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    <p>I am not entirely I understand your question. The temperature of
      liquid coming out of the tank will depend on where you have
      specified that outlet to be located. If the outlet is located
      physically at the top of the tank then the leaving liquid
      temperature should be the temperature of the liquid in the top
      node of the tank (not the average tank temperature).</p>
    <p>If I misunderstood your question, my apologies. Could you please
      give me a bit more detail in that case?</p>
    <p>kind regards,</p>
    <p> David</p>
    <p><br>
    </p>
    <div class="moz-cite-prefix">On 03/19/2019 05:03, berkane ahlem via
      TRNSYS-users wrote:<br>
    </div>
    <blockquote type="cite"
cite="mid:CACC+vA52K-v9XK-XqW+DgknztBkbbK7N=ni-1MwUxnEKkzbZ5g@mail.gmail.com">
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        <div dir="auto" style="font-family:sans-serif"><span
            style="font-size:13.696px">Hello sirs,</span></div>
        <div dir="auto" style="font-family:sans-serif"><span
            style="font-size:13.696px">I simulate a solar cycle coupled
            with  GHP  for space heating </span><span
            style="font-size:13.696px">and DHW. </span><font
            face="sans-serif"><span style="font-size:13.696px">in my
              stratigy of control if the average temperature of DHW
              exceeds the set point the pump citculation transfers the
              excess heat of DHW tank type (4b) to the borehole .</span></font></div>
        <div dir="auto" style="font-family:sans-serif"><font
            face="sans-serif"><span style="font-size:13.696px">my
              question is:  can i use average tank temperature as output
              and i assumed  constant flow rate  in circulation pump as
              output flow rate.</span></font></div>
        <div dir="auto" style="font-family:sans-serif"><font
            face="sans-serif"><span style="font-size:13.696px">Thank
              you </span></font></div>
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      <br>
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      <pre class="moz-quote-pre" wrap="">_______________________________________________
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</pre>
    </blockquote>
    <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>

<a class="moz-txt-link-freetext" href="http://www.tess-inc.com">http://www.tess-inc.com</a>
<a class="moz-txt-link-freetext" href="http://www.trnsys.com">http://www.trnsys.com</a></pre>
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