سیویلیکا را در شبکه های اجتماعی دنبال نمایید.

Identifying the best method for linearizing the nonlinear friction term to analyze the transient flow in pipeline systems

Publish Year: 1401
Type: Journal paper
Language: English
View: 205

This Paper With 14 Page And PDF Format Ready To Download

Export:

Link to this Paper:

Document National Code:

JR_ARWW-9-2_003

Index date: 9 January 2023

Identifying the best method for linearizing the nonlinear friction term to analyze the transient flow in pipeline systems abstract

To analyze transient flows, continuity and momentum equations must be solved. Due to the non-linear friction term in the momentum equation, numerical methods such as method of characteristics (MOC) are used to analyze the problem in thetime domain. Although numerical methods are easy to use, but they are numerically expensive and time-consuming, especially for advanced applications of transient analysis, e.g., real-time evaluations and fault detection algorithms, including inverse problem solutions. To cope with mentioned problems, an approximate analytical solution should be investigated, which is not required high computational time. To this end, the nonlinear equations should be linearized. Thus, the focus of this paper is to investigate the linearization methods. Therefore, four different linearization methods are applied and the resultingequations of each method in different RPV systems are solved. The efficiency of each method is compared with the results obtained from the numerical analysis of nonlinear governing equations. The results show that linearized water hammerequations provide reasonable results in early pressure wave cycles. The obtained results show that the coefficient of determination (R2) of the linearized models changes from 0.92 to 0.99. Also, by comparing the results of linearization modelswith each other, the linearized momentum equation in the time domain by replacing the mean velocity instead of the instantaneous velocity is the most accurate model which R2 is 0.999452.

Identifying the best method for linearizing the nonlinear friction term to analyze the transient flow in pipeline systems Keywords:

Identifying the best method for linearizing the nonlinear friction term to analyze the transient flow in pipeline systems authors

Mahshid Alsadat Mousavian

Department of Civil Engineering, Faculty of Civil Engineering and Architecture, Shahid Chamran University of Ahvaz, Ahvaz, Iran.

Mohammad Mehdi Riyahi

Department of Civil Engineering, Faculty of Civil Engineering and Architecture, Shahid Chamran University of Ahvaz, Ahvaz, Iran.

Ali Haghighi

Department of Civil Engineering, Faculty of Civil Engineering and Architecture, Shahid Chamran University of Ahvaz, Ahvaz, Iran.

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
Amein M., Chu HL., Implicit numerical modeling of unsteady flows, ...
Basha H.A., Kassab B.G., A perturbation solution to the transient ...
Basha H.A., Kassab B.G., Analysis of water distribution systems using ...
Bender C.M., Milton K.A., Pinsky S.S., Simmons L.M., A new ...
Bergant A., Ross Simpson A., Vìtkovsk J., Developments in unsteady ...
Boulos P.F., Karney B.W., Wood D.J., Lingireddy S., Hydraulic transient ...
Brunone B., Golia U.M., Greco M., Some remarks on the ...
Carstens M.R., Roller J.E., Boundary-shear stress in unsteady turbulent pipe ...
Chaudhry M.H., Transient-flow equations, In Applied hydraulic transients, Springer: New ...
Izquierdo J., Iglesias P.L., Mathematical modelling of hydraulic transients in ...
Kim S., Impedance matrix method for transient analysis of complicated ...
Lee P.J., Lambert M.F., Simpson A.R., Vítkovský J.P., Liggett J., ...
Liggett J.A., Chen L.C., Inverse transient analysis in pipe networks, ...
Provenzano P.G., Baroni F., Aguerre R. J., The closing function ...
Ranginkaman M.H., Haghighi A., Samani H.M.V., Application of the frequency ...
Ranginkaman M.H., Haghighi A., Lee P.J., Frequency domain modelling of ...
Ramos H., Covas D., Borga A., Loureiro D., Surge damping ...
Rich, George R., Water-hammer analysis by the Laplace-Mellin transformation, Trans. ...
Riyahi M.M., Investigation of error resources in the transient flow ...
Riyahi M.M., Rahmanshahi M., Ranginkaman M.H., Frequency domain analysis of ...
Sobey R.J., Analytical solutions for unsteady pipe flow, Journal of ...
Vítkovský J.P., Lee P.J., Zecchin A.C., Simpson A.R., Lambert M.F., ...
Vardy A., Brown J., On turbulent, unsteady, smooth-pipe friction, In ...
Vítkovský J.P., Bergant A., Simpson A.R., Lambert M.F., Systematic evaluation ...
Wang X., Lambert M., Simpson A., Analysis of a transient ...
Wylie E.B., Streeter V.L., Suo L., Fluid transients in systems, ...
نمایش کامل مراجع