Articles | Volume 6, issue 1
https://doi.org/10.5194/os-6-91-2010
© Author(s) 2010. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
Special issue:
https://doi.org/10.5194/os-6-91-2010
© Author(s) 2010. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
Thermodynamic properties of sea air
R. Feistel
Leibniz Institute for Baltic Sea Research, 18119 Warnemünde, Germany
D. G. Wright
Bedford Institute of Oceanography, Dartmouth, NS, Canada
H.-J. Kretzschmar
Department of Technical Thermodynamics, Zittau/Görlitz University of Applied Sciences, 02763 Zittau, Germany
E. Hagen
Leibniz Institute for Baltic Sea Research, 18119 Warnemünde, Germany
S. Herrmann
Department of Technical Thermodynamics, Zittau/Görlitz University of Applied Sciences, 02763 Zittau, Germany
R. Span
Lehrstuhl für Thermodynamik, Ruhr-Universität Bochum, 44780 Bochum, Germany
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Cited
35 citations as recorded by crossref.
- TEOS-10 Equations for Determining the Lifted Condensation Level (LCL) and Climatic Feedback of Marine Clouds R. Feistel & O. Hellmuth 10.3390/oceans5020020
- Vertical discretizations giving optimal representation of normal modes: general equations of state J. Thuburn 10.1002/qj.2971
- Virial Approximation of the TEOS-10 Equation for the Fugacity of Water in Humid Air R. Feistel et al. 10.1007/s10765-014-1784-0
- Radiative entropy balance and vertical stability of a gray atmosphere R. Feistel 10.1140/epjb/e2011-20328-2
- New Equations for the Sublimation Pressure and Melting Pressure of H2O Ice Ih W. Wagner et al. 10.1063/1.3657937
- Temperature lapse rates at restricted thermodynamic equilibrium. Part II: Saturated air and further discussions P. Björnbom 10.1016/j.dynatmoce.2016.01.003
- Rüzgar Enerji Sistemleri İçin Hava Yoğunluğunun Hesaplanması F. Bingöl 10.2339/politeknik.385523
- Defining relative humidity in terms of water activity: III. Relations to dew-point and frost-point temperatures R. Feistel et al. 10.1088/1681-7575/ac7185
- Thermodynamics of Evaporation from the Ocean Surface R. Feistel & O. Hellmuth 10.3390/atmos14030560
- Stochastic ensembles of thermodynamic potentials R. Feistel 10.1007/s00769-010-0695-4
- Distinguishing between Clausius, Boltzmann and Pauling Entropies of Frozen Non-Equilibrium States R. Feistel 10.3390/e21080799
- Analytical Determination of the Nucleation-Prone, Low-Density Fraction of Subcooled Water O. Hellmuth & R. Feistel 10.3390/e22090933
- Numerical implementation and oceanographic application of the thermodynamic potentials of liquid water, water vapour, ice, seawater and humid air – Part 2: The library routines D. Wright et al. 10.5194/os-6-695-2010
- On the thermodynamic invariance of fine‐grain and coarse‐grain fluid models T. Dubos 10.1002/qj.4830
- Defining relative humidity in terms of water activity. Part 1: definition R. Feistel & J. Lovell-Smith 10.1088/1681-7575/aa7083
- TEOS-10 and the climatic relevance of ocean–atmosphere interaction R. Feistel 10.5194/os-20-1367-2024
- Thermophysical property anomalies of Baltic seawater R. Feistel et al. 10.5194/os-6-949-2010
- Reconciling and Improving Formulations for Thermodynamics and Conservation Principles in Earth System Models (ESMs) P. Lauritzen et al. 10.1029/2022MS003117
- Intercomparison of different state-of-the-art formulations of the mass density of humid air O. Hellmuth et al. 10.1007/s42865-021-00036-7
- Defining relative humidity in terms of water activity. Part 2: relations to osmotic pressures R. Feistel 10.1088/1681-7575/aaf446
- Consistent and flexible thermodynamics in atmospheric models using internal energy as a thermodynamic potential. Part I: Equilibrium regime P. Bowen & J. Thuburn 10.1002/qj.4385
- Irreversible Thermodynamics of Seawater Evaporation R. Feistel & O. Hellmuth 10.3390/jmse12010166
- Use of the Gibbs thermodynamic potential to express the equation of state in atmospheric models J. Thuburn 10.1002/qj.3020
- Enhanced mathematical modeling for optimizing solar stills with AI exploitation F. Belmehdi et al. 10.1016/j.desal.2024.118303
- Ice-Crystal Nucleation in Water: Thermodynamic Driving Force and Surface Tension. Part I: Theoretical Foundation O. Hellmuth et al. 10.3390/e22010050
- TEOS-10: A New International Oceanographic Standard for Seawater, Ice, Fluid Water, and Humid Air R. Feistel 10.1007/s10765-010-0901-y
- About right: references in open-access EGU (European Geosciences Union) journals A. Pozzer 10.5194/gc-4-453-2021
- Metrological challenges for measurements of key climatological observables. Part 4: atmospheric relative humidity J. Lovell-Smith et al. 10.1088/0026-1394/53/1/R40
- Thermodynamic properties of seawater, ice and humid air: TEOS-10, before and beyond R. Feistel 10.5194/os-14-471-2018
- The interpretation of temperature and salinity variables in numerical ocean model output and the calculation of heat fluxes and heat content T. McDougall et al. 10.5194/gmd-14-6445-2021
- Consistent and flexible thermodynamics in atmospheric models using internal energy as a thermodynamic potential. Part II: Non‐equilibrium regime P. Bowen & J. Thuburn 10.1002/qj.4373
- Constrained work output of the moist atmospheric heat engine in a warming climate F. Laliberté et al. 10.1126/science.1257103
- Numerical implementation and oceanographic application of the thermodynamic potentials of liquid water, water vapour, ice, seawater and humid air – Part 1: Background and equations R. Feistel et al. 10.5194/os-6-633-2010
- Improved and Always Improving: Reference Formulations for Thermophysical Properties of Water A. Harvey et al. 10.1063/5.0125524
- A Third-Law Isentropic Analysis of a Simulated Hurricane P. Marquet 10.1175/JAS-D-17-0126.1
35 citations as recorded by crossref.
- TEOS-10 Equations for Determining the Lifted Condensation Level (LCL) and Climatic Feedback of Marine Clouds R. Feistel & O. Hellmuth 10.3390/oceans5020020
- Vertical discretizations giving optimal representation of normal modes: general equations of state J. Thuburn 10.1002/qj.2971
- Virial Approximation of the TEOS-10 Equation for the Fugacity of Water in Humid Air R. Feistel et al. 10.1007/s10765-014-1784-0
- Radiative entropy balance and vertical stability of a gray atmosphere R. Feistel 10.1140/epjb/e2011-20328-2
- New Equations for the Sublimation Pressure and Melting Pressure of H2O Ice Ih W. Wagner et al. 10.1063/1.3657937
- Temperature lapse rates at restricted thermodynamic equilibrium. Part II: Saturated air and further discussions P. Björnbom 10.1016/j.dynatmoce.2016.01.003
- Rüzgar Enerji Sistemleri İçin Hava Yoğunluğunun Hesaplanması F. Bingöl 10.2339/politeknik.385523
- Defining relative humidity in terms of water activity: III. Relations to dew-point and frost-point temperatures R. Feistel et al. 10.1088/1681-7575/ac7185
- Thermodynamics of Evaporation from the Ocean Surface R. Feistel & O. Hellmuth 10.3390/atmos14030560
- Stochastic ensembles of thermodynamic potentials R. Feistel 10.1007/s00769-010-0695-4
- Distinguishing between Clausius, Boltzmann and Pauling Entropies of Frozen Non-Equilibrium States R. Feistel 10.3390/e21080799
- Analytical Determination of the Nucleation-Prone, Low-Density Fraction of Subcooled Water O. Hellmuth & R. Feistel 10.3390/e22090933
- Numerical implementation and oceanographic application of the thermodynamic potentials of liquid water, water vapour, ice, seawater and humid air – Part 2: The library routines D. Wright et al. 10.5194/os-6-695-2010
- On the thermodynamic invariance of fine‐grain and coarse‐grain fluid models T. Dubos 10.1002/qj.4830
- Defining relative humidity in terms of water activity. Part 1: definition R. Feistel & J. Lovell-Smith 10.1088/1681-7575/aa7083
- TEOS-10 and the climatic relevance of ocean–atmosphere interaction R. Feistel 10.5194/os-20-1367-2024
- Thermophysical property anomalies of Baltic seawater R. Feistel et al. 10.5194/os-6-949-2010
- Reconciling and Improving Formulations for Thermodynamics and Conservation Principles in Earth System Models (ESMs) P. Lauritzen et al. 10.1029/2022MS003117
- Intercomparison of different state-of-the-art formulations of the mass density of humid air O. Hellmuth et al. 10.1007/s42865-021-00036-7
- Defining relative humidity in terms of water activity. Part 2: relations to osmotic pressures R. Feistel 10.1088/1681-7575/aaf446
- Consistent and flexible thermodynamics in atmospheric models using internal energy as a thermodynamic potential. Part I: Equilibrium regime P. Bowen & J. Thuburn 10.1002/qj.4385
- Irreversible Thermodynamics of Seawater Evaporation R. Feistel & O. Hellmuth 10.3390/jmse12010166
- Use of the Gibbs thermodynamic potential to express the equation of state in atmospheric models J. Thuburn 10.1002/qj.3020
- Enhanced mathematical modeling for optimizing solar stills with AI exploitation F. Belmehdi et al. 10.1016/j.desal.2024.118303
- Ice-Crystal Nucleation in Water: Thermodynamic Driving Force and Surface Tension. Part I: Theoretical Foundation O. Hellmuth et al. 10.3390/e22010050
- TEOS-10: A New International Oceanographic Standard for Seawater, Ice, Fluid Water, and Humid Air R. Feistel 10.1007/s10765-010-0901-y
- About right: references in open-access EGU (European Geosciences Union) journals A. Pozzer 10.5194/gc-4-453-2021
- Metrological challenges for measurements of key climatological observables. Part 4: atmospheric relative humidity J. Lovell-Smith et al. 10.1088/0026-1394/53/1/R40
- Thermodynamic properties of seawater, ice and humid air: TEOS-10, before and beyond R. Feistel 10.5194/os-14-471-2018
- The interpretation of temperature and salinity variables in numerical ocean model output and the calculation of heat fluxes and heat content T. McDougall et al. 10.5194/gmd-14-6445-2021
- Consistent and flexible thermodynamics in atmospheric models using internal energy as a thermodynamic potential. Part II: Non‐equilibrium regime P. Bowen & J. Thuburn 10.1002/qj.4373
- Constrained work output of the moist atmospheric heat engine in a warming climate F. Laliberté et al. 10.1126/science.1257103
- Numerical implementation and oceanographic application of the thermodynamic potentials of liquid water, water vapour, ice, seawater and humid air – Part 1: Background and equations R. Feistel et al. 10.5194/os-6-633-2010
- Improved and Always Improving: Reference Formulations for Thermophysical Properties of Water A. Harvey et al. 10.1063/5.0125524
- A Third-Law Isentropic Analysis of a Simulated Hurricane P. Marquet 10.1175/JAS-D-17-0126.1
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