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  • Thomas Foken (33)
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34 search hits

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Show/Hide Abstract Jahresbericht 2010-11 zum Förderprojekt 01879 Untersuchung der Veränderung der Konzentration von Luftbeimengungen und Treibhausgasen im hohen Fichtelgebirge 2007 – 2014 (2012)
Thomas Foken Lisa Dirks
no abstract
Klimawanderweg auf der Landesgartenschau in Bamberg 2012 (2012)
Thomas Foken
Show/Hide Abstract Whole-air relaxed eddy accumulation for the measurement of isotope and trace-gas fluxes (2012)
Johannes Ruppert Michael Riederer Willi A. Brand Thomas Foken
Measuring the isotopic composition of trace gas fluxes can provide additional information on ecosystem gas exchange, when ecosystem processes, like assimilation, discriminate against heavier isotopes. In the case of CO2 exchange, different mass-balances for bulk CO2 and its 13CO2 or CO18O isotopes can be used to separate respiration from photosynthetic assimilation. Up to now, detectors for direct isotope measurements in the field lack the precision needed for fast eddy covariance (EC) flux measurements. The collection of updraft and downdraft whole-air samples using the relaxed eddy accumulation technique (REA) allows simultaneously determining trace gas concentrations and isotope ratios by high precision laboratory analysis. At the same time whole-air REA relaxes several of the technical problems related to REA sampling on traps. In tests using air from a tank the complete whole-air REA sampling system and its foil balloon bag reservoirs showed no signs of contamination after cleaning. The standard deviations of δ13C and δ18O isotope ratios were only slightly higher than the precision specified for the laboratory analysis procedure. First experiment results showed that isotopic differences (up-drafts−downdrafts) were large enough to yield signal to noise ratios greater than five when applying hyperbolic deadbands during REA sampling (HREA). The performance of the instrument and the HREA sampling method are investigated by simulation of the sampling process for bulk CO2, which serves as proxy scalar. Measurements by whole-air HREA in combination with high precision isotope analysis can quantify the isofluxes of 13CO2 and CO18O. Furthermore, additional information is collected on the scalar correlation of bulk CO2 and its stable isotopes, which represents the relatively short timescale of updrafts and downdrafts in the turbulent exchange above an ecosystem. This information is essential to check the scalar similarity assumptions made in the HREA and EC/flask method for the quan-tification of isofluxes.
Show/Hide Abstract Complex TERRain and ECOlogical Heterogeneity (TERRECO);WP 1-02: Spatial assessment of atmosphere-ecosystem exchanges via micrometeorological measurements, footprint modeling and mesoscale simulations ; Documentation of the Observation Period May 12th to Nov. 8th, 2010, Haean, South Korea (2011)
Peng Zhao Johannes Lüers Johannes Olesch Thomas Foken
no abstract
Show/Hide Abstract Documentation and Instruction Manual of the Eddy-Covariance Software Package TK3 (2011)
Matthias Mauder Thomas Foken
no abstract
ExchanGE processes in mountainous Regions (EGER)- Documentation of the Intensive Observation Period (IOP3) June, 13th to July, 26th 2011 (2011)
Andrei Serafimovich Fabian Eder Jörg Hübner Eva Falge Linda Voß Matthias Sörgel Andreas Held Qianqian Liu Rafael Eigenmann Kilian Huber Henrique F. Duarte Peter Werle Eckhard Gast Stanislaw Cieslik Liu Heping Thomas Foken
Documentation and Instruction Manual for the Horizontal Mobile Measuring System (HMMS) (2011)
Jörg Hübner Johannes Olesch Hubert Falke Franz X. Meixner Thomas Foken
Show/Hide Abstract Jahresbericht 2009 zum Förderprojekt 01879, Untersuchung der Veränderung der Konzentration von Luftbeimengungen und Treibhausgasen im hohen Fichtelgebirge (2010)
Johannes Lüers Thomas Foken
keine Zusammenfassung
Show/Hide Abstract Documentation and Instruction Manual for the Krypton Hygrometer Calibration Instrument (2010)
Thomas Foken Hubert Falke
no abstract
Mesoscale Circulations and Energy and GaS Exchange Over the Tibetan Plateau Documentation of the Micrometeorological Experiment, Nam Tso, Tibet (2009)
Tobias Biermann Wolfgang Babel Johannes Olesch Thomas Foken

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