A relatively unexplored method to improve the endurance of an autonomous aircraft is to use buoyant plumes of air found in the lower atmosphere called thermals or updrafts. Glider pilots and birds commonly use updrafts to improve range, endurance, or cross-country speed. This report presents a quantitative analysis of a small electric-powered uninhabited air vehicle using updrafts to extend its endurance over a target location. A three-degree-of-freedom simulation of the uninhabited air vehicle was used to determine the yearly effect of updrafts on performance. Surface radiation and rawinsonde balloon measurements taken at Desert Rock, Nevada, were used to determine updraft size, strength, spacing, shape, and maximum height for the simulation. A fixed-width spiral path was used to search for updrafts at the same time as maintaining line-of-sight to the surface target position. Power was used only when the aircraft was flying at the lower-altitude limit in search of updrafts. Results show that an uninhabited air vehicle with a nominal endurance of 2 hours can fly a maximum of 14 hours using updrafts during the summer and a maximum of 8 hours during the winter. The performance benefit and the chance of finding updrafts both depend on what time of day the uninhabited air vehicle is launched. Good endurance and probability of finding updrafts during the year was obtained when the uninhabited air vehicle was launched 30 percent into the daylight hours after sunrise each day. Yearly average endurance was found to be 8.6 hours with these launch times.
[1]
Paul B. MacCready,et al.
REGENERATIVE BATTERY-AUGMENTED SOARING
,
1999
.
[2]
R. Stull.
An Introduction to Boundary Layer Meteorology
,
1988
.
[3]
Anthony L. Peressini,et al.
Precalculus and Discrete Mathematics
,
1992
.
[4]
D. Metzger,et al.
Optimal flight paths for soaring flight
,
1974
.
[5]
Mark B. Boslough.
Autonomous Dynamic Soaring Platform for Distributed Mobile Sensor Arrays
,
2002
.
[6]
H. Weimerskirch,et al.
Flight performance: Frigatebirds ride high on thermals
,
2003,
Nature.
[7]
D. Lenschow,et al.
The role of thermals in the convective boundary layer
,
1980
.
[8]
D. Konovalov.
On the Structure of Thermals
,
2005
.
[9]
P. Kerlinger.
Flight strategies of migrating hawks
,
1989
.
[10]
J. Shamoun‐Baranes,et al.
DIFFERENTIAL USE OF THERMAL CONVECTION BY SOARING BIRDS OVER CENTRAL ISRAEL
,
2003
.
[11]
Gareth Jones,et al.
Bird Flight Performance. A Practical Calculation Manual, C.J. Pennycuick. Oxford University Press, Oxford (1989), x, +153. Price £25
,
1990
.
[12]
J. Waldvogel,et al.
Flight Strategies of Migrating Hawks, Paul Kerlinger. University of Chicago Press, Chicago (1989), xv, +375. Price $60.00 hardback, $19.95 paperback
,
1990
.