MECHANICS OF SHEET FLOW UNDER SIMULATED RAINFALL

FRICTION FACTORS ARE PRESENTED FOR SPATIALLY VARIED SHEET FLOW WITH RAINFALL ON A HYDRAULICALLY SMOOTH SURFACE AS OBTAINED FROM BOTH SURFACE PROFILE AND HOT FILM SURFACE PROBE MEASUREMENTS. THE RESULTS ARE PRESENTED IN THE FORM F= C/R, IN WHICH C INCREASES WITH RAINFALL INTENSITY AND SURFACE SLOPE. A TWO PART VELOCITY PROFILE MATHEMATICAL MODEL BASED ON VONKARMAN'S SIMILARITY HYPOTHESIS IS PRESENTED AND CORRELATED WITH HOT FILM MEASUREMENTS. RELATIVE LONGITUDINAL TURBULENCE INTENSITY PROFILES WITH RAINFALL ARE CHARACTERIZED BY A SHARP INCREASE IN RELATIVE INTENSITY NEAR THE SURFACE AND A GENERAL INCREASE THROUGHOUT THE DEPTH WITH INCREASING RAINFALL. TURBULENT ENERGY SPECTRAL ANALYSES INDICATE THAT THE RAINFALL CAUSES A SHIFT OF THE ENERGY CONTENT TO HIGHER FREQUENCIES THAN FOR THE CASE OF UNIFORM FLOW AT THE SAME REYNOLDS NUMBER. /AUTHOR/

  • Supplemental Notes:
    • Vol 97, No HY9, PROC PAPER 8373, PP 1367-1386, 7 FIG,
  • Authors:
    • Yoon, Y N
    • Wenzel, H G
  • Publication Date: 1971-9

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Filing Info

  • Accession Number: 00204389
  • Record Type: Publication
  • Files: TRIS
  • Created Date: Oct 25 1971 12:00AM