Fire effects on net radiation and energy partitioning : Contrasting responses of tundra and boreal forest ecosystems

@inproceedings{Chambers2005FireEO,
  title={Fire effects on net radiation and energy partitioning : Contrasting responses of tundra and boreal forest ecosystems},
  author={Samuel D. Chambers and Jason Beringer and James T Randerson and F. Stuart Chapin},
  year={2005}
}
[1] The net radiation available to drive surface-atmosphere exchange is strongly influenced by albedo and surface temperature. Tower-based microclimatic and eddy covariance measurements in typical Alaskan black spruce and tundra ecosystems before and immediately after fire indicated a 10% decrease in net radiation over the burned spruce stand but a 12% increase in net radiation over the burned tundra surface. In both cases, there was increased partitioning of net radiation into sensible heat… CONTINUE READING
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