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<p>Mike,</p>
<p> I would suggest having a look at the Type128 documentation in
the file .\Trnsys18\Documentation\04-MathematicalReference.pdf. If
that does not answer your question then please send your project
to your distributor for assistance.</p>
<p>kind regards,</p>
<p> David</p>
<p><br>
</p>
<div class="moz-cite-prefix">On 10/17/2020 20:06, gao, zhenhua via
TRNSYS-users wrote:<br>
</div>
<blockquote type="cite"
cite="mid:CAEOTiZcyBes8V9NNox+onb7p_2Cu2xeoknKp=KXVY7RujybHSA@mail.gmail.com">
<meta http-equiv="content-type" content="text/html; charset=UTF-8">
Dear TRNSYS users,
<div><br>
<div dir="auto">I'm doing a simulation of hvac system。</div>
<div dir="auto">I have a question about the cooling tower(type
128),why it's 'Fluid leaving temperature ' can be equal to the
Air wetbulb temperature?</div>
<div dir="auto"><br>
</div>
<div dir="auto">My regards, </div>
<div dir="auto">Mike</div>
</div>
<br>
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<pre class="moz-signature" cols="72">--
***************************
David BRADLEY
Principal
Thermal Energy Systems Specialists, LLC
3 North Pinckney Street - suite 202
Madison, WI 53703 USA
P:+1.608.274.2577
F:+1.608.278.1475
<a class="moz-txt-link-abbreviated" href="mailto:d.bradley@tess-inc.com">d.bradley@tess-inc.com</a>
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<a class="moz-txt-link-freetext" href="http://www.trnsys.com">http://www.trnsys.com</a></pre>
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