In this study, an innovative heat and mass transfer core is proposed to provide thermal comfort and humidity control using a hollow fiber contactor with multiple bundles of micro-porous hollow fibers. The hollow fiber-based core utilizes 12 bundles aligned vertically, each with 1,000 packed polypropylene hollow fibers. The proposed core was developed and tested under various operating and ambient conditions as a cooling core for a compact evaporative cooling unit and a dehumidification core for a liquid desiccant dehumidification unit. As a cooling core, the fiber-based evaporative cooler provides a maximum cooling capacity of 502 W with a wet bulb effectiveness of 85%. As a dehumidification core and employing potassium formate as a liquid ...
With the rising costs of electricity due to increasing demand of electric power, liquid desiccant sy...
This project aims to cool air by six degrees Celsius using minimal energy. The report includes the b...
AbstractLow energy and sustainable alternative air conditioning systems are getting more and more at...
In this study, an innovative heat and mass transfer core is proposed to provide thermal comfort and ...
Due to the advantages of light weight, corrosive resistant and low cost, hollow fibres have been stu...
In order to provide a comfortable living and working environment indoors in tropical countries, the ...
The membrane-based desiccant liquid air dehumidification system is a promising technology for effici...
A polymer hollow fibre evaporative cooling system with a novel configuration of fibre bundle is prop...
A novel cross-flow liquid desiccant polymer hollow fiber dehumidifier (PHFD) is investigated numeric...
This report details the comparison between the existing industrial membrane system and the newly dev...
This communication presents the performance evaluation and comparative study between two different t...
In this study, a water-to-air type hollow-fiber membrane humidifier was built, and its humidificatio...
The objective of this PhD project is to develop novel membranes and desiccants that would help devel...
The objective of this portion of the project was to identify polymeric liquid moisture sorbents thro...
Operating air conditioning equipment with low cost and high efficiency is a great challenge in the H...
With the rising costs of electricity due to increasing demand of electric power, liquid desiccant sy...
This project aims to cool air by six degrees Celsius using minimal energy. The report includes the b...
AbstractLow energy and sustainable alternative air conditioning systems are getting more and more at...
In this study, an innovative heat and mass transfer core is proposed to provide thermal comfort and ...
Due to the advantages of light weight, corrosive resistant and low cost, hollow fibres have been stu...
In order to provide a comfortable living and working environment indoors in tropical countries, the ...
The membrane-based desiccant liquid air dehumidification system is a promising technology for effici...
A polymer hollow fibre evaporative cooling system with a novel configuration of fibre bundle is prop...
A novel cross-flow liquid desiccant polymer hollow fiber dehumidifier (PHFD) is investigated numeric...
This report details the comparison between the existing industrial membrane system and the newly dev...
This communication presents the performance evaluation and comparative study between two different t...
In this study, a water-to-air type hollow-fiber membrane humidifier was built, and its humidificatio...
The objective of this PhD project is to develop novel membranes and desiccants that would help devel...
The objective of this portion of the project was to identify polymeric liquid moisture sorbents thro...
Operating air conditioning equipment with low cost and high efficiency is a great challenge in the H...
With the rising costs of electricity due to increasing demand of electric power, liquid desiccant sy...
This project aims to cool air by six degrees Celsius using minimal energy. The report includes the b...
AbstractLow energy and sustainable alternative air conditioning systems are getting more and more at...