Heat exchanger design guide : a practical guide for planning, selecting and designing of shell and tube exchangers /

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Bibliographic Details
Online Access: Full text (MCPHS users only)
Main Authors: Nitsche, M. (Manfred) (Author), Gbadamosi, R. O. (Author)
Format: Electronic eBook
Language:English
Published: Kidlington, Oxford, UK : Butterworth Heinemann/Elsevier, 2016
Subjects:
Local Note:ProQuest Ebook Central

MARC

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100 1 |a Nitsche, M.  |q (Manfred),  |e author.  |1 https://id.oclc.org/worldcat/entity/E39PCjFxrMJ44MBc6bTyhWMvRC 
245 1 0 |a Heat exchanger design guide :  |b a practical guide for planning, selecting and designing of shell and tube exchangers /  |c M. Nitsche and R.O. Gbadamosi. 
264 1 |a Kidlington, Oxford, UK :  |b Butterworth Heinemann/Elsevier,  |c [2016] 
300 |a 1 online resource 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
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504 |a Includes bibliographical references and index. 
505 0 |a Front Cover; HEAT EXCHANGER DESIGN GUIDE; Copyright; CONTENTS; FOREWORD; 1 -- Heat Exchanger Design; 1.1 PROCEDURE IN HEAT EXCHANGER DESIGN; 1.2 INFORMATION ABOUT HEAT EXCHANGERS; 1.2.1 Tube Pattern; 1.2.2 Bypass and Leakage Streams; 1.2.3 Baffles; 1.2.4 Technical Remarks; 1.2.5 Selection of a Shell and Tube Exchanger; 1.2.5.1 Which Heat Exchanger Types Can Be Cleaned?; NOMENCLATURE; REFERENCES; 2 -- Calculations of the Temperature Differences LMTD and CMTD; 2.1 LOGARITHMIC MEAN TEMPERATURE DIFFERENCE FOR IDEAL COUNTERCURRENT FLOW 
505 8 |a 2.2 CORRECTED TEMPERATURE DIFFERENCE FOR MULTIPASS HEAT EXCHANGER2.3 INFLUENCE OF BYPASS STREAMS ON LMTD; 2.4 MEAN WEIGHTED TEMPERATURE DIFFERENCE; 2.5 DETERMINATION OF THE HEAT EXCHANGER OUTLET TEMPERATURES; 2.5.1 Calculation of the outlet temperatures in a multipass heat exchanger under consideration of the temperature efficiency fact ... ; 2.5.1.1 Calculation of the outlet temperature Tc2 of the cold medium; 2.5.2 Calculation of the outlet temperature th2 for ideal countercurrent without F; REFERENCES AND FURTHER READING 
505 8 |6 880-01  |a 4.2.2 Number of tubes per pass tP for a given flow velocity wT4.2.3 Required number of tubes per pass tP for a given Reynolds number Re; 4.2.4 Required flow velocity wT for a given Reynolds number Re; 4.3 SHELL-SIDE CALCULATIONS (FIGURE 4.2); 4.3.1 Flow cross section across for the flow across the tubes (Figure 4.2); 4.3.2 Flow cross section aw for the longitudinal flow in the baffle cuts; 4.3.3 Average flow cross section aav on the shell side; 4.3.4 Shell-side flow velocities wav; 4.3.5 Required baffle spacing B for a given cross stream velocity wcross 
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650 0 |a Heat exchangers  |x Design and construction. 
700 1 |a Gbadamosi, R. O.,  |e author. 
776 0 8 |i Print version:  |a Nitsche, Manfred.  |t Heat Exchanger Design Guide : A Practical Guide for Planning, Selecting and Designing of Shell and Tube Exchangers.  |d : Elsevier Science, ©2015  |z 9780128037645 
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880 8 |6 505-01/(S  |a 3 -- Calculations of the Heat Transfer Coefficients and Pressure Losses in Convective Heat Transfer3.1 TUBE-SIDE HEAT TRANSFER COEFFICIENT [3,6,12,14,16]; 3.2 SHELL-SIDE HEAT TRANSFER COEFFICIENT [1,2,4,9,10-12,14-16]; 3.3 COMPARISON OF DIFFERENT CALCULATION MODELS; 3.4 PRESSURE LOSS IN CONVECTIVE HEAT EXCHANGERS; 3.4.1 Tube-side pressure drop ΔPT; 3.4.2 Shell-side pressure loss; 3.4.2 Shell-side pressure loss; 3.5 HEAT EXCHANGER DESIGN WITH HEAT EXCHANGER TABLES; Outline placeholder; Outline placeholder; Outline placeholder; Notes for the heat exchanger tables:; NOMENCLATURE 
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