Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Abdul Ghafoor Memon is active.

Publication


Featured researches published by Abdul Ghafoor Memon.


Building Services Engineering Research and Technology | 2018

Parametric study of condensation at heating, ventilation, and air-conditioning duct's external surface:

Dileep Kumar; Abdul Ghafoor Memon; Rizwan Ahmed Memon; Intizar Ali; Natasa Nord

The compression of insulation causes around a heating, ventilation, and air-conditioning duct usually resulted in dew formation around the outer surfaces because of low temperature, which causes significant energy and financial losses. The parameters such as supply air flow rate, supply air temperature, ambient air speed, and the convective heat transfer coefficient (ho) plays significant role in dew formation. In this paper, the parametric study is performed to investigate the effects of these parameters on the external surface temperature of the duct to avoid condensation. A mathematical model is developed to quantify these effects using preliminary data obtained from the heating, ventilation, and air-conditioning system of a pharmaceutical company. The results reveal that external surface temperature increases with an increase in insulation thickness and supply air temperature, whereas it decreases with higher supply air flow rate. It is estimated that the minimum insulation thickness at joint and bend should be maintained between 15–55 and 15–35 mm, respectively, with a variation in ho between 6 and 22 W/m2K to avoid condensation. Additionally, it is estimated that air flow rate should be greater than 1.4 m3/s at 10 W/m2 K and 2.2 m3/s at 22 W/m2 K. Similarly, the ambient air speed should be greater than 2.8 m/s at 6 W/m2 K, respectively. Practical application: Building services engineers have a paucity of information on the effects of the compression of heating, ventilation, and air-conditioning duct thermal insulation. It can cause condensation that will adversely affect the insulation material, thereby increasing the maintenance cost as well increasing the heat loss from the duct so affecting the conditions of supply air. Proper insulation thickness and operating parameters are important for building owners and operators to control ongoing expenses of buildings. This paper seeks to quantify the effect of insulation compression to improve understanding so that this important area may be properly considered by the building services engineer.


Energy Conversion and Management | 2013

Thermo-environmental and economic analysis of simple and regenerative gas turbine cycles with regression modeling and optimization

Abdul Ghafoor Memon; Khanji Harijan; Mohammad Aslam Uqaili; Rizwan Ahmed Memon


Energy Conversion and Management | 2015

Parametric based thermo-environmental and exergoeconomic analyses of a combined cycle power plant with regression analysis and optimization

Abdul Ghafoor Memon; Rizwan Ahmed Memon; Khanji Harijan; Mohammad Aslam Uqaili


Journal of The Energy Institute | 2014

Thermo-environmental analysis of an open cycle gas turbine power plant with regression modeling and optimization

Abdul Ghafoor Memon; Rizwan Ahmed Memon; Khanji Harijan; Muhammad Aslam Uqaili


Energy Procedia | 2014

Competitiveness of Wind Power with the Conventional Thermal Power Plants Using Oil and Natural Gas as Fuel in Pakistan

A. Mengal; Muhammad Aslam Uqaili; Khanji Harijan; Abdul Ghafoor Memon


Mehran University Research Journal of Engineering and Technology | 2017

Energy Analysis of Selected Air Distribution System of Heating, Ventilation and Air Conditioning System: A Case Study of a Pharmaceutical Company

Dileep Kumar; Rizwan Ahmed Memon; Abdul Ghafoor Memon


Sustainable Cities and Society | 2017

Parametric based economic analysis of a trigeneration system proposed for residential buildings

Abdul Ghafoor Memon; Rizwan Ahmed Memon


Energy Conversion and Management | 2017

Thermodynamic analysis of a trigeneration system proposed for residential application

Abdul Ghafoor Memon; Rizwan Ahmed Memon


Mehran Univ. res. j. eng. technol. | 2016

Exergy Analysis of a Subcritical Reheat Steam Power Plant with Regression Modeling and Optimization

Muhib Ali Rajper; Abdul Ghafoor Memon; Khanji Harijan


Heat and Mass Transfer | 2018

Critical analysis of the condensation of water vapor at external surface of the duct

Dileep Kumar; Rizwan Ahmed Memon; Abdul Ghafoor Memon; Intizar Ali; Awais Junejo

Collaboration


Dive into the Abdul Ghafoor Memon's collaboration.

Top Co-Authors

Avatar

Rizwan Ahmed Memon

Mehran University of Engineering and Technology

View shared research outputs
Top Co-Authors

Avatar

Khanji Harijan

Mehran University of Engineering and Technology

View shared research outputs
Top Co-Authors

Avatar

Dileep Kumar

Mehran University of Engineering and Technology

View shared research outputs
Top Co-Authors

Avatar

Mohammad Aslam Uqaili

Mehran University of Engineering and Technology

View shared research outputs
Top Co-Authors

Avatar

Muhammad Aslam Uqaili

Mehran University of Engineering and Technology

View shared research outputs
Top Co-Authors

Avatar

Samiullah Qureshi

Mehran University of Engineering and Technology

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

A. Mengal

Mehran University of Engineering and Technology

View shared research outputs
Top Co-Authors

Avatar

Awais Junejo

Mehran University of Engineering and Technology

View shared research outputs
Top Co-Authors

Avatar

Natasa Nord

Norwegian University of Science and Technology

View shared research outputs
Researchain Logo
Decentralizing Knowledge