<html><body><div style="color:#000; background-color:#fff; font-family:bookman old style, new york, times, serif;font-size:14pt"><div><span>i mean calculate temperature after and before manifold as a file that it is enclosed with this message <br></span></div><div style="display: block;" class="yahoo_quoted"> <div style="font-family: bookman old style, new york, times, serif; font-size: 14pt;"> <div style="font-family: HelveticaNeue, Helvetica Neue, Helvetica, Arial, Lucida Grande, sans-serif; font-size: 12pt;"> <div dir="ltr"> <font face="Arial" size="2"> On , mohameed alsamareey <muham76@yahoo.com> wrote:<br> </font> </div> <br><br> <div class="y_msg_container"><div id="yiv2638230040"><div><div style="color:#000;background-color:#fff;font-family:bookman old style, new york, times, serif;font-size:14pt;"><div><span>Hi Jeff</span></div><div style="color:rgb(0, 0, 0);font-size:18.6667px;font-family:bookman old style, new york, times,
serif;background-color:transparent;font-style:normal;"><span>i would like to calculate the temperature water at manifold (at location the heat pipe condenser putted in manifold )</span></div><div style="color:rgb(0, 0, 0);font-size:18.6667px;font-family:bookman old style, new york, times, serif;background-color:transparent;font-style:normal;"><span><br clear="none"><br clear="none"></span></div><div class="yiv2638230040yahoo_quoted" style="display:block;">Hi <div style="font-family:bookman old style, new york, times, serif;font-size:14pt;"> <div style="font-family:HelveticaNeue, Helvetica Neue, Helvetica, Arial, Lucida Grande, sans-serif;font-size:12pt;"> <div class="yiv2638230040yqt9612160617" id="yiv2638230040yqt16489"><div dir="ltr"> <font face="Arial" size="2"> On Monday, May
19, 2014 12:07 PM, Jeff Thornton <thornton@tess-inc.com> wrote:<br clear="none"> </font> </div> <br clear="none"><br clear="none"> <div class="yiv2638230040y_msg_container"><div id="yiv2638230040"><div>
<div>It depends on how you'd like to model the collector. If the collector has been tested to one of the common standards (EN12975-2 for example), then it can be readily modeled in TRNSYS. If you are looking for a detailed physics-based first principles model of a concentrating heat pipe collector, I am not aware of one.</div>
<div> </div>
<div>Jeff</div>
<div> </div>
<div class="yiv2638230040yqt9745548987" id="yiv2638230040yqt33938"><div>
<pre>---<br clear="none">Jeff Thornton
President - TESS LLC
22 N. Carroll Street, Madison WI USA 53703
Office: (608) 274-2577 Fax: (608) 278-1475
www.tess-inc.com
E-Mail: thornton@tess-inc.com
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</div>
<div>On 05/19/2014 11:09 am, mohameed alsamareey wrote:</div>
<blockquote type="cite" style="padding-left:5px;border-left:#1010ff 2px solid;margin-left:5px;">
<div style="color:#000;background-color:#fff;font-family:bookman old style, new york, times, serif;font-size:14pt;">
<div>Dear for all</div>
<div>I would like to know , is TRNSYS solve parabolic trough solar collector with heat pipe?</div>
<div>i mean that the heat pipe is consist two part (evaporator+condenser), theromsyphon occurs in the heat pipe</div>
<div>the heat pipe places in the focal line of the parabolic </div>
<div style="color:#000000;font-size:18.6667px;font-family:bookman old style, new york, times, serif;background-color:transparent;font-style:normal;">Many Thanks</div>
<div style="color:#000000;font-size:18.6667px;font-family:bookman old style, new york, times, serif;background-color:transparent;font-style:normal;">Mohammed</div>
<div> </div>
</div>
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