• DocumentCode
    164919
  • Title

    Fractional models for measuring sap velocities in trees

  • Author

    Tejado, Ines ; Hassan HosseinNia, S. ; Torres, Daniel ; Vinagre, Blas M. ; Lopez-Bernal, Alvaro ; Villalobos, Francisco J. ; Testi, Luca ; Podlubny, Igor

  • Author_Institution
    Ind. Eng. Sch., Univ. of Extremadura, Caceres, Spain
  • fYear
    2014
  • fDate
    23-25 June 2014
  • Firstpage
    1
  • Lastpage
    6
  • Abstract
    The compensation heat-pulse (CHP) method is founded on the measurement of the temperature difference between sensors located above and below a heater inserted in tree trunks. This technique assumes that the temperature in each probe follows an exponential function and, as a result, an expression to calculate the heat-pulse velocity (v) is deduced. The current work investigates the application of recent theory of fractional calculus (FC) to model such thermal processes in trees. In particular, a generalisation of the mentioned exponential function, given by the two-parameter Mittag-Leffler function, is considered to model temperature dynamics. Several temperature curves, corresponding to zero and nonzero values of v, taken from real trees of different species are given to show that the proposed fractional order models are able to better describe such thermal flows, especially when velocities are different from zero.
  • Keywords
    biological fluid dynamics; biological techniques; biorheology; botany; flow measurement; compensation heat-pulse; exponential function; fractional order models; heater; temperature curves; temperature difference; temperature dynamics; thermal processes; tree sap velocity measurement; tree trunks; two-parameter Mittag-Leffler function; Heat transfer; Heating; Probes; Temperature measurement; Temperature sensors; Vegetation; Velocity measurement;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Fractional Differentiation and Its Applications (ICFDA), 2014 International Conference on
  • Conference_Location
    Catania
  • Type

    conf

  • DOI
    10.1109/ICFDA.2014.6967396
  • Filename
    6967396