<?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>smutgd</journal-id>
            <journal-title-group>
                                                                                    <journal-title>Sürdürülebilir Mühendislik Uygulamaları ve Teknolojik Gelişmeler Dergisi</journal-title>
            </journal-title-group>
                            <issn pub-type="ppub">2651-3544</issn>
                                                                                                        <publisher>
                    <publisher-name>Hakan ÇAĞLAR</publisher-name>
                </publisher>
                    </journal-meta>
                <article-meta>
                                        <article-id pub-id-type="doi">10.51764/smutgd.1397480</article-id>
                                                                <article-categories>
                                            <subj-group  xml:lang="en">
                                                            <subject>Energy Generation, Conversion and Storage (Excl. Chemical and Electrical)</subject>
                                                    </subj-group>
                                            <subj-group  xml:lang="tr">
                                                            <subject>Enerji Üretimi, Dönüşüm ve Depolama (Kimyasal ve Elektiksel hariç)</subject>
                                                    </subj-group>
                                    </article-categories>
                                                                                                                                                        <title-group>
                                                                                                                        <trans-title-group xml:lang="en">
                                    <trans-title>Thermodynamic Analysis of Geothermal Energy Sourced Organic Rankine Power Plant</trans-title>
                                </trans-title-group>
                                                                                                                                                                                                <article-title>Jeotermal Enerji Kaynaklı Organik Rankine Güç Santralinin Termodinamik Analizi</article-title>
                                                                                                    </title-group>
            
                                                    <contrib-group content-type="authors">
                                                                        <contrib contrib-type="author">
                                                                    <contrib-id contrib-id-type="orcid">
                                        https://orcid.org/0000-0002-1160-3793</contrib-id>
                                                                <name>
                                    <surname>Arpa</surname>
                                    <given-names>İsmail</given-names>
                                </name>
                                                                    <aff>ISPARTA UYGULAMALI BİLİMLER ÜNİVERSİTESİ, LİSANSÜSTÜ EĞİTİM ENSTİTÜSÜ, MAKİNE MÜHENDİSLİĞİ (YL) (TEZLİ)</aff>
                                                            </contrib>
                                                    <contrib contrib-type="author">
                                                                    <contrib-id contrib-id-type="orcid">
                                        https://orcid.org/0000-0001-8519-4788</contrib-id>
                                                                <name>
                                    <surname>Şencan Şahin</surname>
                                    <given-names>Arzu</given-names>
                                </name>
                                                                    <aff>ISPARTA UYGULAMALI BİLİMLER ÜNİVERSİTESİ</aff>
                                                            </contrib>
                                                                                </contrib-group>
                        
                                        <pub-date pub-type="pub" iso-8601-date="20240630">
                    <day>06</day>
                    <month>30</month>
                    <year>2024</year>
                </pub-date>
                                        <volume>7</volume>
                                        <issue>1</issue>
                                        <fpage>1</fpage>
                                        <lpage>15</lpage>
                        
                        <history>
                                    <date date-type="received" iso-8601-date="20231205">
                        <day>12</day>
                        <month>05</month>
                        <year>2023</year>
                    </date>
                                                    <date date-type="accepted" iso-8601-date="20240404">
                        <day>04</day>
                        <month>04</month>
                        <year>2024</year>
                    </date>
                            </history>
                                        <permissions>
                    <copyright-statement>Copyright © 2018, Journal of Sustainable Engineering Applications and Technological Developments</copyright-statement>
                    <copyright-year>2018</copyright-year>
                    <copyright-holder>Journal of Sustainable Engineering Applications and Technological Developments</copyright-holder>
                </permissions>
            
                                                                                                <trans-abstract xml:lang="en">
                            <p>Geothermal energy from geothermal sources is becoming increasingly popular as a sustainable energy source for electricity generation in our country. Binary geothermal power plants are systems that generate electricity with the help of Organic Rankine Cycle (ORC) using geothermal fluid temperature. Energy and exergy analyses of the cycle and each system component that constitutes the cycle are performed in detail. Engineering Equation Solver (EES) software is used for these analyses. N-pentane is used as the working fluid in the ORC system. As a result of the calculations, the overall energy efficiency of the system is found to be 6% and the exergy efficiency is found to be 45%. Changes in efficiencies according to different operating parameters of the system are presented through graphs. It is determined that the highest exergy loss in the power plant is 6.12 MW (26% of the total exergy loss) in air-cooled condenser 2. Finally, various suggestions and recommendations are made in the study to reduce exergy losses and improve system efficiency.</p></trans-abstract>
                                                                                                                                    <abstract><p>Sürdürülebilir enerji türü olarak jeotermal kaynaklardan elektrik üretimi ülkemizde gittikçe yaygınlaşmaktadır. İkili (binary) jeotermal enerji santrali, jeotermal akışkan ısısından Organik Rankine Çevrimi (ORC) yardımı ile elektrik üreten sistemlerdir. Çevrimin ve çevrimi oluşturan her bir sistem elemanının enerji ve ekserji analizleri ayrıntılı bir şekilde yapılmıştır. Bu analizler için Engineering Equation Solver (EES) yazılımı kullanılmıştır. ORC sisteminde iş akışkanı olarak n-pentan kullanılmıştır. Hesaplamalar sonucunda tüm sistemin enerji verimi %6, ekserji verimi ise %45 olarak bulunmuştur. Sistemin farklı çalışma parametrelerine göre verimlerdeki değişimler grafikler aracılığıyla ortaya konmuştur. Santralde en yüksek ekserji kaybının 6.12 MW (tüm ekserji kaybının %26’sı) ile hava soğutmalı kondenser 2’de olduğu tespit edilmiştir. Çalışmada son olarak ekserji kayıplarının azaltılması ve sistem verimliliğin iyileştirilmesi için çeşitli öneriler ve tavsiyelerde bulunulmuştur.</p></abstract>
                                                            
            
                                                                                        <kwd-group>
                                                    <kwd>jeotermal enerji</kwd>
                                                    <kwd>  organik rankine çevrimi</kwd>
                                                    <kwd>  asdasdas</kwd>
                                                    <kwd>  asdsadas</kwd>
                                            </kwd-group>
                            
                                                <kwd-group xml:lang="en">
                                                    <kwd>Geothermal energy</kwd>
                                                    <kwd>  Organic rankine cycle</kwd>
                                                    <kwd>  Energy efficiency</kwd>
                                                    <kwd>  Exergy analysis.</kwd>
                                            </kwd-group>
                                                                                                                                        </article-meta>
    </front>
    <back>
                            <ref-list>
                                    <ref id="ref1">
                        <label>1</label>
                        <mixed-citation publication-type="journal">Abdolalipouradl, M., Mohammadkhani, F., &amp; Khalilarya, S. (2020). A comparative analysis of novel combined flash-binary cycles for Sabalan geothermal wells: Thermodynamic and exergoeconomic viewpoints. Energy, 209, 118235.</mixed-citation>
                    </ref>
                                    <ref id="ref2">
                        <label>2</label>
                        <mixed-citation publication-type="journal">Alghamdi, M., Al-Kharsan, I., Shahab, S., Albaker, A., Alayi, R., Kumar, L., &amp; El Haj Assad, M. (2023). Investigation of Energy and Exergy of Geothermal Organic Rankine Cycle. Energies, 16(5), 2222.</mixed-citation>
                    </ref>
                                    <ref id="ref3">
                        <label>3</label>
                        <mixed-citation publication-type="journal">Arpa, İ. (2023). Jeotermal enerji kaynaklı organik rankine güç santralinin termodinamik analizi, Yüksek Lisans Tezi, Isparta Uygulamalı Bilimler Üniversitesi Lisansüstü Eğitim Enstitüsü, Isparta.</mixed-citation>
                    </ref>
                                    <ref id="ref4">
                        <label>4</label>
                        <mixed-citation publication-type="journal">Bao, J., &amp; Zhao, L. (2013). A review of working fluid and expander selections for organic Rankine cycle. Renewable and sustainable energy reviews, 24, 325-342.</mixed-citation>
                    </ref>
                                    <ref id="ref5">
                        <label>5</label>
                        <mixed-citation publication-type="journal">Boles, M., &amp; Cengel, Y. (2014). An Engineering Approach. New York: McGraw-Hil l Education.</mixed-citation>
                    </ref>
                                    <ref id="ref6">
                        <label>6</label>
                        <mixed-citation publication-type="journal">Cammarata, G., Cammarata, L., &amp; Petrone, G. (2014). Thermodynamic analysis of ORC for energy production from geothermal resources. Energy Procedia, 45, 1337-1343.</mixed-citation>
                    </ref>
                                    <ref id="ref7">
                        <label>7</label>
                        <mixed-citation publication-type="journal">Drescher, U., &amp; Brüggemann, D. (2007). Fluid selection for the Organic Rankine Cycle (ORC) in biomass power and heat plants. Applied thermal engineering, 27(1), 223-228.</mixed-citation>
                    </ref>
                                    <ref id="ref8">
                        <label>8</label>
                        <mixed-citation publication-type="journal">Global Energy Monitor, (2023). https://globalenergymonitor.org/</mixed-citation>
                    </ref>
                                    <ref id="ref9">
                        <label>9</label>
                        <mixed-citation publication-type="journal">Hu, B., Guo, J., Yang, Y., &amp; Shao, Y. (2022). Selection of working fluid for organic Rankine cycle used in low temperature geothermal power plant. Energy Reports, 8, 179-186.</mixed-citation>
                    </ref>
                                    <ref id="ref10">
                        <label>10</label>
                        <mixed-citation publication-type="journal">Kanoglu, M., &amp; Bolatturk, A. (2008). Performance and parametric investigation of a binary geothermal power plant by exergy. Renewable Energy, 33(11), 2366-2374.</mixed-citation>
                    </ref>
                                    <ref id="ref11">
                        <label>11</label>
                        <mixed-citation publication-type="journal">Lebbihiat, N., Atia, A., Arıcı, M., &amp; Meneceur, N. (2021). Geothermal energy use in Algeria: A review on the current status compared to the worldwide, utilization opportunities and countermeasures. Journal of Cleaner Production, 302, 126950.</mixed-citation>
                    </ref>
                                    <ref id="ref12">
                        <label>12</label>
                        <mixed-citation publication-type="journal">Nasruddin, N., Saputra, I. D., Mentari, T., Bardow, A., Marcelina, O., &amp; Berlin, S. (2020). Exergy, exergoeconomic, and exergoenvironmental optimization of the geothermal binary cycle power plant at Ampallas, West Sulawesi, Indonesia. Thermal Science and Engineering Progress, 19, 100625.</mixed-citation>
                    </ref>
                                    <ref id="ref13">
                        <label>13</label>
                        <mixed-citation publication-type="journal">Nemati, A., Nami, H., Ranjbar, F., &amp; Yari, M. (2017). A comparative thermodynamic analysis of ORC and Kalina cycles for waste heat recovery: A case study for CGAM cogeneration system. Case Studies in Thermal Engineering, 9, 1-13.</mixed-citation>
                    </ref>
                                    <ref id="ref14">
                        <label>14</label>
                        <mixed-citation publication-type="journal">Quoilin, S., Orosz, M., Hemond, H., &amp; Lemort, V. (2011). Performance and design optimization of a low-cost solar organic Rankine cycle for remote power generation. Solar energy, 85(5), 955-966.</mixed-citation>
                    </ref>
                                    <ref id="ref15">
                        <label>15</label>
                        <mixed-citation publication-type="journal">Saleh, B., Koglbauer, G., Wendland, M., &amp; Fischer, J. (2007). Working fluids for low-temperature organic Rankine cycles. Energy, 32(7), 1210-1221.</mixed-citation>
                    </ref>
                                    <ref id="ref16">
                        <label>16</label>
                        <mixed-citation publication-type="journal">Tchanche, B. F., Lambrinos, G., Frangoudakis, A., &amp; Papadakis, G. (2011). Low-grade heat conversion into power using organic Rankine cycles–A review of various applications. Renewable and Sustainable Energy Reviews, 15(8), 3963-3979.</mixed-citation>
                    </ref>
                                    <ref id="ref17">
                        <label>17</label>
                        <mixed-citation publication-type="journal">TEİAŞ Kurulu Güç Raporu, (2022). https://www.teias.gov.tr/kurulu-guc-raporlari</mixed-citation>
                    </ref>
                                    <ref id="ref18">
                        <label>18</label>
                        <mixed-citation publication-type="journal">World Nuclear Association Report, (2011). Comparison of Lifecycle Greenhouse Gas Emissions of Various Electricity Generation Sources, https://www.world-nuclear.org/uploadedfiles/org/wna/publications/working_group_reports/comparison_of_lifecycle.pdf</mixed-citation>
                    </ref>
                                    <ref id="ref19">
                        <label>19</label>
                        <mixed-citation publication-type="journal">Yılankırkan, N., &amp; Doğan, H. (2020). Türkiye’nin enerji görünümü ve 2023 yılı birincil enerji arz projeksiyonu. Batman Üniversitesi Yaşam Bilimleri Dergisi, 10(2), 77-92.</mixed-citation>
                    </ref>
                                    <ref id="ref20">
                        <label>20</label>
                        <mixed-citation publication-type="journal">Yilmaz, F. (2021). Performance and environmental impact assessment of a geothermal-assisted combined plant for multi-generation products. Sustainable Energy Technologies and Assessments, 46, 101291.</mixed-citation>
                    </ref>
                                    <ref id="ref21">
                        <label>21</label>
                        <mixed-citation publication-type="journal">Zhao, Y., Shi, L., Zhang, X., Gao, J., Luo, G., Ye, C., &amp; Tang, Y. (2024). Life cycle CO2 emission assessment of an organic Rankine cycle based geothermal power plant. International Journal of Low-Carbon Technologies, 19, 149-156.</mixed-citation>
                    </ref>
                                    <ref id="ref22">
                        <label>22</label>
                        <mixed-citation publication-type="journal">Zhou, C., Doroodchi, E., &amp; Moghtaderi, B. (2013). An in-depth assessment of hybrid solar–geothermal power generation. Energy conversion and management, 74, 88-101.</mixed-citation>
                    </ref>
                            </ref-list>
                    </back>
    </article>
