Simple bearing for solar tracking
A bearing for single-axis solar tracking system includes a journal with a tube portion connected to a pair of flanges that are configured as a thrust-stop. The bearing further includes a race removably connected to the journal.
1. A bearing for single-axis solar tracking system, comprising:
a journal including:
a tube portion coupled to a pair of flanges that are configured as a thrust-stop, wherein each flange of the pair of flanges comprises at least one hole and at least one curved thru-slot; and
a race removably coupled to the journal;
wherein the at least one hole of each flange of the pair of flanges is configured for bridging by at least one fastener that holds the journal in a fixed position by removably coupling with a bottom portion of the bearing.
2. The bearing of claim 1 , wherein the pair of flanges are semi-circular and straddle the race.
3. The bearing of claim 2 , wherein the at least one hole of each flange of the pair of flanges is configured for bridging by at least one fastener that holds the journal in a fixed position by removably coupling with a bottom portion of the bearing.
4. The bearing of claim 3 , wherein the at least one hole and the at least one curved thru-slot are further configured as tilt-stops to transfer wind torque to tracking system row posts that are coupled to a bottom portion of the race via at least one tilt-stop fastener.
5. The bearing of claim 3 , wherein the at least one hole and the at least one curved thru-slot are further configured to accept bridging fasteners to pinch a bottom portion of the race upon lifting of a torque tube of the tracking system by wind force under solar panels of the tracking system to increase frictional damping.
6. The bearing of claim 1 , wherein the journal and the race are each made of steel and directly contact one another for providing steel-to-steel friction for wind damping.
7. The bearing of claim 1 , wherein the journal and the race are each made of steel and directly contact one another for steel-to-steel contact under pressure to maintain an electrical ground path between the journal and the race.
8. A single-axis solar tracking system, comprising:
a journal comprising a tube portion having a pair of flanges that are configured as a thrust-stop, a first side of the tube portion is configured to receive a first torque tube, and a second side of the tube portion is configured to receive a second torque tube, wherein each flange of the pair of flanges comprises at least one hole and at least one curved thru-slot; and
a race removably coupled to the journal;
wherein the at least one hole of each flange of the pair of flanges is configured for bridging by at least one fastener that holds the journal in a fixed position by removably coupling with a bottom portion of the bearing.
9. The system of claim 8 , wherein the pair of flanges are semi-circular and straddle the race.
10. The system of claim 9 , wherein the at least one curved thru-slot of each flange of the pair of flanges is configured for bridging by at least one fastener that holds the journal in a fixed position by removably coupling with a bottom portion of the bearing.
11. The system of claim 10 , wherein the at least one hole and the at least one curved thru-slot are further configured as tilt-stops to transfer wind torque to tracking system row posts that are coupled to a bottom portion of the race via at least one tilt-stop fastener.
12. The system of claim 10 , wherein the at least one hole and the at least one curved thru-slot are further configured to accept bridging fasteners to pinch a bottom portion of the race upon lifting of the first and second torque tubes of the tracking system by wind force under the first and the second solar panels to increase frictional damping.
13. The system of claim 8 , wherein the journal and the race are each made of steel and directly contact one another for providing steel-to-steel friction for wind damping.
14. The system of claim 8 , wherein the journal and the race are each made of steel and directly contact one another for steel-to-steel contact under pressure to maintain an electrical ground path between the journal and the race.
15. A bearing for single-axis solar tracking system, comprising:
a journal including a tube portion coupled to a pair of flanges that are configured as a thrust-stop, wherein each flange of the pair of flanges comprises at least one hole and at least one curved thru-slot; and
a race comprising:
a lower portion removably coupled to the tube portion; and
an upper portion removably coupled to the tube portion and the lower portion.
16. The bearing of claim 15 , wherein the pair of flanges are semi-circular and straddle the race.
17. The bearing of claim 16 , wherein the at least one hole and the at least one curved thru-slot are configured for bridging by at least one fastener that holds the journal in a fixed position by removably coupling with the lower portion of the race.
18. The bearing of claim 17 , wherein the at least one hole and the at least one curved thru-slot are further configured as tilt-stops to transfer wind torque to tracking system row posts that are coupled to the lower portion of the race via at least one tilt-stop fastener.
19. The bearing of claim 17 , wherein the at least one hole and the at least one curved thru-slot are further configured to accept bridging fasteners to pinch the lower portion of the race upon lifting of a torque tube of the tracking system by wind force under solar panels of the tracking system to increase frictional damping.
20. The bearing of claim 15 , wherein the journal and the race are each made of steel and directly contact one another for providing steel-to-steel friction for wind damping and to maintain an electrical ground path between the journal and the race.