Investigation of Evaporation Rate for Covered and Uncovered (using recycled materials) Conditions in UiTM Shah Alam

Author:

Rahman Fatma Fatimah,Mohd Zaki Zaizatul Zafflina,Mohamad Irma Noorazurah

Abstract

Abstract The evaporation rate varies according to temperature, humidity, and wind. The evaporation rate tends to be higher in the hot, dry months and lower in the wetter ones. This may affect the nation’s energy use, indoor air quality, and water availability. This study conducted experiments under three conditions—uncovered, partially, and fully covered to ascertain the evaporation rate at UiTM Shah Alam, Malaysia. Recycled materials such as bottle caps were used in the experiment. The study examined the evaporation rate at UiTM Shah Alam in Selangor. The study discovered that the uncovered surface area evaporated at the highest rates in the morning, noon, and afternoon due to direct solar exposure. As some or all of the surface was shielded from the sun’s rays, partially covered and fully covered surface areas had lower evaporation rates. It shows the evaporation rate for fully covered condition reduced 22 – 50 percent from uncovered condition. Meanwhile, evaporation rate for partially covered condition decreased by 10 – 17 percent compared to uncovered condition. The study offers important information about the variables influencing evaporation rate, which can be used to enhance understanding of evaporation processes and optimize evaporation in various applications. The findings may shed important light on the evaporation process and the variables that influence it, such as temperature, humidity, and cover material. The research results can be used to enhance building design and construction methods, increase building energy efficiency, and guide water management and conservation policies.

Publisher

IOP Publishing

Reference10 articles.

1. Evaporation loss and energy balance of agricultural reservoirs covered with counterweighted spheres in arid region;Han;Agricultural Water Management,2020

2. Effect of long-term irrigation with treated wastewater on the root zone environment;Assouline;Vadose Zone Journal,2013

3. Efficiency of shading materials in reducing evaporation from free water surfaces;Alvarez;Agricultural Water Management,2006

4. Evaporation reduction by suspended and floating covers: overview, modelling and efficiency;Yao;Urban water security research alliance technical report,2010

5. Evaporation suppression and energy balance of water reservoirs covered with self-assembling floating elements;Aminzadeh;Hydrology and Earth System Sciences,2018

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