• Title of article

    A discussion on and alternative to the Penman–Monteith equation

  • Author/Authors

    Peter Widmoser، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    11
  • From page
    711
  • To page
    721
  • Abstract
    The Penman–Monteith (PMe) equation that estimates evaporation from leaf/canopy surfaces is based on a few approximations. Several authors discussed ensuing errors and suggested improvements. This paper reminds those discussions which ended in the early nineties. It compares linearized PMe− with non-linear iterative solutions and illustrates resulting deviations. It differentiates between deviations for daily and hourly evaporation rate estimates. The latter are found to be higher. It also demonstrates deviations obtained at two different altitudes above sea level. Considering present tendencies to refine evaporation estimates for practical purposes and making use of easily available methods for solving non-linear equations this paper offers a new method to estimate evaporation. In a first step, a simple algebraic term, the surface temperature control sum, is introduced to find approximate differences between air and evaporating surface (leaf, canopy) temperatures. It suggests to concentrate research on the rs/ra ratio. A new formula is derived for estimating leaf/canopy surface temperatures for non-water stressed plants. In a second step, the estimates of temperature differences are used to calculate evaporation estimates. This two-step approximation leads to appreciably smaller errors as compared to the PMe-solution over the full range of input parameters of agro-meteorological relevance. It is, however, less accurate than some of methods proposed in literature. The method is meant for practical application in agricultural water management.
  • Keywords
    Penman–Monteith equation , Energy balance , Surface temperature , Evaporation
  • Journal title
    Agricultural Water Management
  • Serial Year
    2009
  • Journal title
    Agricultural Water Management
  • Record number

    1325999