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<body class='hmmessage'><div dir='ltr'>Dear users,<BR> <BR>I'm really interested on Benjamin questions to.<BR> <BR>Thanks a lot,<BR> <BR>Pietro<br> <BR><div><hr id="stopSpelling">From: benjamin_stobbe@hotmail.com<br>To: trnsys-users@lists.onebuilding.org<br>Date: Mon, 7 Sep 2015 13:53:45 +0800<br>Subject: [TRNSYS-users] questions about type 563, type 50 hybrid pv collectors and type 2 controller<br><br><style><!--
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--></style><div class="ecxWordSection1"><p class="ecxMsoNormal"><span lang="EN-US">Hey everybody,</span></p><p class="ecxMsoNormal"><span lang="EN-US"> </span></p><p class="ecxMsoNormal"><span lang="EN-US">I’m designing my own hybrid pv system, but the thermal side of the story I come across some problems</span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);"> </span></p><p class="ecxMsoNormal"><span lang="EN-US">I had a question yeah I want to understand the total model sorry for the many questions. I was looking into component type563 to usefull gain and it is a bit strange because it looks like you need a minimum PV power to get some energy gain. Because below 990 kj/hr there is no usefull gain and then suddenly above this 990 kj/hr you have 4560 kj/hr. My panel is 4 by 5 but how can you explain this. Another thing in the summer there is no direct sunlight on the panels because it are facades and the sun in Hong Kong is high in the summer. According to the model there is then also no PV power, but there is still diffuse radiance on the panel and this will heat the panel also up so why no PV Power. </span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);"> </span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);">I decided to look also into other components so I choose the Type50b and compared the output with type563 but they give different outputs I assured the size of the panels is the same but the output of 50b is much higher than of typ563 in type50b you can choose more parameters then in type563 but I al kept them standard. Also when I try to calculate the efficiency it does not make sence</span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);"> </span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);">I looked into the working of controller 2b with their dead bands and looked up the working in the mathematical reference but I checked with logged data and the controller is not working like the formulas make you expect to do. The controller goes for example already on even the difference is lower than the upper band length or goes off when the temperature difference is still bigger than 2 and this should not be happening according to the calculations</span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);"> </span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);">I hope to hear from you soon. Thanks in advance.</span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);"> </span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);">Best regards,</span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);"> </span></p><p class="ecxMsoNormal"><span lang="EN-US" style="color: rgb(31, 73, 125);">Benjamin Stobbe</span></p><p class="ecxMsoNormal"> </p></div><br>_______________________________________________
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