Amazines Free Article Archive
www.amazines.com - Wednesday, August 06, 2025
Read about the most recent changes and happenings at Amazines.com
Log into your account or register as a new author. Start submitting your articles right now!
Search our database for articles.
Subscribe to receive articles emailed straight to your email account. You may choose multiple categories.
View our newest articles submitted by our authors.
View our most top rated articles rated by our visitors.
* Please note that this is NOT the ARTICLE manager
Add a new EZINE, or manage your EZINE submission.
Add fresh, free web content to your site such as newest articles, web tools, and quotes with a single piece of code!
Home What's New? Submit/Manage Articles Latest Posts Top Rated Article Search
Google
Subscriptions Manage Ezines
CATEGORIES
 Article Archive
 Advertising (133577)
 Advice (161673)
 Affiliate Programs (34799)
 Art and Culture (73858)
 Automotive (145728)
 Blogs (75623)
 Boating (9851)
 Books (17224)
 Buddhism (4130)
 Business (1331079)
 Business News (426461)
 Business Opportunities (366526)
 Camping (10974)
 Career (72796)
 Christianity (15854)
 Collecting (11638)
 Communication (115089)
 Computers (241958)
 Construction (38977)
 Consumer (49954)
 Cooking (17080)
 Copywriting (6734)
 Crafts (18203)
 Cuisine (7549)
 Current Affairs (20323)
 Dating (45910)
 EBooks (19704)
 E-Commerce (48279)
 Education (185537)
 Electronics (83525)
 Email (6438)
 Entertainment (159864)
 Environment (29004)
 Ezine (3040)
 Ezine Publishing (5454)
 Ezine Sites (1551)
 Family & Parenting (111012)
 Fashion & Cosmetics (196613)
 Female Entrepreneurs (11853)
 Feng Shui (134)
 Finance & Investment (310640)
 Fitness (106493)
 Food & Beverages (63058)
 Free Web Resources (7941)
 Gambling (30227)
 Gardening (25207)
 Government (10519)
 Health (630195)
 Hinduism (2206)
 Hobbies (44083)
 Home Business (91754)
 Home Improvement (251315)
 Home Repair (46263)
 Humor (4729)
 Import - Export (5462)
 Insurance (45105)
 Interior Design (29639)
 International Property (3488)
 Internet (191034)
 Internet Marketing (146690)
 Investment (22864)
 Islam (1161)
 Judaism (1352)
 Law (80500)
 Link Popularity (4596)
 Manufacturing (20933)
 Marketing (99329)
 MLM (14140)
 Motivation (18237)
 Music (27000)
 New to the Internet (9498)
 Non-Profit Organizations (4049)
 Online Shopping (129743)
 Organizing (7813)
 Party Ideas (11855)
 Pets (38165)
 Poetry (2229)
 Press Release (12691)
 Public Speaking (5643)
 Publishing (7566)
 Quotes (2407)
 Real Estate (126918)
 Recreation & Leisure (95497)
 Relationships (87678)
 Research (16182)
 Sales (80369)
 Science & Technology (110301)
 Search Engines (23525)
 Self Improvement (153318)
 Seniors (6224)
 Sexuality (36012)
 Small Business (49403)
 Software (83054)
 Spiritual (23537)
 Sports (116156)
 Tax (7664)
 Telecommuting (34070)
 Travel & Tourism (308303)
 UK Property Investment (3123)
 Video Games (13382)
 Web Traffic (11803)
 Website Design (56951)
 Website Promotion (36673)
 World News (1000+)
 Writing (35853)
Author Spotlight
LEMUEL ASIBAL

Lemuel Asibal is a web content writer who also ventures on writing articles and blog posts about any...more
LINDA HOLLAND

I am a passionate article and blog writer based in South Africa. With a love for life and a strong d...more
JOSEPH ZHOU

China Care Medical has been exporting out Chinese medical equipment for many different countries. We...more
HEINZ RAINER

Thirty years Africa, Asia, Europe | Worked in Industry, Trade | preferred Nations : China, Thailand,...more
AREESH ISHTIAQ

Areesh Ishtiaq a Top Rated SEO and Digital Marketing Guru on Upwork, working as a project manager fo...more


Heat transfer coefficient - China cosmetic packaging boxes - venetian glass mirrors Manufacturer by wqegtf rebr





Article Author Biography
Heat transfer coefficient - China cosmetic packaging boxes - venetian glass mirrors Manufacturer by
Article Posted: 06/10/2011
Article Views: 82
Articles Written: 1372
Word Count: 1277
Article Votes: 0
AddThis Social Bookmark Button

Heat transfer coefficient - China cosmetic packaging boxes - venetian glass mirrors Manufacturer


 
Business,Business News,Business Opportunities
Dittusoelter correlation (forced convection)

A common and particularly simple correlation useful for many applications is the Dittusoelter heat transfer correlation for fluids in turbulent flow. This correlation is applicable when forced convection is the only mode of heat transfer; i.e., there is no boiling, condensation, significant radiation, etc. The accuracy of this correlation is anticipated to be 15%.

For a liquid flowing in a straight circular pipe with a Reynolds number between 10 000 and 120 000 (in the turbulent pipe flow range), when the liquid's Prandtl number is between 0.7 and 120, for a location far from the pipe entrance (more than 10 pipe diameters; more than 50 diameters according to many authors) or other flow disturbances, and when the pipe surface is hydraulically smooth, the heat transfer coefficient between the bulk of the fluid and the pipe surface can be expressed as:

kw - thermal conductivity of the liquid (i.e.water)

DH - Di - Hydraulic diameter

Nu - Nusselt number

Pr - Prandtl number

Re - Reynolds number

n = 0.4 for heating (wall hotter than the bulk fluid) and 0.3 for cooling (wall cooler than the bulk fluid) .

The fluid properties necessary for the application of this equation are evaluated at the bulk temperature thus avoiding iteration

There exist simple fluid-specific correlations for heat transfer coefficient in boiling. The Thom correlation is for flow boiling of water (subcooled or saturated at pressures up to about 20 MPa) under conditions where the nucleate boiling contribution predominates over forced convection. This correlation is useful for rough estimation of expected temperature difference given the heat flux:

Tsat is the wall temperature elevation above the saturation temperature, K

q is the heat flux, MW/m2

P is the pressure of water, MPa

Note that this empirical correlation is specific to the units given.

Heat transfer coefficient of pipe wall

The resistance to the flow of heat by the material of pipe wall can be expressed as a "heat transfer coefficient of the pipe wall". However, one needs to select if the heat flux is based on the pipe inner or the outer diameter.

Selecting to base the heat flux on the pipe inner diameter, and assuming that the pipe wall thickness is small in comparison with the pipe inner diameter, then the heat transfer coefficient for the pipe wall can be calculated as if the wall were not curved:

where k is the effective thermal conductivity of the wall material and x is the wall thickness.

If the above assumption does not hold, then the wall heat transfer coefficient can be calculated using the following expression:

where di and do are the inner and outer diameters of the pipe, respectively.

The thermal conductivity of the tube material usually depends on temperature; the mean thermal conductivity is often used.

Combining heat transfer coefficients

For two or more heat transfer processes acting in parallel, heat transfer coefficients simply add:

For two or more heat transfer processes connected in series, heat transfer coefficients add inversely:

For example, consider a pipe with a fluid flowing inside. The rate of heat transfer between the bulk of the fluid inside the pipe and the pipe external surface is:

Q = heat transfer rate (W)

h = heat transfer coefficient (W/(m2K))

t = wall thickness (m)

k = wall thermal conductivity (W/mK)

A = area (m2)

T = difference in temperature.

Overall heat transfer coefficient

The overall heat transfer coefficient U is a measure of the overall ability of a series of conductive and convective barriers to transfer heat. It is commonly applied to the calculation of heat transfer in heat exchangers, but can be applied equally well to other problems.

For the case of a heat exchanger, U can be used to determine the total heat transfer between the two streams in the heat exchanger by the following relationship:

Q = heat transfer rate (W)

U = overall heat transfer coefficient (W/(mK))

A = heat transfer surface area (m2)

TLM = log mean temperature difference (K)

The overall heat transfer coefficient takes into account the individual heat transfer coefficients of each stream and the resistance of the pipe material. It can be calculated as the reciprocal of the sum of a series of thermal resistances (but more complex relationships exist, for example when heat transfer takes place by different routes in parallel):

R = Resistance(s) to heat flow in pipe wall (K/W)

Other parameters are as above.

The heat transfer coefficient is the heat transferred per unit area per kelvin. Thus area is included in the equation as it represents the area over which the transfer of heat takes place. The areas for each flow will be different as they represent the contact area for each fluid side.

The thermal resistance due to the pipe wall is calculated by the following relationship:

x = the wall thickness (m)

k = the thermal conductivity of the material (W/(mK))

A = the total area of the heat exchanger (m2)

This represents the heat transfer by conduction in the pipe.

The thermal conductivity is a characteristic of the particular material. Values of thermal conductivities for various materials are listed in the list of thermal conductivities.

As mentioned earlier in the article the convection heat transfer coefficient for each stream depends on the type of fluid, flow properties and temperature properties.

Some typical heat transfer coefficients include:

Air - h = 10 to 100 W/(m2K)

Water - h = 500 to 10,000 W/(m2K)

Thermal resistance due to fouling deposits

Surface coatings can build on heat transfer surfaces during heat exchanger operation due to fouling. These add extra thermal resistance to the wall and may noticeably decrease the overall heat transfer coefficient and thus performance. (Fouling can also cause other problems.)

The additional thermal resistance due to fouling can be found by comparing the overall heat transfer coefficient determined from laboratory readings with calculations based on theoretical correlations. They can also be evaluated from the development of the overall heat transfer coefficient with time (assuming the heat exchanger operates under otherwise identical conditions). This is commonly applied in practice, e.g.. The following relationship is often used:

Uexp = overall heat transfer coefficient based on experimental data for the heat exchanger in the "fouled" state,

Upre = overall heat transfer coefficient based on calculated or measured ("clean heat exchanger") data,

Rf = thermal resistance due to fouling,

S.S. Kutateladze and V.M. Borishanskii, A Concise Encyclopedia of Heat Transfer, Pergamon Press, 1966.

F.Kreith (editor), "The CRC Handbook of Thermal Engineering", CRC Press, 2000.

W.Rohsenow, J.Hartnet, Y.Cho, "Handbook of Heat Transfer", 3rd edition, McGraw-Hill, 1998.

This relationship is similar to the harmonic mean; however, note that it is not multiplied with the number n of terms.

Coulson and Richardson, "Chemical Engineering", Volume 1,Elsevier, 2000

Turner C.W.; Klimas S.J.; Bbrideau M.G., "Thermal resistance of steam-generator tube deposits under single-phase forced convection and flow-boiling heat transfer", Canadian Journal of Chemical Engineering, 2000, vol. 78, No 1, pp. 53-60

Overall Heat Transfer Coefficients

Correlations for Convective Heat Transfer

Categories: Convection

Heat transfer

Heat conduction

I am an expert from zuansf.com, while we provides the quality product, such as China cosmetic packaging boxes , venetian glass mirrors Manufacturer, bathroom makeup mirror,and more.

Related Articles - China cosmetic packaging boxes, venetian glass mirrors Manufacturer,

Email this Article to a Friend!

Receive Articles like this one direct to your email box!
Subscribe for free today!

 Rate This Article  
Completely useless, should be removed from directory.
Minimal useful information.
Decent and informative.
Great article, very informative and helpful.
A 'Must Read'.

 

Do you Agree or Disagree? Have a Comment? POST IT!

 Reader Opinions 
Submit your comments and they will be posted here.
Make this comment or to the Author only:
Name:
Email:
*Your email will NOT be posted. This is for administrative purposes only.
Comments: *Your Comments WILL be posted to the AUTHOR ONLY if you select PRIVATE and to this PUBLIC PAGE if you select PUBLIC, so write accordingly.
 
Please enter the code in the image:



 Author Login 
LOGIN
Register for Author Account

 

Advertiser Login

 

ADVERTISE HERE NOW!
   Limited Time $60 Offer!
   90  Days-1.5 Million Views  

 

Great Paranormal Romance


ALEX BELSEY

I am the editor of QUAY Magazine, a B2B publication based in the South West of the UK. I am also the...more
STEPHEN BYE

Stephen Bye is a fiction writer. His most recent novels are a 5-book “The Developer” series which be...more
PAUL PHILIPS

For more articles, blog messages & videos and a free e-book download go to www.NewParadigm.ws your p...more
TIM FAY

After 60-plus years of living, I am just trying to pass down some of the information that I have lea...more
LAURA JEEVES

At LeadGenerators, we specialise in content-led Online Marketing Strategies for our clients in the t...more
LEVAL AINAH

I am an internet marketer and also an educator. My goal is to help others who are looking to improve...more
STEVERT MCKENZIE

Stevert Mckenzie, Travel Enthusiast. ...more
GENE MYERS

Author of four books and two screenplays; frequent magazine contributor. I have four other books "in...more
ADRIAN JOELE

I have been involved in nutrition and weight management for over 12 years and I like to share my kn...more
MICHAEL BRESCIANI

Rev Bresciani is the author of two Christian books. One book is an important and concisely written b...more

HomeLinksAbout UsContact UsTerms of UsePrivacy PolicyFAQResources
Copyright © 2025, All rights reserved.
Some pages may contain portions of text relating to certain topics obtained from wikipedia.org under the GNU FDL license