Araştırma Makalesi

PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES

Cilt: 40 Sayı: 1 30 Nisan 2020
  • Burak Türkan
  • Akın Etemoğlu *
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PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES

Öz

Effective use of waste heat at low and medium temperatures is considered as one of the solutions to alleviate energy shortages and environmental pollution problems. Due to its feasibility and reliability, the organic Rankine cycle is continued to attract widespread interest from researchers and/or manufacturers. This paper presents thermodynamic and economic analyses on flue-gas assisted organic Rankine cycles (FGA-ORCs) based on both energy and exergy concepts. The heat source of the FGA-ORC system is the exhaust flue-gas of a stenter-frame which is highly used in textile finishing process. In this study, to convert thermal energy into electrical and/or mechanical energy on a small scale, an optimization study was performed using five different cycle architectures. Parametric studies were also carried out to investigate the effect of operating parameters on performance indicators such as efficiency, economical profit and performance ratio. Finally, under specified operating conditions, the thermal architecture was identified that reduces exergy destruction and increases economic profit due to increased net-work output. For analyzed cases in this study, Scenario-4 (i.e., thermal architecture 4) shows the best system performance with 69% exergetic efficiency within the thermodynamic and practical limits.

Anahtar Kelimeler

Kaynakça

  1. Agromayor R. and Nord L.O., 2017, Fluid Selection and Thermodynamic Optimization of Organic Rankine Cycles for Waste Heat Recovery Applications, Energy Procedia, 129, 527-534.
  2. Al-Sulaiman F.A., Dincer I. and Hamdullahpur F., 2012, Energy and Exergy Analyses of a Biomass Trigeneration System Using an Organic Rankine Cycle, Energy, 45, 975-985.
  3. Astolfi M., Martelli E., Pierobon L., 2017, Section 7. Thermodynamic and Technoeconomic Optimization of Organic Rankine Cycle Systems, Organic Rankine Cycle (ORC) Power Systems Technologies and Applications, edited by Macchi E and Astolfi M., Elsevier, United Kingdom.
  4. Bao J. and Zhao L., 2013, A Review of Working Fluid and Expander Selections for Organic Rankine Cycle, Renewable and Sustainable Energy Reviews, 24, 325–342.
  5. Bejan A., 2002, Fundamentals of Exergy Analysis, Entropy Generation Minimization, and the Generation of Flow Architecture, International Journal of Energy Research, 26, 545-565.
  6. Braimakis K. and Karellas S., 2018, Energetic Optimization of Regenerative Organic Rankine Cycle (ORC), Energy Conversion and Management, 159, 353–370.
  7. Cengel Y.A and Boles M.A., 1989, Thermodynamics : An Engineering Approach, McGraw Hill Book Co., Singapore.
  8. Cengel Y.A., Wood B. and Dincer I., 2002, Is Bigger Thermodynamically Better? Exergy, 2, 62-68.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Makine Mühendisliği

Bölüm

Araştırma Makalesi

Yazarlar

Burak Türkan Bu kişi benim
Türkiye

Akın Etemoğlu * Bu kişi benim
Türkiye

Yayımlanma Tarihi

30 Nisan 2020

Gönderilme Tarihi

15 Ocak 2019

Kabul Tarihi

5 Şubat 2020

Yayımlandığı Sayı

Yıl 2020 Cilt: 40 Sayı: 1

Kaynak Göster

APA
Türkan, B., & Etemoğlu, A. (2020). PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES. Isı Bilimi ve Tekniği Dergisi, 40(1), 65-76. https://izlik.org/JA78DW99TD
AMA
1.Türkan B, Etemoğlu A. PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES. Isı Bilimi ve Tekniği Dergisi. 2020;40(1):65-76. https://izlik.org/JA78DW99TD
Chicago
Türkan, Burak, ve Akın Etemoğlu. 2020. “PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES”. Isı Bilimi ve Tekniği Dergisi 40 (1): 65-76. https://izlik.org/JA78DW99TD.
EndNote
Türkan B, Etemoğlu A (01 Nisan 2020) PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES. Isı Bilimi ve Tekniği Dergisi 40 1 65–76.
IEEE
[1]B. Türkan ve A. Etemoğlu, “PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES”, Isı Bilimi ve Tekniği Dergisi, c. 40, sy 1, ss. 65–76, Nis. 2020, [çevrimiçi]. Erişim adresi: https://izlik.org/JA78DW99TD
ISNAD
Türkan, Burak - Etemoğlu, Akın. “PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES”. Isı Bilimi ve Tekniği Dergisi 40/1 (01 Nisan 2020): 65-76. https://izlik.org/JA78DW99TD.
JAMA
1.Türkan B, Etemoğlu A. PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES. Isı Bilimi ve Tekniği Dergisi. 2020;40:65–76.
MLA
Türkan, Burak, ve Akın Etemoğlu. “PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES”. Isı Bilimi ve Tekniği Dergisi, c. 40, sy 1, Nisan 2020, ss. 65-76, https://izlik.org/JA78DW99TD.
Vancouver
1.Burak Türkan, Akın Etemoğlu. PERFORMANCE EVALUATION FOR THERMAL ARCHITECTURES. Isı Bilimi ve Tekniği Dergisi [Internet]. 01 Nisan 2020;40(1):65-76. Erişim adresi: https://izlik.org/JA78DW99TD