Numerical Simulation of Solar-Flue Gas Chimney for Energy Recovery

A solar-flue gas chimney is an energy recovery model utilizing solar energy and thermal energy from flue gas discharged from power plant to produce convective flow which drives wind turbine to generate electricity. This solar-flue gas chimney has three essential components, known as solar-flue gas c...

Full description

Saved in:
Bibliographic Details
Main Author: Khor, Yin Yin
Format: Final Year Project
Published: Universiti Teknologi Petronas 2009
Subjects:
Online Access:http://utpedia.utp.edu.my/667/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my-utp-utpedia.667
record_format eprints
spelling my-utp-utpedia.6672017-01-19T15:48:28Z http://utpedia.utp.edu.my/667/ Numerical Simulation of Solar-Flue Gas Chimney for Energy Recovery Khor, Yin Yin TJ Mechanical engineering and machinery A solar-flue gas chimney is an energy recovery model utilizing solar energy and thermal energy from flue gas discharged from power plant to produce convective flow which drives wind turbine to generate electricity. This solar-flue gas chimney has three essential components, known as solar-flue gas collector, chimney and turbine. Prior to the CFD simulation, the system has been modeled analytically. Numerical investigations of the flow and temperature distribution in a solar-flue gas collector have been carried out by CFD simulation. The simulation was achieved by using the commercial software, FLUENT. The simulation commenced with the actual experimental measurement conducted previously by other work. Through the simulation, this project will be presenting the thermal performance of the solar collector and elucidate how the flow and temperature distributions in the collector panel are influenced by the collector length, inlet air gap height and inlet flue gas temperature to the collector panel. Analytical investigations of the solar-flue gas collector are also analyzed out to support the results determined by numerical approach. The simulations show that both temperature and air-flow rate almost increase linearly with the increase of heat inputs from the discharged flue gas. It indicates that the temperature of flue gas is predominant in strengthening air heating and natural convection flow for a solar-flue gas chimney. It is also found that the natural air-flow rate increases linearly with increasing inlet air gap height from 0.07m to 0.16m under identical conditions while the length of solar-flue gas chimney for 0.05m air passage height should not exceed 2.5m. Based on the investigations, recommendations are given in order to improve the collector efficiency and increase the performance of energy recovery. Universiti Teknologi Petronas 2009 Final Year Project NonPeerReviewed Khor, Yin Yin (2009) Numerical Simulation of Solar-Flue Gas Chimney for Energy Recovery. Universiti Teknologi Petronas, Sri Iskandar,Tronoh,Perak. (Unpublished)
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Electronic and Digitized Intellectual Asset
url_provider http://utpedia.utp.edu.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Khor, Yin Yin
Numerical Simulation of Solar-Flue Gas Chimney for Energy Recovery
description A solar-flue gas chimney is an energy recovery model utilizing solar energy and thermal energy from flue gas discharged from power plant to produce convective flow which drives wind turbine to generate electricity. This solar-flue gas chimney has three essential components, known as solar-flue gas collector, chimney and turbine. Prior to the CFD simulation, the system has been modeled analytically. Numerical investigations of the flow and temperature distribution in a solar-flue gas collector have been carried out by CFD simulation. The simulation was achieved by using the commercial software, FLUENT. The simulation commenced with the actual experimental measurement conducted previously by other work. Through the simulation, this project will be presenting the thermal performance of the solar collector and elucidate how the flow and temperature distributions in the collector panel are influenced by the collector length, inlet air gap height and inlet flue gas temperature to the collector panel. Analytical investigations of the solar-flue gas collector are also analyzed out to support the results determined by numerical approach. The simulations show that both temperature and air-flow rate almost increase linearly with the increase of heat inputs from the discharged flue gas. It indicates that the temperature of flue gas is predominant in strengthening air heating and natural convection flow for a solar-flue gas chimney. It is also found that the natural air-flow rate increases linearly with increasing inlet air gap height from 0.07m to 0.16m under identical conditions while the length of solar-flue gas chimney for 0.05m air passage height should not exceed 2.5m. Based on the investigations, recommendations are given in order to improve the collector efficiency and increase the performance of energy recovery.
format Final Year Project
author Khor, Yin Yin
author_facet Khor, Yin Yin
author_sort Khor, Yin Yin
title Numerical Simulation of Solar-Flue Gas Chimney for Energy Recovery
title_short Numerical Simulation of Solar-Flue Gas Chimney for Energy Recovery
title_full Numerical Simulation of Solar-Flue Gas Chimney for Energy Recovery
title_fullStr Numerical Simulation of Solar-Flue Gas Chimney for Energy Recovery
title_full_unstemmed Numerical Simulation of Solar-Flue Gas Chimney for Energy Recovery
title_sort numerical simulation of solar-flue gas chimney for energy recovery
publisher Universiti Teknologi Petronas
publishDate 2009
url http://utpedia.utp.edu.my/667/
_version_ 1739830687350915072
score 13.18916