Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/69967
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Type: Journal article
Title: Jacobian matrix for solving water distribution system equations with the Darcy-Weisbach head-loss model
Author: Simpson, A.
Elhay, S.
Citation: Journal of Hydraulic Engineering, 2011; 137(6):696-700
Publisher: ASCE-Amer Soc Civil Engineers
Issue Date: 2011
ISSN: 0733-9429
1943-7900
Statement of
Responsibility: 
Angus Simpson and Sylvan Elhay
Abstract: The widely used Todini and Pilati method for solving the equations that model water distribution systems was originally developed for pipes in which the head loss is modeled by the Hazen-Williams formula. The friction factors in this formula are independent of flow. Rossman's popular program EPANET implements elements of the Todini and Pilati algorithm, but when the Darcy-Weisbach head-loss formula is used, it does not take into account the dependence of the friction factors on the Reynolds number, and therefore flow, in computing the Jacobian. We present the correct Jacobian matrix formulas, which must be used in order to fully account for the friction factor's dependence on flow when the Todini and Pilati method is applied with the Darcy-Weisbach head-loss formula. With the correct Jacobian matrix the Todini and Pilati implementation of Newton's method has its normally quadratic convergence restored. The new formulas are demonstrated with an illustrative example. © 2011 American Society of Civil Engineers.
Keywords: Water distribution systems
Simulation
Modeling
Steady state.
Description: Corrected by:Erratum: Jacobian Matrix for Solving Water Distribution System Equations with the Darcy-Weisbach Head-Loss Model, in Vol. 143, Issue 9, 08217002. There is a typographical error in Table 5. The formula for Case 3, the turbulent region (R≥4,000) in that table of the published paper.
Rights: © 2011 American Society of Civil Engineers
DOI: 10.1061/(ASCE)HY.1943-7900.0000341
Published version: http://dx.doi.org/10.1061/(asce)hy.1943-7900.0000341
Appears in Collections:Aurora harvest 7
Civil and Environmental Engineering publications
Environment Institute publications

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