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Sharp-Edged Orifice - Circular cross-section (IDELCHIK)

(IDELCHIK) Model description: This model of component calculates the minor head loss (pressure drop) generated by the flow in a sharp-edged orifice installed in a straight pipe The head loss by friction in the inlet and outlet piping is not taken into account in this component Model formulation: Hydraulic diameter (m): D h D 0



Sudden expansion - Circular cross-section (IDELCHIK)

(IDELCHIK) Model description: This model of component calculates the minor head loss (pressure drop) generated by the flow in a sudden expansion The head loss by friction in the inlet and outlet piping is not taken into account in this component Model formulation: Minor cross-sectional area (m²): 4 F 2 0 0 D S Major cross-sectional area (m²



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3 7 Idelchik’s Method This is also very sophisticated method for calculation of pressure drop in elbows (Idelchik, 1975) This method depends also on the roughness of pipe in comparison with previous one Discreteness of some co efficients is certain disadvantage 4 Application of Calculation Methods



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Chapter 3 Flow Analysis

the excellent reference Handbook of Hydraulic Resistance by Idelchik (1986) This book is now considered the leading source of design data for hydraulic systems Some useful expressions for the computing minor losses in pipe systems are supplied in the handouts Two useful expressions which are used often in flow modelling are the sudden con-



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Idelchik Pg 382 -> 0 20 0 65 1 20 1 30 1 37 ∆ -> 0 0 1 17 2 2 13 AS_BEND δ LEL a120 0 7 j Cδ 6j LEL j (This function has not been used in this calculation) Elbow with Sharp Corners - Idelchik 3rd Ed, Page 366 ξL_SHARP( ) 0 95δ 33 5deg δ 0 95 sin δ 2 2 2 05 sin δ 2 4



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Environment Protection Engineering

Entrance loss coefficients in pipe hydraulic systems 107 In order to illustrate the course of the dependence α(Re), a number of values of α calculated from Eq (3) were given, that is: α({5, 10, 102, 103}μ103) = {1 22, 1 15,



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HNDB F HDRL RTN - CERN

HANDBOOK OF

HYDRAULICRESISTANCE3rd Edition

I.E. Idelchik

Research Institute for Gas Purification

Moscow

Editor

M.O. Steinberg

Research Institute for Gas Purification

Moscow

Translated by

Greta R. Malyavskaya

A.V. Luikov Heat and Mass Transfer Institute

Minsk

Translation Editor

Oleg G. Martynenko

A.V. Luikov Heat and Mass Transfer Institute

Minsk

JAICO PUBLISHING HOUSE

Ahmedabad Bangalore Bhopal Bhubaneswar Chennai

Delhi Hyderabad Kolkata Lucknow Mumbai

TABLE OF CONTENTS

Editor's Preface

Preface to the English Editionvii

Preface to the Second Russian Edition ix

Preface to the Third Editionxi

Nomenclature xiii

Useful Conversions of Units xvi

Reader's Guide and Introduction x ix

1.General Information and Elements of Aerodynamics and

Hydraulics of Pressure Systems 1

2.Resistance to Flow in Straight Tubes and Conduits:

Friction Coefficients and Roughness 75

3.Resistance to Flow at the Entrance in Tubes and Conduits:

Resistance Coefficients of Inlet Sections 149

4.Resistance to Flow through Orifices with Sudden Changes in

Velocity and Flow Area: Resistance Coefficients of Sections with Sudden Expansion, Sudden Contraction, Orifices,

Diaphragms, and Apertures 189

5.Resistance to Flow with a Smooth Change in Velocity:

Resistance Coefficients of Diffusers and Converging and

Other Transition Sections239

6.Resistance to Flow with Changes of the Stream Direction:

Resistance Coefficients of Curved Segments —

Elbows, Bends, etc 331

7.Resistance in the Cases of Merging of Flow Streams and

Division into Flow Streams: Resistance Coefficients of

Wyes, Tees, and Manifolds 413

8.Resistance to Flow through Barriers Uniformly Distributed Over

the Channel Cross Section: Resistance Coefficients of Grids,

Screens, Porous Layers, and Packings503

9.Resistance to Flow through Pipe Fittings and Labyrinth Seals:

Resistance Coefficients of Throttling Devices, Valves,

Plugs, Labyrinth Seals, and Compensators 541

10.Resistance to Flow Past Obstructions in a Tube:

Resistance Coefficients of Sections with Protuberances,

Trusses, Girders, and Other Shapes587

11Resistance to Flow at the Exit from Tubes and Channels:

Resistance Cpefficients of Exit Sections627

12. Resistance to Flow through Various Types of Apparatus:

Resistance Coefficients of Apparatus and Other Equipment701

Index775

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