therein; and
a flow resistance system to vary the resistance of fluid flow through the apparatus to increase and decrease backpressure across the apparatus, the flow resistance system includes a bearing assembly positioned in the second end of the apparatus, the bearing assembly having an upper thrust bearing attached to the rotor that spins and rotates against a lower thrust bearing as the rotor rotates and orbits within the stator, the upper thrust bearing and the lower thrust bearing include fluid passageways that permit fluid to flow from the internal passageway of the rotor into the second end of the apparatus and out of the apparatus.
2. The apparatus of claim 1 wherein the stator is constructed of substantially metallic materials.
3. The apparatus of claim 1 wherein the rotor includes at least one lobe and the stator includes at least one more cavity than the number of lobes on the rotor, the cavities sized to receive at least one lobe of the rotor.
4. A vibratory downhole rotary apparatus, the apparatus comprising:
a cylindrical hollow body having a first end and a second end;
a stator disposed within the cylindrical hollow body;
a rotor rotatably disposed within the stator, a portion of the rotor having an internal passageway in fluid communication with the second end of the cylindrical hollow body;
a fluid port in the rotor to permit fluid to flow from between the stator and rotor to the internal passageway of the rotor; and
a bearing assembly positioned in the second end of the apparatus, the bearing assembly having an upper thrust bearing attached to the rotor that spins and rotates against a lower thrust bearing as the rotor rotates and orbits within the stator, the upper thrust bearing and the lower thrust bearing include fluid passageways that permit fluid to flow from the internal passageway of the rotor into the second end of the apparatus and out of the apparatus.
5. The apparatus of claim 4 wherein the rotor includes at least one lobe and the stator includes at least one more cavity than the number of lobes on the rotor, the cavities sized to receive at least one lobe of the rotor.