<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE article PUBLIC "-//NLM//DTD JATS (Z39.96) Journal Publishing DTD v1.4 20241031//EN"
        "https://jats.nlm.nih.gov/publishing/1.4/JATS-journalpublishing1-4.dtd">
<article  article-type="research-article"        dtd-version="1.4">
            <front>

                <journal-meta>
                                    <journal-id></journal-id>
            <journal-title-group>
                                                                                    <journal-title>Politeknik Dergisi</journal-title>
            </journal-title-group>
                                        <issn pub-type="epub">2147-9429</issn>
                                                                                            <publisher>
                    <publisher-name>Gazi Üniversitesi</publisher-name>
                </publisher>
                    </journal-meta>
                <article-meta>
                                        <article-id pub-id-type="doi">10.2339/politeknik.724033</article-id>
                                                                <article-categories>
                                            <subj-group  xml:lang="en">
                                                            <subject>Engineering</subject>
                                                    </subj-group>
                                            <subj-group  xml:lang="tr">
                                                            <subject>Mühendislik</subject>
                                                    </subj-group>
                                    </article-categories>
                                                                                                                                                        <title-group>
                                                                                                                        <trans-title-group xml:lang="tr">
                                    <trans-title>Experimental Investigation on Performance Parameters Affecting the Efficiency of Water Type PV/Thermal Collectors with Modified Absorber Configurations</trans-title>
                                </trans-title-group>
                                                                                                                                                                                                <article-title>Experimental Investigation on Performance Parameters Affecting the Efficiency of Water Type PV/Thermal Collectors with Modified Absorber Configurations</article-title>
                                                                                                    </title-group>
            
                                                    <contrib-group content-type="authors">
                                                                        <contrib contrib-type="author">
                                                                    <contrib-id contrib-id-type="orcid">
                                        https://orcid.org/0000-0001-9346-8451</contrib-id>
                                                                <name>
                                    <surname>Dağ</surname>
                                    <given-names>Halil İbrahim</given-names>
                                </name>
                                                                    <aff>SOLİMPEKS ENERJİ A.Ş.</aff>
                                                            </contrib>
                                                    <contrib contrib-type="author">
                                                                    <contrib-id contrib-id-type="orcid">
                                        https://orcid.org/0000-0003-1142-8574</contrib-id>
                                                                <name>
                                    <surname>Kocar</surname>
                                    <given-names>Günnur</given-names>
                                </name>
                                                                    <aff>EGE ÜNİVERSİTESİ</aff>
                                                            </contrib>
                                                                                </contrib-group>
                        
                                        <pub-date pub-type="pub" iso-8601-date="20210901">
                    <day>09</day>
                    <month>01</month>
                    <year>2021</year>
                </pub-date>
                                        <volume>24</volume>
                                        <issue>3</issue>
                                        <fpage>915</fpage>
                                        <lpage>931</lpage>
                        
                        <history>
                                    <date date-type="received" iso-8601-date="20200420">
                        <day>04</day>
                        <month>20</month>
                        <year>2020</year>
                    </date>
                                                    <date date-type="accepted" iso-8601-date="20200602">
                        <day>06</day>
                        <month>02</month>
                        <year>2020</year>
                    </date>
                            </history>
                                        <permissions>
                    <copyright-statement>Copyright © 1998, Politeknik Dergisi</copyright-statement>
                    <copyright-year>1998</copyright-year>
                    <copyright-holder>Politeknik Dergisi</copyright-holder>
                </permissions>
            
                                                                                                <trans-abstract xml:lang="tr">
                            <p>In this study, efficiency of water-type photovoltaic/thermal (PV/T) modules that convert solar energy into both electrical and thermal energy were investigated. By using identical photovoltaic (PV) cells, one PV module and five PV/T modules differed in thermal structure with different diameters, amount and layout of absorber tubes, and type of absorber sheets were fabricated with lamination technique. Firstly, the electrical efficiency of all samples under Standard Test Conditions was tested by a solar simulator. Efficiency values were between 12.56% and 12.68% under STC. Furthermore, outdoor tests were carried out to investigate the effect of temperature on PV modules in ambient conditions using PV/T samples. In order to determine the efficiency of the units, parameters such as solar irradiation, voltage and current values, inlet and outlet water temperature and flow rate of PV/T modules and ambient temperature were measured. It was observed that the electrical performance of PV/T modules was higher than that of the PV module due to the cooling effect of water circulation over the cells. PV/T module with the highest thermal efficiency was also determined. Total efficiency value of PV/T modules in outdoor conditions were attained between 60.68% and 67.14%.</p></trans-abstract>
                                                                                                                                    <abstract><p>In this study, efficiency of water-type photovoltaic/thermal (PV/T) modules that convert solar energy into both electrical and thermal energy were investigated. By using identical photovoltaic (PV) cells, one PV module and five PV/T modules differed in thermal structure with different diameters, amount and layout of absorber tubes, and type of absorber sheets were fabricated with lamination technique. Firstly, the electrical efficiency of all samples under Standard Test Conditions was tested by a sun simulator. Efficiency values were between 12.56% and 12.68% under STC. Furthermore, outdoor tests were carried out to investigate the effect of temperature on PV modules in ambient conditions using PV/T samples. In order to determine the efficiency of the units, parameters such as solar irradiation, voltage and current values, inlet and outlet water temperature and flow rate of PV/T modules and ambient temperature were measured. It was observed that the electrical performance of PV/T modules was higher than that of the PV module due to the cooling effect of water circulation over the cells. PV/T module with the highest thermal efficiency was also determined. Total efficiency value of PV/T modules in outdoor conditions were attained between 60.68% and 67.14%.</p></abstract>
                                                            
            
                                                                                        <kwd-group>
                                                    <kwd>PV</kwd>
                                                    <kwd>  Solar Thermal</kwd>
                                                    <kwd>  PV/T</kwd>
                                                    <kwd>  Performance Characteristics</kwd>
                                                    <kwd>  Experimental Study</kwd>
                                            </kwd-group>
                            
                                                <kwd-group xml:lang="tr">
                                                    <kwd>PV</kwd>
                                                    <kwd>  PV/T</kwd>
                                                    <kwd>  solar thermal</kwd>
                                                    <kwd>  performance characteristics</kwd>
                                                    <kwd>  experimental study</kwd>
                                            </kwd-group>
                                                                                                                                        </article-meta>
    </front>
    <back>
                            <ref-list>
                                    <ref id="ref1">
                        <label>1</label>
                        <mixed-citation publication-type="journal">DAG, H. I.; BUKER, M. S. Performance evaluation and degradation assessment of crystalline silicon based photovoltaic rooftop technologies under outdoor conditions. Renewable Energy, (2019).</mixed-citation>
                    </ref>
                                    <ref id="ref2">
                        <label>2</label>
                        <mixed-citation publication-type="journal">BUKER, Mahmut Sami; RIFFAT, Saffa B. Preliminary performance test of a combined solar thermal roof system with heat pump for buildings. Energy Procedia, 91: 421-431, (2016).</mixed-citation>
                    </ref>
                                    <ref id="ref3">
                        <label>3</label>
                        <mixed-citation publication-type="journal">PERLIN, John. Let it shine: the 6,000-year story of solar energy. New World Library, 2013.</mixed-citation>
                    </ref>
                                    <ref id="ref4">
                        <label>4</label>
                        <mixed-citation publication-type="journal">https://www.iea.org/reports/tracking-power-2019/solar-pv (accessed on 17.04.2020)</mixed-citation>
                    </ref>
                                    <ref id="ref5">
                        <label>5</label>
                        <mixed-citation publication-type="journal">BUKER, Mahmut Sami; RIFFAT, Saffa B. Performance analysis of a combined Building Integrated PV/T Collector with a liquid desiccant enhanced dew point cooler. Energy Procedia, 2016, 91: 717-727.</mixed-citation>
                    </ref>
                                    <ref id="ref6">
                        <label>6</label>
                        <mixed-citation publication-type="journal">BÖER, Karl W.; TAMM, Gunnar. Solar conversion under consideration of energy and entropy. Solar energy, 2003, 74.6: 525-528.</mixed-citation>
                    </ref>
                                    <ref id="ref7">
                        <label>7</label>
                        <mixed-citation publication-type="journal">ZONDAG, H. A. Flat-plate PV-Thermal collectors and systems: A review. Renewable and Sustainable Energy Reviews, 2008, 12.4: 891-959.</mixed-citation>
                    </ref>
                                    <ref id="ref8">
                        <label>8</label>
                        <mixed-citation publication-type="journal">KALOGIROU, Soteris A.; TRIPANAGNOSTOPOULOS, Yiannis. Hybrid PV/T solar systems for domestic hot water and electricity production. Energy conversion and management, 2006, 47.18-19: 3368-3382.</mixed-citation>
                    </ref>
                                    <ref id="ref9">
                        <label>9</label>
                        <mixed-citation publication-type="journal">KOÇ, İlayda; BAŞARAN, Kıvanç. PV/T Tabanlı Bir Sistemde MATLAB/Simulink Kullanılarak Yapılan Performans Analizi. Politeknik Dergisi, 22.1: 229-236.</mixed-citation>
                    </ref>
                                    <ref id="ref10">
                        <label>10</label>
                        <mixed-citation publication-type="journal">KUMAR, Rakesh; ROSEN, Marc A. Performance evaluation of a double pass PV/T solar air heater with and without fins. Applied Thermal Engineering, 2011, 31.8-9: 1402-1410.</mixed-citation>
                    </ref>
                                    <ref id="ref11">
                        <label>11</label>
                        <mixed-citation publication-type="journal">AL-WAELI, Ali HA, et al. Comparison of prediction methods of PV/T nanofluid and nano-PCM system using a measured dataset and artificial neural network. Solar Energy, 2018, 162: 378-396.</mixed-citation>
                    </ref>
                                    <ref id="ref12">
                        <label>12</label>
                        <mixed-citation publication-type="journal">REJEB, Oussama; DHAOU, Houcine; JEMNI, Abdelmajid. A numerical investigation of a photovoltaic thermal (PV/T) collector. Renewable Energy, 2015, 77: 43-50.</mixed-citation>
                    </ref>
                                    <ref id="ref13">
                        <label>13</label>
                        <mixed-citation publication-type="journal">LIANG, Ruobing, et al. Performance evaluation of new type hybrid photovoltaic/thermal solar collector by experimental study. Applied Thermal Engineering, 2015, 75: 487-492.</mixed-citation>
                    </ref>
                                    <ref id="ref14">
                        <label>14</label>
                        <mixed-citation publication-type="journal">ASTE, Niccolò; LEONFORTE, Fabrizio; DEL PERO, Claudio. Design, modeling and performance monitoring of a photovoltaic–thermal (PVT) water collector. Solar Energy, 2015, 112: 85-99.</mixed-citation>
                    </ref>
                                    <ref id="ref15">
                        <label>15</label>
                        <mixed-citation publication-type="journal">NEAMEN, Donald A. Semiconductor physics and devices: basic principles. New York, NY: McGraw-Hill,, 2012.</mixed-citation>
                    </ref>
                                    <ref id="ref16">
                        <label>16</label>
                        <mixed-citation publication-type="journal">MÖLLER, Hans Joachim. Semiconductors for solar cells. Artech House Publishers, 1993.</mixed-citation>
                    </ref>
                                    <ref id="ref17">
                        <label>17</label>
                        <mixed-citation publication-type="journal">DUFFIE, John A.; BECKMAN, William A. Solar engineering of thermal processes. New York: Wiley, 1991.</mixed-citation>
                    </ref>
                                    <ref id="ref18">
                        <label>18</label>
                        <mixed-citation publication-type="journal">RADZIEMSKA, Ewa. Thermal performance of Si and GaAs based solar cells and modules: a review. Progress in Energy and Combustion Science, 2003, 29.5: 407-424.</mixed-citation>
                    </ref>
                                    <ref id="ref19">
                        <label>19</label>
                        <mixed-citation publication-type="journal">BUKER, Mahmut Sami; RIFFAT, Saffa B. Building integrated solar thermal collectors–A review. Renewable and Sustainable Energy Reviews, 2015, 51: 327-346.</mixed-citation>
                    </ref>
                                    <ref id="ref20">
                        <label>20</label>
                        <mixed-citation publication-type="journal">ZONDAG, H. A. Flat-plate PV-Thermal collectors and systems: A review. Renewable and Sustainable Energy Reviews, 2008, 12.4: 891-959.</mixed-citation>
                    </ref>
                                    <ref id="ref21">
                        <label>21</label>
                        <mixed-citation publication-type="journal">CHARALAMBOUS, P. G., et al. Optimization of the photovoltaic thermal (PV/T) collector absorber. Solar energy, 2011, 85.5: 871-880.</mixed-citation>
                    </ref>
                                    <ref id="ref22">
                        <label>22</label>
                        <mixed-citation publication-type="journal">Hottel, H., &amp; Whillier, A. (1955, January). Evaluation of flat-plate solar collector performance. In Trans. Conf. Use of Solar Energy;() (Vol. 3).</mixed-citation>
                    </ref>
                                    <ref id="ref23">
                        <label>23</label>
                        <mixed-citation publication-type="journal">HE, Wei, et al. Hybrid photovoltaic and thermal solar-collector designed for natural circulation of water. Applied energy, 2006, 83.3: 199-210.</mixed-citation>
                    </ref>
                                    <ref id="ref24">
                        <label>24</label>
                        <mixed-citation publication-type="journal">VOKAS, G.; CHRISTANDONIS, N.; SKITTIDES, F. Hybrid photovoltaic–thermal systems for domestic heating and cooling—a theoretical approach. Solar energy, 2006, 80.5: 607-615.</mixed-citation>
                    </ref>
                                    <ref id="ref25">
                        <label>25</label>
                        <mixed-citation publication-type="journal">CHOW, T. T.; HE, W.; JI, J. An experimental study of facade-integrated photovoltaic/water-heating system. Applied thermal engineering, 2007, 27.1: 37-45.</mixed-citation>
                    </ref>
                                    <ref id="ref26">
                        <label>26</label>
                        <mixed-citation publication-type="journal">TRIPANAGNOSTOPOULOS, Y., et al. Energy, cost and LCA results of PV and hybrid PV/T solar systems. Progress in Photovoltaics: Research and applications, 2005, 13.3: 235-250.</mixed-citation>
                    </ref>
                                    <ref id="ref27">
                        <label>27</label>
                        <mixed-citation publication-type="journal">DAĞ, H. İ. Pv-termal kolektörlerin tasarımı, üretimi ve verimini etkileyen parametrelerin belirlenmesi. 2015. PhD Thesis. Doktora Tezi, Ege Üniversitesi, Fen Bilimleri Enstitüsü, İzmir.</mixed-citation>
                    </ref>
                            </ref-list>
                    </back>
    </article>
