<div dir="ltr">
<span class="gmail-im"><div class="gmail-m_5909256760636355228moz-cite-prefix">Hello everybody,<br></div><div class="gmail-m_5909256760636355228moz-cite-prefix"><br></div><div class="gmail-m_5909256760636355228moz-cite-prefix">I am looking at line 4876 (case 2) in this code<br></div><div class="gmail-m_5909256760636355228moz-cite-prefix"><a class="gmail-m_5909256760636355228moz-txt-link-freetext" href="https://github.com/ESP-rCommunity/ESP-rSource/blob/master/src/ebld/spmatl.F" target="_blank">https://github.com/<span class="gmail-il">ESP</span>-rCommunity/<span class="gmail-il">ESP</span>-rSource/blob/master/src/ebld/spmatl.F</a></div>
<div class="gmail-m_5909256760636355228moz-cite-prefix"><br></div><div class="gmail-m_5909256760636355228moz-cite-prefix">I still have a couple of questions. What is labeled as "tsoli" would correspond to the onset temperature? When looking at my crystallization graph I have offset = 21,25°C and onset = 23,13°C. The total latent heat is -35067 J/kg (heat out). <br></div><div class="gmail-m_5909256760636355228moz-cite-prefix"><br></div><div class="gmail-m_5909256760636355228moz-cite-prefix">In that case, in line 4880 would my shtliq correspond to 35067 J/kg (with or without the minus sign?), tsoli = 23,13°C and tmelt = 21,25°C? Is everything multiplied times 2? also, what is the meaning of the number two after the double " ** " in line 4880. <br></div><div class="gmail-m_5909256760636355228moz-cite-prefix"><br></div><div class="gmail-m_5909256760636355228moz-cite-prefix">Thank you very much. Your help is much appreciated. <br></div><div class="gmail-m_5909256760636355228moz-cite-prefix"><br></div><div class="gmail-m_5909256760636355228moz-cite-prefix">Greetings,</div><div class="gmail-m_5909256760636355228moz-cite-prefix">Juanita <br></div></span>
</div><br><div class="gmail_quote"><div dir="ltr" class="gmail_attr">Am Mo., 29. Juli 2019 um 12:42 Uhr schrieb Dariusz Heim <<a href="mailto:dariusz.heim@p.lodz.pl">dariusz.heim@p.lodz.pl</a>>:<br></div><blockquote class="gmail_quote" style="margin:0px 0px 0px 0.8ex;border-left:1px solid rgb(204,204,204);padding-left:1ex">
<div bgcolor="#FFFFFF">
<div class="gmail-m_5909256760636355228moz-cite-prefix">Dear Juanita,</div>
<div class="gmail-m_5909256760636355228moz-cite-prefix"><br>
</div>
<div class="gmail-m_5909256760636355228moz-cite-prefix">The displayed unit for thermal
conductivity should be W/(m^2K). <br>
</div>
<div class="gmail-m_5909256760636355228moz-cite-prefix"><br>
</div>
<div class="gmail-m_5909256760636355228moz-cite-prefix">The detailed explanation about "a" and
"b" you can find below:</div>
<div class="gmail-m_5909256760636355228moz-cite-prefix"><a class="gmail-m_5909256760636355228moz-txt-link-freetext" href="https://github.com/ESP-rCommunity/ESP-rSource/blob/master/src/ebld/spmatl.F" target="_blank">https://github.com/ESP-rCommunity/ESP-rSource/blob/master/src/ebld/spmatl.F</a></div>
<div class="gmail-m_5909256760636355228moz-cite-prefix">line 4876 (case 2).</div>
<div class="gmail-m_5909256760636355228moz-cite-prefix"><br>
</div>
<div class="gmail-m_5909256760636355228moz-cite-prefix">Good luck,<br>
Darek</div>
<div class="gmail-m_5909256760636355228moz-cite-prefix"><br>
</div>
<div class="gmail-m_5909256760636355228moz-cite-prefix"><br>
</div>
<div class="gmail-m_5909256760636355228moz-cite-prefix">W dniu 29.07.2019 o 09:48, Juanita
Solano Guzmán pisze:<br>
</div>
<blockquote type="cite">
<div dir="ltr">
<div>Hello to All, <br>
</div>
<div><br>
</div>
<div>I am currently trying to figure out the meaning of the
input values and units when defining a phase-change material.
<br>
</div>
<div><br>
</div>
<div><b>- Melting temperature degC:</b> no questions<br>
<b>- Solidification temperature degC:</b> no questions <br>
<b>- Thermal conductivity in the solid phase J/kg: </b>In the
ESPr interface the thermal conductivity is shown to have units
of J/kg, I assume this is a mistake? <br>
<b>- Thermal conductivity in the liquid phase J/kg: </b>same
as above<br>
<b>- Specific heat J/kg.K: </b>no questions<br>
<b>- Latent heat of member a J/kg.K^2 and b J/kg.K:</b> In a
previous post I read that a and b, represent the values of a
linear function y = ax + b. Woud this linear function
correspond to the effective heat capacity given by:</div>
<div><br>
</div>
<div>C_eff = L/(Te-To) + Cp(T=To)</div>
<div><br>
</div>
<div>L - latent heat <br>
</div>
<div>Te - Offset temperature</div>
<div>To - Onset temperature <br>
</div>
<div>Cp - specific heat at the onset temperature <br>
</div>
<div><br>
</div>
<div>in that case, would "a" be equal to L/(Te-To) and "b" to
Cp(T=To)? And then "x" in the linear function corresponds to
the temperature? <br>
</div>
<div><br>
</div>
<div>Thank you in advance for your help, <br>
</div>
<div><br>
</div>
<div>Best Regards,</div>
<div>Juanita <br>
</div>
<div><br>
</div>
</div>
<br>
<fieldset class="gmail-m_5909256760636355228mimeAttachmentHeader"></fieldset>
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