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عنوان
Demystifying numerical models :

پدید آورنده
John P.T. Mo, Sherman C.P. Cheung, Raj Das.

موضوع
Engineering mathematics.,Systems engineering.,Engineering mathematics.,Systems engineering.,TECHNOLOGY & ENGINEERING-- Engineering (General),TECHNOLOGY & ENGINEERING-- Reference.

رده
TA168
.
M62
2019

کتابخانه
Center and Library of Islamic Studies in European Languages

محل استقرار
استان: Qom ـ شهر: Qom

Center and Library of Islamic Studies in European Languages

تماس با کتابخانه : 32910706-025

INTERNATIONAL STANDARD BOOK NUMBER

(Number (ISBN
0081017561
(Number (ISBN
9780081017562
Erroneous ISBN
0081009755
Erroneous ISBN
9780081009758

TITLE AND STATEMENT OF RESPONSIBILITY

Title Proper
Demystifying numerical models :
General Material Designation
[Book]
Other Title Information
step-by step modeling of engineering systems /
First Statement of Responsibility
John P.T. Mo, Sherman C.P. Cheung, Raj Das.

.PUBLICATION, DISTRIBUTION, ETC

Place of Publication, Distribution, etc.
Saint Louis :
Name of Publisher, Distributor, etc.
Elsevier Science & Technology,
Date of Publication, Distribution, etc.
2018.

PHYSICAL DESCRIPTION

Specific Material Designation and Extent of Item
1 online resource (276 pages)

INTERNAL BIBLIOGRAPHIES/INDEXES NOTE

Text of Note
Includes bibliographical references and index.

CONTENTS NOTE

Text of Note
Front Cover; Demystifying Numerical Models; Copyright Page; Contents; Preface; 1 Introduction to Engineering Systems; 1.1 Systems Engineering Principles; 1.1.1 Integrity; 1.1.2 Stability; 1.1.3 Compatibility; 1.1.4 Safety; 1.1.5 Sustainability; 1.2 Nature of Engineering Systems; 2 Basic Numerical Techniques; 2.1 Introduction; 2.2 Roots of Equations; 2.2.1 Direct Search Method; 2.2.2 Bisection Method; 2.2.3 Newton-Raphson Method; 2.3 Differential Equations; 2.3.1 Euler's Method; 2.3.2 Modified Euler's Method; 2.3.3 Runge-Kutta Method Second Order; 2.3.4 Runge-Kutta Method Fourth Order
Text of Note
3 Wind Power and Aerodynamics Systems3.1 Liquid Flow Systems; 3.2 Basic Knowledge and Terminology of Wind Turbine; 3.3 Blade Element Theory; 3.3.1 Axial Force and Momentum Change; 3.3.2 Rotating Angular Momentum; 3.3.3 Blade Element and Relative Velocity; 3.3.4 Aerodynamic Lift and Drag Forces; 3.3.5 Losses at the Tip and Overall Power Output; 3.4 Blade Design and Solving Procedures; 3.4.1 Overall Blade Design Procedure; 3.4.2 Iterative Procedure for Solving the BEM; 3.4.3 Power Output of a Twisted and Tapered Blad (NACA S809); References; 4 Steady-State Heat Conduction Systems
Text of Note
4.1 Application of Heat Transfer Process4.2 The Three Modes of Heat Transfer; 4.2.1 Conduction; 4.2.2 Convection; 4.2.3 Radiation; 4.3 Steady-State Conduction Problems; 4.3.1 Governing Equations; 4.4 Boundary Conditions for Heat Conduction Problems; 4.4.1 Constant Temperature at Specific Surfaces; 4.4.2 Adiabatic Condition at Well-Insulated Surfaces; 4.4.3 Surfaces Subjected to Convection or Radiation Heat Transfer; 4.5 Finite Difference Approach; 4.5.1 First-Order Finite Difference Approximation; 4.5.2 Second-Order Finite Difference Approximation; 4.6 One-Dimensional Steady-State Conduction
Text of Note
4.6.1 One-Dimensional Conduction With Internal Heat Source4.6.2 Formulation for the Boundary Conditions; 4.6.3 Heat Dissipation of a Hot Plate; Reference; 5 Two-Dimensional and Transient Heat Conduction; 5.1 Importance of Two-Dimensional and Transient Heat Conduction Problems; 5.2 Direct Versus Iterative Methods; 5.3 Two-Dimensional Steady State Heat Conduction; 5.3.1 Two-Dimensional Discretization; 5.3.2 Two-Dimensional Heat Conduction in a Square Steel Column; 5.4 Time-Dependent Heat Conduction Problem; 5.4.1 Implicit and Explicit Time Discretization
Text of Note
5.4.2 Stability and Choice of Time Step for Explicit Method5.4.3 Transient Heat Conduction in a One-Dimensional Steel Bar; 6 Electrical Power Systems; 6.1 Electrical Systems; 6.2 Analysis of DC Motor Circuits; 6.3 Analysis of RLC Circuit; 6.4 Motor Driven Position Control System; 7 Industrial Systems; 7.1 Industrial Systems; 7.2 Transport Systems Modeling; 7.2.1 Transport on a Plane (Two-Dimensional Space); 7.2.2 Transport in Rectilinear Layout; 7.2.3 Transport in a Building; 7.3 Inventory Control; 7.3.1 Replenish Directly From a Stock Pile; 7.3.2 Varying Demand
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SUMMARY OR ABSTRACT

Text of Note
Demystifying Numerical Models: Step-by Step Modeling of Engineering Systems is the perfect guide on the analytic concepts of engineering components and systems. In simplified terms, the book focuses on engineering characteristics and behaviors using numerical methods. Readers will learn how the computational aspects of engineering analysis can be applied to develop various engineering systems to a level that is fit for implementation.

ACQUISITION INFORMATION NOTE

Source for Acquisition/Subscription Address
Proquest Ebook Central
Stock Number
5518669

OTHER EDITION IN ANOTHER MEDIUM

Title
Demystifying numerical models.
International Standard Book Number
9780081009758

TOPICAL NAME USED AS SUBJECT

Engineering mathematics.
Systems engineering.
Engineering mathematics.
Systems engineering.
TECHNOLOGY & ENGINEERING-- Engineering (General)
TECHNOLOGY & ENGINEERING-- Reference.

(SUBJECT CATEGORY (Provisional

TEC-- 009000
TEC-- 035000

DEWEY DECIMAL CLASSIFICATION

Number
620
.
00420285

LIBRARY OF CONGRESS CLASSIFICATION

Class number
TA168
Book number
.
M62
2019

PERSONAL NAME - PRIMARY RESPONSIBILITY

Mo, John P. T.

PERSONAL NAME - ALTERNATIVE RESPONSIBILITY

Cheung, Chi Pok
Das, Raj

ORIGINATING SOURCE

Date of Transaction
20200822084553.0
Cataloguing Rules (Descriptive Conventions))
pn

ELECTRONIC LOCATION AND ACCESS

Electronic name
 مطالعه متن کتاب 

[Book]

Y

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