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Improvement of the heat pulse method for determining sap flow in trees
Authors:Y. COHEN,M. FUCHS,G. C. GREEN&dagger  
Affiliation:Institute of Soils and Water, Agricultural Research Organization, The Volcani Center, Bet Dagan, Israel.;Soil and Irrigation Research Institute, Pretoria, South Africa.
Abstract:Abstract. The heat pulse method for determining sap flux in large woody sterns was modified for easier field operation. It uses the measurement of the time elapsed between heat pulse release by a line heater radially inserted in the stem, and the occurrence of maximum temperature 15 mm downstream of the heater. This spacing between heater and thermometer is critical to the reliability of the measurement. Calculations using uncorrected theory provide estimates of the sap flux density in stems with both uniform and non-uniform cross-sectional distribution of conducting tissues which are about 55% of the actual sap flux density. This factor results from insufficient thermal homogeneity between tissues where sap flow occurs and tissues where sap flow has been interrupted.
Sap flow in trunks of citrus trees was inferred from measurements of the cross-sectional distribution of sap flux density. Variability of sap flux density is specific to each trunk and is time-dependent and imposes multiple radial and angular measurements. The method was checked in a citrus trunk ramified into three branches. Instantaneous determinations of the flow in the trunk and in the branches differed by less than 5.7%. The daily values agreed within 2.8%.
Keywords:Citrus sinensis L. Osbeck    Rutaceae    citrus    Platanus orientalis L.    Platanaceae    plane    Populus alba L.    Salicaceae    poplar    transpiration    instrumentation    head conduction    wood.
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