Let's study this form of energy: Heat transfer

in #steemstem6 years ago (edited)


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Heat transfer is a science that seeks to predict the transfer of energy that can occur between material bodies, as a result of a temperature difference. Thermodynamics teaches that this energy transfer is defined as heat. The science of heat transfer not only tries to explain how heat energy can be transferred, but also tries to predict the speed at which this exchange will take place under certain specified conditions. The fact that a heat transfer regime is the desired objective of an analysis, points out the difference between heat transfer and thermodynamics.

When there is a phenomenon of heat transfer, there are many variables that are subject to curiosity, to be studied by science and engineering, we must keep in mind that science studies the phenomena and laws that govern physical behavior, then put all these achievements in the hands of engineering, and that this is responsible for applying all that science in benefits for humanity.


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That is why all these experimental studies on heat transfer have had to transcend and go above all the knowledge that thermodynamics can give us. For this science evolved to create a section where you can agglomerate all the knowledge that involves the phenomena of heat transfer, the transfer of heat to the first and second principles of thermodynamics, by providing additional experimental rules that can be used to establish the laws that govern the phenomena of energy transfer speed. We say then that there is an energy transfer, since there is a displacement or trajectory to move a quantity of heat from one point to another.


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To understand a bit because heat transfer phenomena are studied by another branch different from thermodynamics, we can ask ourselves the following question:
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Will all the physical parameters that originate in the transfer of heat be covered?

To answer this question, consider the different types of problems that are treated by thermodynamics and heat transfer, consider the cooling of a hot steel rod that is placed in a container with water.

Thermodynamics can be used to predict the final equilibrium temperature of the combination of the steel bar and water. Thermodynamics will not tell us how long it will take to reach this equilibrium condition or what the bar temperature will be after a certain time has elapsed before the equilibrium condition is reached.

This limitation makes us think about having to develop a knowledge parallel to thermodynamics, which helps us to have results separately, and not in a totality of the phenomenon. The transfer of heat as an independent science of thermodynamics means that we can understand and study the final temperature states of the two components, that is, the steel bar and the water, the speeds in the heat transfer, the magnitudes of the trajectory traveled by this transfer, and even by means of equations developed by different laws we can find the type of material that conducts and / or transfers this heat from one body to another.

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Transport modes for heat transfer.

Heat transfer by conduction.

Experience has shown that when there is a temperature gradient in a body, there is an energy transfer from the high temperature region to the low temperature region. We say that energy is transferred by conduction and that the rate of energy transfer per unit area is proportional to the normal temperature gradient:

q: represents the total heat transfer

: represents the temperature gradient in relation to the heat path.

A: is the area of ​​the material that is involved in heat transfer

K: is the thermal conductivity of the material.

It is important to evaluate and analyze what this equation represents, first this equation is the result of experimental studies carried out by the French mathematical physicist Joseph Fourier, which expresses by means of this equation an equality in which the thermal conductivity K is defined , where the heat flow is expressed in watts per meter per degree Celsius, all belonging to the international system.

There are other forms of heat transfer, which are convection and radiation, modes of heat transfer by convection and radiation will be treated in subsequent publications, with the intention of not making this publication as extensive.


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Importance of the study of heat transfer in engineering.

Almost all industrial processes at small and large scale heat transfer phenomena occur, which makes us think that energy costs, the unit cost for heat generation, especially in parts where it is very cold is usually very expensive, it is therefore the importance of the study of heat transfer, because by means of its various laws, for example in the heat transfer by conduction we can choose to choose the material that makes me perform a high heat transfer in the shortest time and least possible cost, that within the engineering involves optimized design, in my particular case I am aware that to graduate in the field of Food Engineering is one of the branches of the processes that most attracts my attention, and the that I think I will give my biggest contribution.

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Book consulted: Heat transfer. J. P. Holman.Mcgraw Hill. Mexico. 1999.
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Hello @hirally..!
Ur article is interesting. But it seems like u r using copyright protected images in ur post.. Please replace them with free images to maintain the copyright guideline. For more info about image issues please check this article.

Hello @christinaa, thanks for warning me, I did not know anything about images with copyright, the ones I was using were not public domain, I was researching and I found a web page called wikimedia commons, where I found the images that I am now using, I hope that you can review them, and at the same time tell me if everything is ok.

Images are okay now... U might want to mention the author name when u give the image source for CC 3.0, 2.0 licensed images.. U can visit our discord server if u feel like u might need some assistance from our mentor team..
Good day..!

Waaw thermodynamics, i really miss it :)
thank you for this interresting post

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