All Publications

Below is the combined list of references from refs_sat.bib and refs_external.bib. It is intended for our group's internal use.

| 2c-ice | a-train | abs lookup | absorption | active | aerosol | aerosols | age of air | aggregation | airs | albedo | algorithm | amsos | amsu | annual cycle | anomalies | aqua | ar4 | ar5 | arctic | arm | arts | arts-dev | asr | assimilation | astronomy | astrophysics | asymmetry | atmosphere | atmospheric composition | atmospheric dynamics | atmospheric profiles | atsr-2 | avhrr | bachelor thesis | backscattering | basics | bayes | bias | biomass | book | calculation | calculations | calibration | calipso | ccn | cdr | ceres | cfmip | chemistry | cia | ciraclim | cirrus | cirrus anvil sublimation | cirrus cloud | cirrus clouds | cirrusstudy | ciwsir/cloudice | claus | cliccs | climate | climate change | climate dynamics | climate feedbacks | climate sensitivity | climate sensivity | climate variability | climatology | cloud feedback | cloud forcing | cloud fraction | cloud ice | cloud ice mission | cloud optical thickness | cloud properties | cloud radiative effects | cloud radiative forcing | cloud regimes | cloud top pressure | cloudice mission | clouds | cloudsat | clustering | cmip3 | cmip5 | cmip6 | cmsaf | co2 | collocation | collocations | comparison | computer science | continua | contrail | convection | convective clouds | convective processes | convective self-aggregation | correlated k | cosmic background | cosmic rays | cosp | cost 723 qjrms | cross-calibration | cth | cumulus | dardar | data assimilation | data bases | dda | deep convection | delta m | dimer | disort | diurnal cycle | dlr-smiles | dmsp | documentation | doppler | droplet size | dynamics | earth | earthcare | ec earth | echam | ecmwf | effective radius | electromagnetism | electron content | elevation | elevation satellite-2 | emd | emde | emissivity | enso | eof-pca-svd | erbe | error assessment | ers | eruption | esa planetary | exoplanets | extraterrestrial | fall speed | far-infrared | faraday-voigt | fcdr | feedback | feedbacks | fingerprinting | flux uav | forcing | forest fire | fox19_airborne_amt.pdf | friend | fun | fuzzy inference system | fuzzy logic | gcm | genesis | geostationary | gerrit_erca | global warming | gnss | goes | gps | gras | graupel | gravitational lensing | greenhouse effect | ground-based | groundbased | habil | hadley circulation | hail | hamburg | heating rate | heating rates | herschel | hiatus | hirs | history | hsb | humidity | hydrological sensitivity | hydrological sensivity | hydrometeors | iasi | ice | ice clouds | ice crystal growth | ice nucleation | ice water | icesat-2 | ici | icon | icz | in situ | infrared | infrared sounder | instruments | inter-calibration | intercalibration | intercomparison | interference | inverse modelling | ipcc | ir | ir/vis | iris | isccp | ismar | isotopes | itcz | iwc | iwp | iwv | john | jupiter | kalpana | kessler scheme | lblrtm | licentiate thesis | lidar | limb effect | limb sounding | limb-correction | linemixing | lineshape | liquid water | liquid water path | longwave radiation | low-cloud feedback | magnetic field | magnetism | mars | mas | mass-dimension relation | master thesis | masters thesis | math | megha-tropiques | mendrok | mesoscale organization | meteorology | meteosat | methane ocean | metop | mhs | microphysics | microwave | microwave humidity | microwave radiometry | milz | mipas | mirs | misr | mixed phase | mls | model | modeling | models | modis | monte carlo | moon | mspps | msu | mth | multi-moment scheme | multisensor | mwhs | mwi | net radiation | neural network | nicam | nlte | noaa | nonsphericity | npoess | observation | ocean | ocean reflection | ocean-atmosphere interactions | odin | olr | one-moment scheme | open loop | optical | optical depth | optical properties | optics | orbital drift | orbital drift correction | orbits | ozone | pacific ocean | particle orientation | particle shape | particle size | particle size distribution | passive | patmos-x | phase function | phd thesis | planetary evolution | polarimetry | polarization | polder | potss | precipitation | profile datasets | programming | projection | promet | propagation modeling | python | radar | radiation | radiation profiles | radiative convective equilibrium | radiative equilibrium | radiative feedback | radiative fluxes | radiative forcing | radiative processes | radiative transfer | radiative-convective equilibrium | radiative-equilibrium | radio occultation | radiometer | radiometers | radiosonde | radiosonde cloud liquid | radiosonde correction | radiosonde corrections | rain | reanalysis | refractive index | relative humidity | remote sensing | retrieval | retrievals | review | rodgers | rttov | sahara | sahel | sampling | sand/dust | sar | satellite | satellite missions | satellite observations | satellite simulator | sbuehler_habil | scattering | scattering databases | scintillations | scout-amma | self-aggregation | sensor geometry | seviri | shallow convection | simulated annealing | single scattering | smiles | sno | snow | snowfall | software | soil | solar | soot | sounders | spectral information | spectroscopy | split window technique | sreerekha | ssm/i | ssm/t | ssmis | ssmt2 | stability | stars | statistics | ste | stereo | stratosphere | submillimeter | submm | sun | supersaturation | surface | synergies | synergy | task2 | tempera | temperature | terra | thermodynamics | time series | titan | tkuhn | toa radiation | top of the atmosphere | total column | tovs | trade-wind clouds | trajectory analysis | trend | trmm | tropical circulation | tropical convection | tropical meteorology | tropics | tropopause | troposphere | ttl | turbulence | tutorial | two-moment scheme | upper troposphere | uth | uthmos | utls | validation | vater vapor | venus | visualization | volcanic ash | walker | walker circulation | walker rirculation | water | water cycle | water dimer | water vapor | water vapor continuum | water vapour | water vapour path | water-vapour | wind | zeeman |

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Group references

In the Pipeline

    Articles

      2016 Back to top

    1. Kottayil, A., V. O. John, S. A. Buehler, and K. Mohanakumar (2016), Evaluating the diurnal cycle of upper tropospheric humidity in two different climate models using satellite observationsRem. Sens., 8(4), 325, doi:10.3390/rs8040325.

    Books and Book Contributions

      Theses

        2013 Back to top

      1. Kottayil, A. (2013), Representation and Diurnal Variation of Upper Tropospheric Humidity in Observations and Models, Ph.D. thesis, Luleå University of Technology, Department of Computer Science, Electrical and Space Engineering Division of Space Technology.

      Technical Reports and Proposals

        Articles in Conference Proceedings and Newsletters

          Internal Reports

            External references

            1. Chung, E. S., B. J. Sohn, J. Schmetz, and M. Koenig (2007), Diurnal variation of upper tropospheric humidity and its relations to convective activities over tropical AfricaAtmos. Chem. Phys., 7(10), 2489–2502, doi:10.5194/acp-7-2489-2007.
            2. Chung, E. S., B. J. Soden, B. J. Sohn, and J. Schmetz (2013), An Assessment of the Diurnal Variation of Upper Tropospheric Humidity in Reanalysis DatasetsJ. Geophys. Res., 118, 3425–3430, doi:10.1002/jgrd.50345.
            3. Dai, A. and K. E. Trenberth (2004), The Diurnal Cycle and Its Depiction in the Community Climate System ModelJ. Climate, 17, 930–951.
            4. Eriksson, P., B. Rydberg, M. Johnston, D. P. Murtagh, H. Struthers, S. Ferrachat, and U. Lohmann (2010), Diurnal variations of humidity and ice water content in the tropical upper troposphereAtmos. Chem. Phys., 23, 11519–11533, doi:10.5194/acp-10-11519-2010.
            5. Lieberman, R. S., D. A. Ortland, and E. S. Yarosh (2003), Climatology and interannual variability of diurnal water vapor heatingJ. Geophys. Res., 108(D3), doi:10.1029/2002JD002308.
            6. Liu, C. and E. J. Zipser (2008), Diurnal cycles of precipitation, clouds, and lightning in the tropics from 9 years of TRMM observationsGeophys. Res. Lett., 35(4), 4819, doi:10.1029/2007GL032437.
            7. Liu, C., E. J. Zipser, G. G. Mace, and S. Benson (2008), Implications of the differences between daytime and nighttime CloudSat observations over the tropicsJ. Geophys. Res., 113, 1–11, doi:10.1029/2008JD009783.
            8. Maltagliati, Luca, Dmitrij V. Titov, Thérèse Encrenaz, Riccardo Melchiorri, Francois Forget, Horst U. Keller, and Jean-Pierre Bibring (2011), Annual survey of water vapor behavior from the OMEGA mapping spectrometer onboard Mars ExpressIcarus, 213(2), 480–495, doi:10.1016/j.icarus.2011.03.030.
            9. Mears, C. A. and F. J. Wentz (2005), The Effect of Diurnal Correction on Satellite-Derived Lower Tropospheric TemperatureScience, 309(5740), 1548–1551, doi:10.1126/science.1114772.
            10. O'Neill, L. W., S. Wang, and Q. Jiang (2011), Satellite climatology of cloud liquid water path over the Southeast Pacific between 2002 and 2009Atmos. Chem. Phys. Discuss., 11, 31159–31206, doi:10.5194/acpd-11-31159-2011.
            11. Pramualsakdikul, S., R. Haas, G. Elgered, and H.-G. Scherneck (2007), Sensing of diurnal and semi-diurnal variability in the water vapour content in the tropics using GPS measurementsMet. Appl., 14, 403–412, doi:10.1002/met.39.
            12. M. L. Salby, P. Callaghan (1997), Sampling Error in Climate Properties Derived from Satellite Measurements: Consequences of Undersampled Diurnal VariabilityJ. Climate, 10, 18–36.
            13. Schröder, M., M. König, and J. Schmetz (2008), Deep convection observed by the Spinning Enhanced Visible and Infrared Imager on board Meteosat 8: Spatial distribution and temporal evolution over Africa in summer and winter 2006J. Geophys. Res., 114, 1–14, doi:10.1029/2008JD010653.
            14. Slingo, A., K. I. Hodges, and G. J. Robinson (2004), Simulation of the diurnal cycle in a climate model and its evaluation using data from Meteosat 7Q. J. R. Meteorol. Soc., 130, 1449–1467, doi:10.1256/qj.03.165.
            15. Stubenrauch, C. J., A. Chedin, G. Rädel, N. A. Scott, and S. Serrar (2006), Cloud properties and their seasonal and diurnal variability from TOVS Path-BJ. Climate, 19, 5531–5553.
            16. Tan, J. and C. Jakob (2013), A three-hourly data set of the state of tropical convection based on cloud regimesGeophys. Res. Lett., 40, 1–5, doi:10.1002/grl.50294.
            17. Yang, G. Y. and J. Slingo (2000), The Diurnal Cycle in the TropicsMon. Weather Rev., 129, 784–798.