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Measurement of resistance to turbulent flow in 8 rough conduits of various cross sectional forms; analysis of results indicated that diameter of inscribed circle is better linear scale to use in Reynolds and relative roughness terms of Nikuradse and Colebrook-White resistance equations than hydraulic diameter, and relative efficiency of variety of ordinary conduit forms can be significantly expressed by dimensionless ratio of inscribed circle diameter over hydraulic diameter.
Measurement of resistance to turbulent flow in 8 rough conduits of various cross sectional forms; analysis of results indicated that diameter of inscribed circle is better linear scale to use in Reynolds and relative roughness terms of Nikuradse and Colebrook-White resistance equations than hydraulic diameter, and relative efficiency of variety of ordinary conduit forms can be significantly expressed by dimensionless ratio of inscribed circle diameter over hydraulic diameter.
Flow in Noncircular Conduits
Malaika, Jamil (Autor:in)
Journal of the Hydraulics Division ; 88 ; 1-30
01.01.2021
301962-01-01 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
Engineering Index Backfile | 1962
|Secondary Flow in Noncircular Conduits
ASCE | 2021
|Discussion of “Flow in Noncircular Conduits”
ASCE | 2021
|Closure to “Flow in Noncircular Conduits”
ASCE | 2021
|Erratum for “Flow in Noncircular Conduits”
ASCE | 2021
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