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), internal gains, air exchange rate, heating/cooling set points, and the air-conditioning system type. Otherwise, an alternative approach could be used to assess the impact of climate change. It consists of performing an assessment the thermal performance of

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. , Jose V. , Habeeb A. Thermal performance of buildings: Case study and experimental validation of educational building , International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering , Vol. 4 , No. 6

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: fluid flow and the heat flux profiles, supports to use this software on a wide range to describe the nanofluid effect on the thermal performance. So different studies were performed using CFD tools to examine many mono nanofluids like using Al 2 O 3

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thermal performance of a single and double-pass solar air heater with fins using a steel wire mesh as absorber plate, and found that the efficiency increases with increasing the mass flow rate of air. For the same flow rate, the efficiency of the double

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1 Introduction In general, the evaluation of energy performance in buildings is a challenging task because it depends on a large and diverse number of interrelated factors [ 1 ]. Thermal performance evaluation in residential buildings is

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fields. The enhancement of thermal performance in the receiver part has taken a high intensity in many types of researches and summarized in different review papers. Akbarzadeh and Valipour [ 14 ] explained the design parameters of the PTC, but they

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flow and heat transfer performances in quadrantal cavity-filled paraffin (PCM), when the curved wall is heated whereas the remaining wall is kept insulated. To the best knowledge of the authors, this is the first thermal performance study on this

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nanoparticles with oil as a base fluid were presented in addition to the main founding enhancement results and main parameters of PTC and the receiver pipe [ 14 ]-[ 20 ]. Table I. Thermal performance enhancements of PTC using nanofluid technique Ref PTC Model L

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[4] Bellos E. , Tzivanidis C. , Antonopoulos K. A. ( 2015 ), Thermal performance of a direct-flow coaxial evacuated tube with solidworks flow simulation . In

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Thermal Bridges on The Overall Thermal Performance of Multi-Unit Residential Buildings: A Case Study . Energy and Buildings , 60 , 163 – 173 . Kalnæs S

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