STIR Proposal For Research Area 2.1.2 Surface Energy Balance: Transient Soil Density Impacts Land Surface Characteristics and Characterization

Abstract

Soil density is commonly treated as static in studies on land surface property dynamics. Magnitudes of errors associated with this assumption are largely unknown. Objectives of this preliminary investigation were to: i) quantify effects of soil density variation on soil properties, and ii) evaluate impact of changing soil density on surface energy balance and heat and water transfer. Six soil properties were evaluated over a range of soil densities, using a combination of ten modeling approaches. Thermal conductivity, water characteristics, hydraulic conductivity, and vapor diffusivity were most sensitive; these properties changed by fractions greater than associated change in density (i.e., 10% change in density led to >10% change in property). Subsequently, three field seasons were simulated with a numerical model (HYDRUS-1D) for arange of bulk densities. Among the surface energy balance terms, ground heat flux and latent heat flux were most sensitive to bulk density. Surface soil temperature variation increased in with low bulk densities but subsurface temperature variation decreased. Surface water content varied with bulk density but effects mostly disappeared in the subsurface. Results demonstrate significance of transient density on surface conditions and point to need for continued evaluation of impacts with improved measurements and modeling.

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Document Details

Document Type
Technical Report
Publication Date
Dec 22, 2015
Accession Number
AD1008784

Entities

People

  • Joshua L. Heitman
  • R. Horton
  • Y. Kojima

Organizations

  • North Carolina State University

Tags

Communities of Interest

  • Energy and Power Technologies
  • Materials and Manufacturing Processes

DTIC Thesaurus Topics

  • Computer Programs
  • Energy
  • Energy Transfer
  • Engineering
  • Equations
  • Heat Capacity
  • Heat Energy
  • Heat Flux
  • Latent Heat
  • Measurement
  • Particle Size
  • Particles
  • Simulations
  • Students
  • Surface Energy
  • Surface Properties
  • Thermal Conductivity

Fields of Study

  • Environmental science

Readers

  • Environmental Remediation and Restoration.
  • Mathematics or Statistics
  • Thermal Physics or Thermal Science.