Brit Breaks Wind Speed Record
Wind-powered Greenbird reaches 126mph
Another landmark moment for British engineering was reached last week as Richard Jenkins broke the world land speed record for a wind-powered vehicle by clocking 126.1mph.
The Greenbird is made almost entirely from carbon fibre, and is the fifth wind-powered vehicle Jenkins has built to chase the record. The new land speed record was set on a dry lake bed in the Nevada desert, where it smashed the previous record of 116mph set by American Bob Schumacher and his Iron Duck vehicle in 1999.
Weighing just 600kg, the Greenbird is the culmination of over 10 years work and is described by its creator as a 'very high performance sailboat'. The unusual shape of the craft creates a large amount of lift, so to compensate for this the designers built Formula One style wings to help keep the Greenbird on the floor. As a result of the specially designed wings over one tonne of downforce is produced while travelling at high speeds.
Now Jenkins has set his sights on conquering another surface, and is concentrating his efforts on beating the land speed record on ice.
But why does it need so much downforce? Surely it would be best to be just about skimming the surface, less resistance = more speed I would have thought?
But why does it need so much downforce? Surely it would be best to be just about skimming the surface, less resistance = more speed I would have thought?
But why does it need so much downforce? Surely it would be best to be just about skimming the surface, less resistance = more speed I would have thought?
Super achievement
I bet there were a few celebrations.But why does it need so much downforce? Surely it would be best to be just about skimming the surface, less resistance = more speed I would have thought?
Surely for a WIND powered car to go 126.1mph, the WIND would actually need to be going at that speed too (or even more)
What did he do, set of an atomic blast behind him to get the required acceleration & speed ?
I may be wrong or completely off track, but how would you get a WIND POWERED vehicle to go faster that the wind speed thats propelling it ????????
Surely for a WIND powered car to go 126.1mph, the WIND would actually need to be going at that speed too (or even more)
What did he do, set of an atomic blast behind him to get the required acceleration & speed ?
I may be wrong or completely off track, but how would you get a WIND POWERED vehicle to go faster that the wind speed thats propelling it ????????
Sure the calculation would be similar for wind powered objects as for buildings below.
Wind Loading can be calculated in accordance with ANSI/ASCE 7-88 & ANSI A58.1-82 as follows:
Design Wind Force, F = qz * Gh * Cf * Af , lb.
Where ,
qz = Velocity pressure = 0.00256 kz (I V)2, lb/ft2.
kz = Velocity pressure exposure coefficient. Evaluated at height z above grade & exposure categories.
I = Importance factor. Depend on the classification of buildings and other structures for wind, snow, and earthquake loads. Categories I, II, III, and IV related to the nature of occupancy.
V = Basic wind speed, mph.
Gh = Gust response. The gust response factor is employed to account for the fluctuating nature of wind and its interaction with buildings and other structures, i.e. accounts for the additional loading effects due to wind turbulence over the fastest-mile wind speed.
Cf = Force coefficient
Af = Area of structures or components and cladding thereof projected on plane normal to wind direction,ft2
Surely for a WIND powered car to go 126.1mph, the WIND would actually need to be going at that speed too (or even more)
What did he do, set of an atomic blast behind him to get the required acceleration & speed ?
I may be wrong or completely off track, but how would you get a WIND POWERED vehicle to go faster that the wind speed thats propelling it ????????
Sure the calculation would be similar for wind powered objects as for buildings below.
Wind Loading can be calculated in accordance with ANSI/ASCE 7-88 & ANSI A58.1-82 as follows:
Design Wind Force, F = qz * Gh * Cf * Af , lb.
Where ,
qz = Velocity pressure = 0.00256 kz (I V)2, lb/ft2.
kz = Velocity pressure exposure coefficient. Evaluated at height z above grade & exposure categories.
I = Importance factor. Depend on the classification of buildings and other structures for wind, snow, and earthquake loads. Categories I, II, III, and IV related to the nature of occupancy.
V = Basic wind speed, mph.
Gh = Gust response. The gust response factor is employed to account for the fluctuating nature of wind and its interaction with buildings and other structures, i.e. accounts for the additional loading effects due to wind turbulence over the fastest-mile wind speed.
Cf = Force coefficient
Af = Area of structures or components and cladding thereof projected on plane normal to wind direction,ft2

Being able to sail into the wind, albeit not directly into, does not make sense either until you find out how it works.
Brilliant achievement by Richard and his team.
To go faster than the wind, bear in mind you have something called 'apparent wind' when moving.
If you're doing 124mph then you have a 124mph head wind to play with.
Add to that the 'real' side wind and you have something called apparent wind.
These two combine and give you a wind of over 124 mph that's not a direct headwind which you can put to use into creating forward momentum if your sails/wings have the correct angle of attack.
What good does it do? Great life and living if you can get it.
Where do they get the funding from?
Can't see many of us wanting a sailboat any time soon.
I THOUGHT this was Pistonheads?
As for 'bad' news like Blue Labour spending 'our' money on their expenses, yeah, sorry, but I for one like that sort of thing to be exposed.
Back to land speed records, sailboats don't interest me one iota.
Cars? This one does, as it's private and using no one else's cash, but naturally it gets no publicity.
It's a 1967 BRITISH Ginetta G4 that's aiming to beat the current 'class' in the land speed record. The record is 121.779 mph. The G4 has been recorded at 124 mph fitted with a MAE 997cc so it has superb chance. Will it get publicity if it does get the record?
Nah, but if it was a sailboat it might.
Teaser taster here on YouTube
http://www.youtube.com/watch?v=XxYyN6vkYiY
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