BIRLA INSTITUTE OF TECHNOLOGY AND SCIENCE, Pilani Pilani Campus Instruction Division
FIRST FIRST SEMESTER SEMESTER 2018-2019 2018-2019 Course Handout Part II Date: 02/08/20 02/08/2018 18
While While Part-I Part-I is a General General Handout Handout for all courses courses appended appended to the Time Table, Table, Part II provides provides additional specific details details regarding the the course. Course No No. : ME F311 Course Ti Title : Heat Tr Transfe sfer Instructor-in-charge : P.SRINIVASAN; Instructor: Instructor: Shyam Sunder Sunder Yadav, Venkatesh, Venkatesh, Aakash Aakash Rai.
Course Description: Fundamental Fundamental concepts concepts of of heat transfer; steady state and unsteady unsteady state heat heat conduction; analytical and empirical relations for forced and free convection heat transfer; heat exchangers; boiling and condensation; condensation; heat transfer transfer by radiation; associated laboratory. laboratory. Scope and and Objectiv Objective e of The course course: This This course course is design designed ed to make make the stude students nts famili familiari arize ze with with the concepts of heat heat transfer and its applications. As a part of this course, students students have to do the experiments to correlate theoretical knowledge with the experimental results. 1. Text Bo Book okss T1: JP Holman Holman and Souvik Souvik Bhatt Bhattach achary aryya, ya, Heat Heat Tran Transfe sferr (SI Editio Edition), n), McGraw McGraw Hill Hill Educat Education ion,, th India, 2011,10 Edition. T2: Mittal Mittal RK, Lab Manual, EDD Notes 2004.
2. Refe Refere renc nce e Bo Book okss R1: Incropera, Dewitt, Dewitt, Bergmann Bergmann and Lavine, Fundamentals Fundamentals of Heat and Mass Transfer, Transfer, 6th Ed.,, Wile Ed. Wiley y Indi India, a, 201 2010, 0, 6th edition. R2: F. Kreith Kreith & M. M. S. Bohn, Bohn, Principl Principles es of Heat Heat Transfer, Transfer, Brooks Brooks Cole, Cole, 2000, 2000, 6th edition. http://library.books24x7.com/books.aspx?btid={84a9b09c-bb03-41fa-a7112c5ae007c124}&aroot={974cc99b-5f2e-4b3a-a7c6-2dd73a3224d8}(24X7 2c5ae007c124}&aroot={974cc99b-5f2e-4b3a-a7c6-2dd73a3224d8} (24X7 E books) 3.Course Plan Lec
Learning Objectives
Topics to be covered
Ref. Chap/Sec in Text/ Text/ Ref Ref Boo Book k
Reca Recapi pitu tulat late e basi basic c conc concep epts ts of of Introduct Introduction ion to heat transfer transfer transport phenomena
Class notes
2-4
Learn basics of conduction
1.1 – 1.2 (T1)
5-7
Unders Understan tand d analys analysis is of 1-D steady steady 1-D steady state heat conduction state heat conduction
2.1 2.1 – 2.8 2.8 (T (T1)
8-9
Unde Unders rsta tand nd heat heat tran transfe sferr extended surfaces
2.9 2.9 – 2.10 2.10 (T1) (T1)
1
Heat conduction equation
from from
Extended surface heat transfer
10-11
Learn heat transfer analysis of Lumped system analysis; analytical unsteady-state conduction methods of analysis
3.1 3.1 – 3.2 3.2 (T (T1) 3.4 3.4 – 3.6 3.6 (T (T1)
12-14
Analysis of multi-dimensional Analyt Analytica icall & numeri numerical cal methods methods steady state conduction
4.1 4.1 – 4.5 4.5 (T (T1)
15-1 15-16 6
Lear Learn n prin princi cipl ples es of of conv convect ectio ion n
Concepts and basic relations in convective convective heat transfer transfer
5.1-5.2 (T1) Class Notes
17-18
Understand forced convection heat heat trans transfer fer (inter (internal nal flow) flow)
Analytical solutions and empirical relations
5.10, 5.11, 6.2 (T1)
19-22
Understand forced convection heat heat tran transf sfer er (ext (exter erna nall flow flow))
Analytical solution and empirical relations relations for forced convection: convection: flat
5.4 – 5.9, 5. 5.12, 6.3 6.3 – 6.5 6.5 (T (T1)
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BIRLA INSTITUTE OF TECHNOLOGY AND SCIENCE, Pilani Pilani Campus Instruction Division
plate, cylinders, spheres, tube banks 23-2 23-24 4
Unde Unders rsta tand nd natu natura rall conv convec ecti tion on
Analytical solutions and empirical correlation
7.2 7.2 – 7.12 7.12 (T1) (T1)
25-2 25-29 9
Lear Learn n cond conden ensa sattion ion and and boil boilin ing g
Film and dropwise dropwise condensatio condensation, n, pool boiling
9.1-9.2,9.4-9.5 (T1)
30-3 30-33 3
Lear Learn n anal analys ysis is of of heat heat exc excha hang nger erss
Types of heat exchangers; LMTD and NTU method of analysis
10.1-10.13 (T1)
33-3 33-34 4
Unde Unders rsta tand nd basic basic laws laws of radi radiat atio ion n
Basic laws and nature of thermal radiation
8.1-8.3 (T1)
35-40
Learn princip principles les of radiative radiative heat transfer
Radiation heat exchange between surfaces; radiation shields; radiation network
8.4 – 8.8, 8.16 – 8.17 (T1)
4. Evaluatio Evaluation n Schedule Schedule Component
Duration
Weightage (% (%)
Date & Time
Type
90 min
50
9/10 9/10 2:00 2:00 3:30 PM
Open Open Book Book
--
40
--
Lab comprehensive exam
120 min
10
Open Book
Assignment (Best 4 out of 6)
45 min
20
Open Book
Comprehensive examination
180 min
80
Mid semester test Lab Lab repo report rt & Viva Viva
3/12 FN
Closed Bo Book
5. Chamber Chamber consultati consultation on hours: To be announ announced ced in class. class. 6. No Noti tice ces: s: Notices Notices pertainin pertaining g to this this course course will be display displayed ed on Mechani Mechanical cal Engg Dept. Dept. notice notice boards boards only. only. Emailed Emailed notices notices may may be sent sent as well. well. 7.List of Experiments Following is the the tentative list of experiments. experiments. The exact list will be announced at the beginning beginning of laborato laboratory ry session session along along with batch batch number, number, turn turn of each batch batch etc. No. 1. 2. 3. 4. 5. 6. 7. 8. 9. 10. 11.
Experiments Develo Developme pment nt of hydr hydrody odynam namic ic boun boundar dary y layer layer over over a flat flat plate plate Determ Determina inati tion on of of ther thermal mal Conduc Conductiv tivity ity of Insu Insulat lating ing Materi Material al Determ Determina inati tion on of equi equival valent ent therma thermall conduc conductiv tivity ity of of a compos composite ite slab slab Dete Determ rmin inat atio ion n of crit critic ical al thic thickn knes esss of insu insula lati tion on Determ Determina inati tion on of temper temperatu ature re distri distribut bution ion in fins fins under under natura naturall convec convectio tion n Determ Determina inati tion on of Tempera Temperatur ture e –Time –Time histo history ry under under trans transien ientt conduc conducti tion on Determ Determina inati tion on of forced forced conve convecti ction on heat heat transf transfer er coeff coeffici icient ent for for intern internal al flow flow Determin Determination ation of natura naturall convect convection ion heat transfer transfer coefficien coefficientt from from a vertical vertical cylinder cylinder Dete Determ rmin inat atio ion n of effe effect ctive ivene ness ss and and LMT LMTD D of a she shell ll and and tub tube e heat heat exch exchang anger er Determin Determination ation of tempera temperature ture distributi distribution on in a pin fin under under forced forced convecti convection on Compar Compariso ison n of drop dropwis wise e and film film conden condensat sation ion proces processes ses
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BIRLA INSTITUTE OF TECHNOLOGY AND SCIENCE, Pilani Pilani Campus Instruction Division
Prof. P.Srinivasan P.Srinivasan Instructor-in-charge ME F311 F311