Performance Study of Multiple Linear Facet Concentrator Solar Distillation System

Addressing water scarcity issues in rural area by solar distillation method is commonly used because of its simple process, fabrication and low energy cost. Low productivity of a conventional solar still encourages many modifications and novel design including pre-heating of inlet water to solar dis...

Full description

Bibliographic Details
Main Author: Koo, Li Sin
Format: Final Year Project / Dissertation / Thesis
Published: 2023
Subjects:
Online Access:http://eprints.utar.edu.my/5632/
http://eprints.utar.edu.my/5632/1/fyp_MET_2023_KLS.pdf
_version_ 1848886464076578816
author Koo, Li Sin
author_facet Koo, Li Sin
author_sort Koo, Li Sin
building UTAR Institutional Repository
collection Online Access
description Addressing water scarcity issues in rural area by solar distillation method is commonly used because of its simple process, fabrication and low energy cost. Low productivity of a conventional solar still encourages many modifications and novel design including pre-heating of inlet water to solar distillation system for higher water yield. This dissertation studies the enhanced performance of solar distillation system with multiple linear facet concentrator. The maximum inlet water temperature of the solar distillation system as pre-heated by multiple linear facet concentrator is up to 80.05oC under the flow rate of 5LPH. It is concluded that the flow rate 5LPH has the highest water yield rate under the inlet water temperature of 70oC to 80oC. The highest water yield efficiency is found to be 45.59% at the flow rate of 3LPH. A mathematical model of the system is developed to simulate the solar distillation system which allows study of the system without on-site experiment, hence reduce the burden and cost of conducting experiment. Under steady state condition, the highest fresh water productivity of 10.45kg for 6 hours constant sun exposure is achieved at the flow rate 5LPH under ambient temperature of 30oC and solar irradiance of 800W/m2 .
first_indexed 2025-11-15T19:38:54Z
format Final Year Project / Dissertation / Thesis
id utar-5632
institution Universiti Tunku Abdul Rahman
institution_category Local University
last_indexed 2025-11-15T19:38:54Z
publishDate 2023
recordtype eprints
repository_type Digital Repository
spelling utar-56322023-09-18T08:44:58Z Performance Study of Multiple Linear Facet Concentrator Solar Distillation System Koo, Li Sin T Technology (General) TC Hydraulic engineering. Ocean engineering Addressing water scarcity issues in rural area by solar distillation method is commonly used because of its simple process, fabrication and low energy cost. Low productivity of a conventional solar still encourages many modifications and novel design including pre-heating of inlet water to solar distillation system for higher water yield. This dissertation studies the enhanced performance of solar distillation system with multiple linear facet concentrator. The maximum inlet water temperature of the solar distillation system as pre-heated by multiple linear facet concentrator is up to 80.05oC under the flow rate of 5LPH. It is concluded that the flow rate 5LPH has the highest water yield rate under the inlet water temperature of 70oC to 80oC. The highest water yield efficiency is found to be 45.59% at the flow rate of 3LPH. A mathematical model of the system is developed to simulate the solar distillation system which allows study of the system without on-site experiment, hence reduce the burden and cost of conducting experiment. Under steady state condition, the highest fresh water productivity of 10.45kg for 6 hours constant sun exposure is achieved at the flow rate 5LPH under ambient temperature of 30oC and solar irradiance of 800W/m2 . 2023-04 Final Year Project / Dissertation / Thesis NonPeerReviewed application/pdf http://eprints.utar.edu.my/5632/1/fyp_MET_2023_KLS.pdf Koo, Li Sin (2023) Performance Study of Multiple Linear Facet Concentrator Solar Distillation System. Master dissertation/thesis, UTAR. http://eprints.utar.edu.my/5632/
spellingShingle T Technology (General)
TC Hydraulic engineering. Ocean engineering
Koo, Li Sin
Performance Study of Multiple Linear Facet Concentrator Solar Distillation System
title Performance Study of Multiple Linear Facet Concentrator Solar Distillation System
title_full Performance Study of Multiple Linear Facet Concentrator Solar Distillation System
title_fullStr Performance Study of Multiple Linear Facet Concentrator Solar Distillation System
title_full_unstemmed Performance Study of Multiple Linear Facet Concentrator Solar Distillation System
title_short Performance Study of Multiple Linear Facet Concentrator Solar Distillation System
title_sort performance study of multiple linear facet concentrator solar distillation system
topic T Technology (General)
TC Hydraulic engineering. Ocean engineering
url http://eprints.utar.edu.my/5632/
http://eprints.utar.edu.my/5632/1/fyp_MET_2023_KLS.pdf