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Dive into the research topics where Mariam Itani is active.

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Featured researches published by Mariam Itani.


Journal of Thermal Biology | 2018

An optimal two-bout strategy with phase change material cooling vests to improve comfort in hot environment

Mariam Itani; Nesreen Ghaddar; Djamel Ouahrani; Kamel Ghali; Beatrice Khater

Cooling vests incorporating phase change material (PCM) packets are used to improve comfort of workers in hot environments. This work aims to investigate by modeling and experimentation the effect of dividing the working duration into two bouts, where different PCM melting temperatures are used in each bout. An integrated bio-heat and fabric-PCM model predictions of physiological and subjective votes are validated via active human subject testing at hot conditions. A parametric study is performed to select, at two conditions (40°C and 45°C), the optimal PCM melting temperatures of the two bouts that would result with similar thermal comfort and sensation to the optimal single-bout case. The optimal case achieves most reductions in energy use for PCM regeneration, PCM carried weight and material cost. The results of the parametric study showed that heat storage is reduced in the second bout due to wearing the second vest with lower PCM melting temperature, thus thermal comfort and sensation are significantly improved. The optimal case at the 40°C environment uses a vest with 21°C PCMs in the first bout and a vest with 21°C PCMs in the second bout (V21→V21). At 45°C, the optimal case is V18→V10 with significant PCM weight reductions from the reference single bout case by a minimum of 47%. Thus, the issue of extra carried weight that affect metabolism and ease of movement when applying continuous cooling during work have been mitigated by using the two-bout strategy.


13th International Energy Conversion Engineering Conference | 2015

Optimized Operation of Displacement Ventilation Combined with a Novel Evaporative Cooled Ceiling for a Typical Office in the City of Beirut

Kamel F. Ghali; Mariam Itani; Nessreen K. Ghaddar

Thesis (M.E.)-- American University of Beirut, Department of Mechanical Engineeering, 2015. ET:6224


International Journal of Thermal Sciences | 2016

PCM cooling vest for improving thermal comfort in hot environment

Haneen Hamdan; Nesreen Ghaddar; Djamel Ouahrani; Kamel Ghali; Mariam Itani


Building and Environment | 2016

The effect of PCM placement on torso cooling vest for an active human in hot environment

Mariam Itani; Djamel Ouahrani; Nesreen Ghaddar; Kamel Ghali; Walid Chakroun


Energy and Buildings | 2017

Cooling vest with optimized PCM arrangement targeting torso sensitive areas that trigger comfort when cooled for improving human comfort in hot conditions

Mariam Itani; Nesreen Ghaddar; Kamel Ghali; Djamel Ouahrani; Walid Chakroun


Energy Conversion and Management | 2017

Innovative PCM-desiccant packet to provide dry microclimate and improve performance of cooling vest in hot environment

Mariam Itani; Nesreen Ghaddar; Kamel Ghali


Energy and Buildings | 2017

Experimental study on using PCMs of different melting temperatures in one cooling vest to reduce its weight and improve comfort

Djamel Ouahrani; Mariam Itani; Nesreen Ghaddar; Kamel Ghali; Beatrice Khater


Energy and Buildings | 2015

Increasing energy efficiency of displacement ventilation integrated with an evaporative-cooled ceiling for operation in hot humid climate

Mariam Itani; Kamel Ghali; Nesreen Ghaddar


Volume 1: Aerospace Heat Transfer; Computational Heat Transfer; Education; Environmental Heat Transfer; Fire and Combustion Systems; Gas Turbine Heat Transfer; Heat Transfer in Electronic Equipment; Heat Transfer in Energy Systems | 2017

Experimental Study on Effective Placement of PCM Packets in Cooling Vest to Improve Performance in Warm Environment

Mariam Itani; Nesreen Ghaddar; Kamel Ghali; Beatrice Khater; Djamel Ouahrani; Walid Chakroun


Energy Procedia | 2015

Performance Evaluation of Displacement Ventilation System Combined with a Novel Evaporative Cooled Ceiling for a Typical Office in the City of Beirut

Mariam Itani; Kamel Ghali; Nesreen Ghaddar

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Kamel Ghali

American University of Beirut

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Nesreen Ghaddar

American University of Beirut

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Beatrice Khater

American University of Beirut

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Haneen Hamdan

American University of Beirut

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Nessreen K. Ghaddar

American University of Beirut

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Rana Bachnak

American University of Beirut

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