Thermodynamic Simulation of a Small Power Plant Equipped with Solar Brayton Cycle (SBC) Combined with an Organic Rankine Cycle (ORC)

سال انتشار: 1403
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 19

فایل این مقاله در 15 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_IJCCE-43-9_017

تاریخ نمایه سازی: 16 خرداد 1404

چکیده مقاله:

One of the latest technologies in the field of small thermal power plants is the combination of the solar Brayton cycle and organic Rankine cycle. These power plants have advantages such as preserving natural resources, reducing emissions, reducing fuel costs, and increasing efficiency. Consequently, these power plants contribute to sustainable development goals by producing clean energy. In this study, the thermodynamic analysis of a small power plant equipped with a Solar Brayton Cycle (SBC) combined with an Organic Rankine Cycle (ORC) is performed with the THERMOFLEX code. In such a power plant, solar energy is used to preheat the air entering the combustion chamber in the Brayton cycle. Also, the heat in the exhaust air from the Brayton cycle turbine is used to drive the organic Rankine cycle (ORC). The results from thermodynamic simulations showed that the expansion power of the gas turbine in the Brayton cycle and the steam turbine in the ORC cycle are ۹۸.۹۱ kW and ۸.۱۱ kW, respectively. Also, the electrical power produced by the generators connected to these turbines is ۳۷.۸۲ kW and ۷.۲۴ kW respectively. The total electrical efficiency of the power plant was calculated as ۲۴.۲۵%. This efficiency value was obtained in the condition that the solar input power is ۶۴.۶۷ kW and the combustion chamber heating power is ۱۱۶.۷ kW. In Brayton cycle modeling, the compressor pressure ratio was considered to be ۴.۳. By increasing the compressor pressure ratio up to ۷.۶, the efficiency of the power plant increased, and with a further increase in the pressure ratio, the efficiency had a decreasing trend.

کلیدواژه ها:

thermodynamic simulation ، Solar Brayton Cycle (SBC) ، Organic Rankine Cycle (ORC) ، THERMOFLEX code

نویسندگان

Reza Khorrami Arani

Department of Mechanical Engineering, Qom Branch, Islamic Azad University, Qom, I.R. IRAN

Hadi Kargarsharifabad

Production and Recycling of Materials and Energy Research Center, Qom Branch, Islamic Azad University, Qom, I.R. IRAN

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • Moradi R., Tascioni R., Habib E., Cioccolanti L., Villarini M., ...
  • Shubina A.S., Marin G., Study of the Possibility of Creating ...
  • Sarkisov A., Antipov S.V., Smolentsev D.O., Bilashenko V.P., Low-Power Nuclear ...
  • Rogalev N., Rogalev A., Kindra V., Zlyvko O., Osipov S., ...
  • Hoseinzadeh S., Heyns P.S., Development of a Model Efficiency Improvement ...
  • Hoseinzadeh S., Ghasemi M.H., Heyns P.S., Application of Hybrid Systems ...
  • Pantaleo A.M., Camporeale S.M., Sorrentino A., Miliozzi A., Shah N., ...
  • Gao W., Yao M., Chen Y., Li H., Zhang Y., ...
  • Di Battista D., Carapellucci R., Combined Supercritical CO۲ Brayton Cycle ...
  • Oyewola O.M., Omolayo Petinrin M., Labiran M.J., Bello-Ochende T., Thermodynamic ...
  • Tyagi S.K., Chen G.M., Wang Q., Kaushik S.C., Thermodynamic Analysis ...
  • Chen L., Zhang Z., Sun F., Thermodynamic Modeling for Open ...
  • Golchoobian H., Amidpour M., Pourali O., Thermo Dynamic Analysis of ...
  • Golchoobian H., Saedodin S., Ghorbani B., Exergetic and Economic Evaluation ...
  • Golchoobian H., Taheri M.H., Saedodin S., Thermodynamic Analysis of Turboexpander ...
  • Hoseinzadeh S., Heyns P.S., Thermo - Structural Fatigue and Lifetime ...
  • Hoseinzadeh S., Yargholi R., Kariman H., HeynsP.S., Exergoeconomic Analysis and ...
  • Hoseinzadeh S., Heyns P.S., Advanced Energy, Exergy, and Environmental (۳E) ...
  • Sachdeva J., Singh O., Thermodynamic Analysis of Solar Powered Triple ...
  • Muñoz M., Rovira A., Montes M.J., Thermodynamic cycles for solar ...
  • Cao Y., Li P., Qiao Z., Ren S., Si F., ...
  • Javanshir A., Sarunac N., Razzaghpanah Z., Thermodynamic Analysis of Simple ...
  • Erdogan A., Kizilkan O., Ozgur Colpan C., Thermodynamic Performance Assessment ...
  • Yang J., Li J., Yang Z., Duan Y., Thermodynamic Analysis ...
  • Samuel N., Srinath A., Noble S., Anup Kumar T., Shameer ...
  • Blair N., DiOrio N., Freeman J., Gilman P., Janzou S., ...
  • Jiménez-García J.C., Moreno-Cruz I., Rivera W., Thermodynamic Modeling of a ...
  • Delsoto G.S., Battisti F.G., da Silva A.K., Dynamic Modeling and ...
  • Beyoud A., Hassanain N., Bouhaous A., Efficiency Enhancement of Solar ...
  • Abdullah Daabo A.M., Mahmoud S., AL-Dadah R.K., Ahmad A., Numerical ...
  • Mousavi S.V., “Exergy and Exergo-Economic Analysis of Solar Organic Rankine ...
  • Quoilin S., Van den Broek M., Declaye S., Dewalle P., ...
  • Wu Z., Pan D., Gao N., Zhu T., Xie F., ...
  • van der Stelt T.P., Casati E., Chan N., Colonna P., ...
  • Cao Y., Zhan J., Zhou J., Si F., Design Optimization ...
  • Velez F., Chejne Janna F., Quijano A., Thermodynamic Analysis of ...
  • Shankar Prasad U., Shyam Mishra R., Kumar Das R., Soni ...
  • Stepanov I., Entropy Change in Materials Under Compression and Expansion, ...
  • Niazmand A., Farzaneh-Gord M., Deymi-Dashtebayaz M., Exergy Analysis and Entropy ...
  • Abagnale C., Cameretti M.C., De Robbio R., Tuccillo R., Thermal ...
  • نمایش کامل مراجع