HR: 0800h
AN: B51A-0931 [Abstracts]
TI: Uncertainty Analysis of Vertical Wind Motion Measurement
for Airborne Flux Measurements
AU: * Garman, K E
EM: garman@purdue.edu
AF: Departments of Earth & Atmospheric Sciences and Chemistry, 560 Oval Drive, West Lafayette, IN 47907
United States
AU: Hill, K A
EM: kahill23@purdue.edu
AF: Departments of Earth & Atmospheric Sciences and Chemistry, 560 Oval Drive, West Lafayette, IN 47907
United States
AU: Wyss, P J
EM: wyss@purdue.edu
AF: Jonathan Amy Facility for Chemical Instrumentation, 560 Oval Drive, West Lafayette, IN 47907
United States
AU: Carlsen, M S
EM: carlsen@purdue.edu
AF: Jonathan Amy Facility for Chemical Instrumentation, 560 Oval Drive, West Lafayette, IN 47907
United States
AU: Zimmerman, J R
EM: jrzimmer@purdue.edu
AF: Jonathan Amy Facility for Chemical Instrumentation, 560 Oval Drive, West Lafayette, IN 47907
United States
AU: Stirm, B H
EM: bhstirm@tech.purdue.edu
AF: Department of Aviation Technology, Aviation Technology Building,
Purdue University Airport, West Lafayette, IN 47907
United States
AU: Carney, T Q
EM: tqcarney@tech.purdue.edu
AF: Department of Aviation Technology, Aviation Technology Building,
Purdue University Airport, West Lafayette, IN 47907
United States
AU: Santini, R E
EM: rsantini@purdue.edu
AF: Jonathan Amy Facility for Chemical Instrumentation, 560 Oval Drive, West Lafayette, IN 47907
United States
AU: Shepson, P B
EM: pshepson@purdue.edu
AF: Departments of Earth & Atmospheric Sciences and Chemistry, 560 Oval Drive, West Lafayette, IN 47907
United States
AB:
Measurement of atmosphere-surface exchange is a fundamental part of a more quantitative understanding of climate change.
Among the impacts are changes in the fluxes of Biogenic Volatile Organic Compounds (BVOCs) and net ecosystem exchange of
carbon, in forest ecosystems. Flux measurements are most frequently conducted on a local scale using flux measurement
towers, where the measurement of vertical air motion is correlated with the concentration of the scalar to be studied. To
expand the understanding of fluxes to a regional scale, and enable the scaling-up of fluxes to ecosystem levels, we need
complementary approaches to the flux-tower model. We are thus engaged in the development of a flexible and low cost aircraft
platform for flux measurements, using both eddy covariance, for water vapor and CO2, and Disjunct Eddy Accumulation (DEA),
for volatile organic compounds (VOCs).
The most challenging aspect of airborne flux measurements is the measurement of vertical scale turbulence. The uncertainties
inherent in the measurement of vertical air motion depend on the ability to sense the rotational and translation motion of
the aircraft, and the sensed wind, on a 10Hz time scale. We approach this using a combination of a pressure sphere probe for
wind measurements, and an integrated Inertial Navigation/Global Positioning System (INS/GPS) to measure the aircraft
translation and rotation. This paper summarizes the results of a series of low-speed wind tunnel tests and in-flight
calibration maneuvers to determine the uncertainties in vertical wind measurement. The paper summarizes the airspeeds and
flight regimes at which different error sources are dominant or negligible. Finally, an error propagation is developed and
discussed. This process will lead us to the ability to conduct reliable flux measurements from a low cost aircraft, for a
variety of studies of air-surface exchange of gases.
DE: 1694 Instruments and techniques
DE: 1600 GLOBAL CHANGE (New category)
DE: 1615 Biogeochemical processes (4805)
DE: 0315 Biosphere/atmosphere interactions
DE: 0394 Instruments and techniques
SC: Biogeosciences [B]
MN: 2004 AGU Fall Meeting