A sixteen decimal places' accurate Darcy friction factor database using non-linear Colebrook's equation with a million nodes: A way forward to the soft computing techniques

The Colebrook's equation is considered as an empirical model to accurately compute the Darcy friction factor in pipes under fully-developed turbulent flow. Due to non-linearity and implicitness of the Colebrook's equation, one needs to use numerical methods to acquire reasonably good appro...

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Main Authors: Muhammad Mujtaba Shaikh, Shafiq-ur-Rehman Massan, Asim Imdad Wagan
Format: Article
Language:English
Published: Elsevier 2019-12-01
Series:Data in Brief
Online Access:http://www.sciencedirect.com/science/article/pii/S2352340919310881
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spelling doaj-335b246e27194872bf82f0dd9fa079632020-11-25T02:53:17ZengElsevierData in Brief2352-34092019-12-0127A sixteen decimal places' accurate Darcy friction factor database using non-linear Colebrook's equation with a million nodes: A way forward to the soft computing techniquesMuhammad Mujtaba Shaikh0Shafiq-ur-Rehman Massan1Asim Imdad Wagan2Department of Basic Sciences and Related Studies, Mehran University of Engineering and Technology, Jamshoro, Sindh, Pakistan; Supply Chain and Operations Management Research Group, Mehran University of Engineering and Technology, Jamshoro, Pakistan; Corresponding author. Department of Basic Sciences and Related Studies, Mehran University of Engineering and Technology, Jamshoro, Sindh, Pakistan.Shaheed Zulfikar Ali Bhutto Institute of Science and Technology, Sindh, Pakistan; Mohammad Ali Jinnah University, Karachi, Sindh, PakistanMohammad Ali Jinnah University, Karachi, Sindh, PakistanThe Colebrook's equation is considered as an empirical model to accurately compute the Darcy friction factor in pipes under fully-developed turbulent flow. Due to non-linearity and implicitness of the Colebrook's equation, one needs to use numerical methods to acquire reasonably good approximation to the true friction factor values. However, such idea is not preferred by practitioners as it demands use of computers – also more computational time and effort. To overcome this, explicit equations that can describe Darcy friction factor directly in terms of the Reynolds number and relative roughness are essential. Using Fixed point iteration method in the MATLAB software, we have developed a 16 decimal places' accurate friction factor database for the Darcy friction factor for a 1000 by 1000 mesh of Reynolds number and relative roughness values. The accurate dataset described in this work will serve to be basis for the construction of new and more reliable explicit equations using regression modeling, artificial intelligence techniques and other soft computing methods. Keywords: Colebrook's equation, Darcy friction, Soft computing, Accurate database, Nonlinear equationhttp://www.sciencedirect.com/science/article/pii/S2352340919310881
collection DOAJ
language English
format Article
sources DOAJ
author Muhammad Mujtaba Shaikh
Shafiq-ur-Rehman Massan
Asim Imdad Wagan
spellingShingle Muhammad Mujtaba Shaikh
Shafiq-ur-Rehman Massan
Asim Imdad Wagan
A sixteen decimal places' accurate Darcy friction factor database using non-linear Colebrook's equation with a million nodes: A way forward to the soft computing techniques
Data in Brief
author_facet Muhammad Mujtaba Shaikh
Shafiq-ur-Rehman Massan
Asim Imdad Wagan
author_sort Muhammad Mujtaba Shaikh
title A sixteen decimal places' accurate Darcy friction factor database using non-linear Colebrook's equation with a million nodes: A way forward to the soft computing techniques
title_short A sixteen decimal places' accurate Darcy friction factor database using non-linear Colebrook's equation with a million nodes: A way forward to the soft computing techniques
title_full A sixteen decimal places' accurate Darcy friction factor database using non-linear Colebrook's equation with a million nodes: A way forward to the soft computing techniques
title_fullStr A sixteen decimal places' accurate Darcy friction factor database using non-linear Colebrook's equation with a million nodes: A way forward to the soft computing techniques
title_full_unstemmed A sixteen decimal places' accurate Darcy friction factor database using non-linear Colebrook's equation with a million nodes: A way forward to the soft computing techniques
title_sort sixteen decimal places' accurate darcy friction factor database using non-linear colebrook's equation with a million nodes: a way forward to the soft computing techniques
publisher Elsevier
series Data in Brief
issn 2352-3409
publishDate 2019-12-01
description The Colebrook's equation is considered as an empirical model to accurately compute the Darcy friction factor in pipes under fully-developed turbulent flow. Due to non-linearity and implicitness of the Colebrook's equation, one needs to use numerical methods to acquire reasonably good approximation to the true friction factor values. However, such idea is not preferred by practitioners as it demands use of computers – also more computational time and effort. To overcome this, explicit equations that can describe Darcy friction factor directly in terms of the Reynolds number and relative roughness are essential. Using Fixed point iteration method in the MATLAB software, we have developed a 16 decimal places' accurate friction factor database for the Darcy friction factor for a 1000 by 1000 mesh of Reynolds number and relative roughness values. The accurate dataset described in this work will serve to be basis for the construction of new and more reliable explicit equations using regression modeling, artificial intelligence techniques and other soft computing methods. Keywords: Colebrook's equation, Darcy friction, Soft computing, Accurate database, Nonlinear equation
url http://www.sciencedirect.com/science/article/pii/S2352340919310881
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