H
HAL
The boat: fractional, 110 jib, swept back spreaders, boom out to maximum of 120 degrees.
The statement has been made.
”With sweptback spreaders I never sail below a broad reach of 140 degrees. It is faster, even with gybing, because the sail still has aerodynamic lift as opposed to more DDW, were the wind is just pushing the boat.”
My question is:
If the sail is at 120 degrees (this is right into the spreaders) then a wind direction of 60 degrees would make it luff. With a maximum angle of attack of 15 degrees before stall, then the lowest AWA that would provide lift before stall would be 75 degrees. If the boat speed is 5 kts and the TWS is 15kts and the TWA is 120 then the AWA is 101. So how can you possible keep the airflow attached with a TWA in the 110 120,130,140, direction? These angles would appear to create a total stall. It seems the lowest TWA would be 105-110 to bring the AWA forward enough to maintain lift.
The statement has been made.
”With sweptback spreaders I never sail below a broad reach of 140 degrees. It is faster, even with gybing, because the sail still has aerodynamic lift as opposed to more DDW, were the wind is just pushing the boat.”
My question is:
If the sail is at 120 degrees (this is right into the spreaders) then a wind direction of 60 degrees would make it luff. With a maximum angle of attack of 15 degrees before stall, then the lowest AWA that would provide lift before stall would be 75 degrees. If the boat speed is 5 kts and the TWS is 15kts and the TWA is 120 then the AWA is 101. So how can you possible keep the airflow attached with a TWA in the 110 120,130,140, direction? These angles would appear to create a total stall. It seems the lowest TWA would be 105-110 to bring the AWA forward enough to maintain lift.