Robert Koslover
Certified Consultant
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Posted:
1 decade ago
2011年10月13日 GMT-4 16:45
I haven't tried to reproduce your particular problem, but I have some wild guesses as to what might be happening, or at least impacting the computation.
1. Soil is a relatively poor conductor compared to copper. Soil "walls" would thus be so leaky and lossy that the cavity of your oven would not generate the strong fields inside that it would when made out of metal. And so your potato would cook very slowly indeed.
2. Water couples well to microwaves. Its dielectric constant is very high, however, which means the wavelengths in it are quite short compared to free space. So perhaps you have numeric/mesh-related problem there.
3. And finally, since you are apparently using 4.0, you may simply have specified the problem entirely wrong and not even realized it (personally, I find the 4.0 interface to be maddening). So I suggest you move up to version 4.2 or down to version 3.5a.
I haven't tried to reproduce your particular problem, but I have some wild guesses as to what might be happening, or at least impacting the computation.
1. Soil is a relatively poor conductor compared to copper. Soil "walls" would thus be so leaky and lossy that the cavity of your oven would not generate the strong fields inside that it would when made out of metal. And so your potato would cook very slowly indeed.
2. Water couples well to microwaves. Its dielectric constant is very high, however, which means the wavelengths in it are quite short compared to free space. So perhaps you have numeric/mesh-related problem there.
3. And finally, since you are apparently using 4.0, you may simply have specified the problem entirely wrong and not even realized it (personally, I find the 4.0 interface to be maddening). So I suggest you move up to version 4.2 or down to version 3.5a.
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Posted:
1 decade ago
2011年10月17日 GMT-4 03:20
Thanks a lot Robert!
I have reformulated the model by making a big box of oil with boundaries of soil and placing microwaves source in one wall of oil.I was able to get the temperature distribution but the temperature was not penetrating much deeper into the oil, instead it was only across the source boundary.(Model is attached ) Can you please look at it and suggest why temperature is not penetrating deep in to the oil.
Secondly, I want to draw a line of temperature versus distance (say along y axis) but could not find a way to do so, how can I do that?
Thirdly, I joined two different boxes of oil and water and tried to simulate them by using Microwaves but could not get the temperature distribution which I was getting in the above case of only oil domain. It gives me error of inconsistent initial values, Last time step is not converged. What could be the reason ?
One more question is why I can't change the frequency to below 1GHz in microwaves heating, is it because of the Microwaves(2.45GHz) operational characteristic?
Many thanks in advance for any of your help.
Thanks a lot Robert!
I have reformulated the model by making a big box of oil with boundaries of soil and placing microwaves source in one wall of oil.I was able to get the temperature distribution but the temperature was not penetrating much deeper into the oil, instead it was only across the source boundary.(Model is attached ) Can you please look at it and suggest why temperature is not penetrating deep in to the oil.
Secondly, I want to draw a line of temperature versus distance (say along y axis) but could not find a way to do so, how can I do that?
Thirdly, I joined two different boxes of oil and water and tried to simulate them by using Microwaves but could not get the temperature distribution which I was getting in the above case of only oil domain. It gives me error of inconsistent initial values, Last time step is not converged. What could be the reason ?
One more question is why I can't change the frequency to below 1GHz in microwaves heating, is it because of the Microwaves(2.45GHz) operational characteristic?
Many thanks in advance for any of your help.