Araştırma Makalesi

Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis

Cilt: 17 Sayı: 2 28 Temmuz 2026
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Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis

Öz

 Heat recovery units (HRUs) embedded in air handling units (AHUs) represent one of the most straightforward yet effective strategies for curtailing building energy consumption, which accounts for roughly 30-40% of global final energy use. Despite a well-established theoretical foundation, experimental studies spanning multiple operating modes-particularly when combined with life cycle and carbon footprint assessments-remain relatively scarce for cross-flow plate configurations. This paper reports laboratory experiments conducted on the educational Air Handling Unit (AHU) test cycle, which features a cross-flow plate HRU, under four distinct conditioning modes: (1) heating only, (2) humidification combined with heating, (3) cooling with dehumidification, and (4) cooling with dehumidification followed by reheating. Dry-bulb temperature and relative humidity were measured at seven stations along the air path, enabling full psychrometric energy balances following. Air velocity was varied over 1.1-3.6 m/s to assess its influence on HRU temperature effectiveness ( ), thermal output, and Coefficient of Performance (COP). Results show that  decreases from 0.792 to 0.671 as velocity increases in heating mode, while the fraction of total heating demand covered by heat recovery reaches 129% at the highest velocity tested. COP of cooling ranges from 2.52 to 3.37 in Mode 3 and rises to 3.21-5.04 in Mode 4. A simplified operational life cycle assessment (ISO 14040:2006; ISO 14044:2006) using Turkey’s national grid emission factor (0.452 kgCO₂eq/kWh) yields annual CO₂ savings of approximately 6,136 kgCO₂eq.

Anahtar Kelimeler

Kaynakça

  1. [1] L. Pérez-Lombard, J. Ortiz, and C. Pout, "A review on buildings energy consumption information," Energy Build., vol. 40, no. 3, pp. 394-398, 2008, doi: 10.1016/j.enbuild.2007.03.007.
  2. [2] D. Ürge-Vorsatz, L. F. Cabeza, S. Serrano, C. Barreneche, and K. Petrichenko, "Heating and cooling energy trends and drivers in buildings," Renew. Sustain. Energy Rev., vol. 41, pp. 85-98, 2015, doi: 10.1016/j.rser.2014.0.
  3. [3] IEA, "CO₂ Emissions from Energy Combustion and Industrial Processes," International Energy Agency, Paris, 2024. Available: https://www.iea.org/data-and-statistics.
  4. [4] European Parliament and Council of the European Union, "Directive 2010/31/EU on the energy performance of buildings (recast)," Off. J. Eur. Union, vol. 153(L), pp. 13-35, 2010.
  5. [5] IEA, World Energy Outlook 2023. Paris: International Energy Agency, 2023. [Online]. Available: https://www.iea.org/reports/world-energy-outlook-2023.
  6. [6] Binaların Enerji Performansı Yönetmeliği - BEP-TR. Resmi Gazete, Sayı: 28687. Bayındırlık ve İskân Bakanlığı, Ankara, 2013.
  7. [7] R. K. Shah and D. P. Sekulic, Fundamentals of Heat Exchanger Design. Hoboken, NJ: John Wiley & Sons, 2003.
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Ayrıntılar

Birincil Dil

İngilizce

Konular

Enerji Üretimi, Dönüşüm ve Depolama (Kimyasal ve Elektiksel hariç)

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

28 Temmuz 2026

Gönderilme Tarihi

7 Nisan 2026

Kabul Tarihi

2 Haziran 2026

Yayımlandığı Sayı

Yıl 2026 Cilt: 17 Sayı: 2

Kaynak Göster

APA
Tutumlu, H., & Karataş, C. (2026). Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis. Dicle Üniversitesi Mühendislik Fakültesi Mühendislik Dergisi, 17(2). https://doi.org/10.24012/dumf.1924722
AMA
1.Tutumlu H, Karataş C. Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis. DÜMF MD. 2026;17(2). doi:10.24012/dumf.1924722
Chicago
Tutumlu, Hakan, ve Cuma Karataş. 2026. “Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis”. Dicle Üniversitesi Mühendislik Fakültesi Mühendislik Dergisi 17 (2). https://doi.org/10.24012/dumf.1924722.
EndNote
Tutumlu H, Karataş C (01 Temmuz 2026) Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis. Dicle Üniversitesi Mühendislik Fakültesi Mühendislik Dergisi 17 2
IEEE
[1]H. Tutumlu ve C. Karataş, “Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis”, DÜMF MD, c. 17, sy 2, Tem. 2026, doi: 10.24012/dumf.1924722.
ISNAD
Tutumlu, Hakan - Karataş, Cuma. “Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis”. Dicle Üniversitesi Mühendislik Fakültesi Mühendislik Dergisi 17/2 (01 Temmuz 2026). https://doi.org/10.24012/dumf.1924722.
JAMA
1.Tutumlu H, Karataş C. Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis. DÜMF MD. 2026;17. doi:10.24012/dumf.1924722.
MLA
Tutumlu, Hakan, ve Cuma Karataş. “Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis”. Dicle Üniversitesi Mühendislik Fakültesi Mühendislik Dergisi, c. 17, sy 2, Temmuz 2026, doi:10.24012/dumf.1924722.
Vancouver
1.Hakan Tutumlu, Cuma Karataş. Experimental investigation of a cross-flow heat recovery unit in an air handling unit: energy performance, life cycle assessment, and carbon footprint analysis. DÜMF MD. 01 Temmuz 2026;17(2). doi:10.24012/dumf.1924722
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