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Roughness coefficient and its uncertainty in gravel-bed river 被引量:2

Roughness coefficient and its uncertainty in gravel-bed river
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摘要 Manning's roughness coefficient was estimated for a gravel-bed river reach using field measurements of water level and discharge, and the applicability of various methods used for estimation of the roughness coefficient was evaluated. Results show that the roughness coefficient tends to decrease with increasing discharge and water depth, and over a certain range it appears to remain constant. Comparison of roughness coefficients calculated by field measurement data with those estimated by other methods shows that, although the field-measured values provide approximate roughness coefficients for relatively large discharge, there seems to be rather high uncertainty due to the difference in resultant values. For this reason, uncertainty related to the roughness coefficient was analyzed in terms of change in computed variables. On average, a 20% increase of the roughness coefficient causes a 7% increase in the water depth and an 8% decrease in velocity, but there may be about a 15% increase in the water depth and an equivalent decrease in velocity for certain cross-sections in the study reach. Finally, the validity of estimated roughness coefficient based on field measurements was examined. A 10% error in discharge measurement may lead to more than 10% uncertainty in roughness coefficient estimation, but corresponding uncertainty in computed water depth and velocity is reduced to approximately 5%. Conversely, the necessity for roughness coefficient estimation by field measurement is confirmed. Manning's roughness coefficient was estimated for a gravel-bed river reach using field measurements of water level and discharge, and the applicability of various methods used for estimation of the roughness coefficient was evaluated. Results show that the roughness coefficient tends to decrease with increasing discharge and water depth, and over a certain range it appears to remain constant. Comparison of roughness coefficients calculated by field measurement data with those estimated by other methods shows that, although the field-measured values provide approximate roughness coefficients for relatively large discharge, there seems to be rather high uncertainty due to the difference in resultant values. For this reason, uncertainty related to the roughness coefficient was analyzed in terms of change in computed variables. On average, a 20% increase of the roughness coefficient causes a 7% increase in the water depth and an 8% decrease in velocity, but there may be about a 15% increase in the water depth and an equivalent decrease in velocity for certain cross-sections in the study reach. Finally, the validity of estimated roughness coefficient based on field measurements was examined. A 10% error in discharge measurement may lead to more than 10% uncertainty in roughness coefficient estimation, but corresponding uncertainty in computed water depth and velocity is reduced to approximately 5%. Conversely, the necessity for roughness coefficient estimation by field measurement is confirmed.
出处 《Water Science and Engineering》 EI CAS 2010年第2期217-232,共16页 水科学与水工程(英文版)
基金 supported by the 2006 Core Construction Technology Development Project(Grant No.06KSHS-B01) through the ECORIVER21 Research Center in KICTTEP of MOCT KOREA
关键词 roughness coefficient estimation field measurement gravel-bed river UNCERTAINTY roughness coefficient estimation field measurement gravel-bed river uncertainty
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参考文献19

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同被引文献26

  • 1Zhao-YinWANG,JiangXU,ChangzhiLI.DEVELOPMENT OF STEP-POOL SEQUENCE AND ITS EFFECTS IN RESISTANCE AND STREAM BED STABILITY[J].International Journal of Sediment Research,2004,19(3):161-171. 被引量:18
  • 2Shengfa YANG,Jiang HU,Xingkui WANG.INCIPIENT MOTION OF COARSE PARTICLES IN HIGH GRADIENT RIVERS[J].International Journal of Sediment Research,2006,21(3):220-229. 被引量:2
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  • 6Wang,Z. Y,Melching,C. S,Duan,X. H,Yu,G. A.Ecological and hydraulic studies of step-poolsystems. Journal of Hydraulic Engineering ASCE . 2009
  • 7Wittenberg,L.Structural Patterns and Bed Stability of Humid Temperate,Mediterranean and Semi-arid Gravel Bed Rivers. . 2002
  • 8Marwan A Hassan,Michael Church.experiments on surface structure and partial sediment transport on a gravel bed. Water Resources . 2000
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