CAUSAL MODEL FOR PEAK AND OFF PEAK WASTE HEAT RECOVERY FOR CHILLED WATER PRODUCTION

The objective of this study is to develop a causal model for estimating the amount of chilled water that can be produced from generated waste heat during off peak period of a district cooling plant. The methodology adopted is to calculate the amount of waste heat generated by the gas turbines of the...

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Main Authors: Abd Majid, Mohd Amin, A.Sulaiman, Shaharin, Ibrahim, Idris, Baharddin, Zuhairi
Format: Conference or Workshop Item
Published: 2012
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Online Access:http://eprints.utp.edu.my/7799/1/1569565437.pdf
http://eprints.utp.edu.my/7799/
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Institution: Universiti Teknologi Petronas
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spelling my.utp.eprints.77992017-01-19T08:21:29Z CAUSAL MODEL FOR PEAK AND OFF PEAK WASTE HEAT RECOVERY FOR CHILLED WATER PRODUCTION Abd Majid, Mohd Amin A.Sulaiman, Shaharin Ibrahim, Idris Baharddin, Zuhairi TJ Mechanical engineering and machinery The objective of this study is to develop a causal model for estimating the amount of chilled water that can be produced from generated waste heat during off peak period of a district cooling plant. The methodology adopted is to calculate the amount of waste heat generated by the gas turbines of the plant during peak and off peak operations. Ten months of 2009 historical data of waste heat generated during peak and off peak periods are analyzed. The chilled water produced by absorption cooling for the ten months during peak period is also analyzed. Mathematical models using the causal relationship of the waste heat generated with the chilled water produced during the peak period for the ten months are formulated. Three models are formulated using the data namely linear, quadratic and exponential. The R2 values obtained are 0.5034, 0.784 and 0.5128 for the linear, quadratic and exponential respectively. Since the R2 value for the quadratic model is the highest, the quadratic model is used to evaluate the amount of chilled water that could be generated from the off peak waste heat. From the calculation it is estimated that an average of 520,310 RTh of chilled water could be produced monthly from the off peak waste heat. This is 79.7 percent of the chilled water produced during peak period. Based on these findings the waste heat during off peak if converted to chilled water using absorption process will lead to economic benefits as well as reduced emission to atmosphere. Further detail study will be undertaken to enhance the model and to establish the design configuration of the system to recover the off peak waste heat for chilled water production by absorption process. 2012-06-12 Conference or Workshop Item PeerReviewed application/pdf http://eprints.utp.edu.my/7799/1/1569565437.pdf Abd Majid, Mohd Amin and A.Sulaiman, Shaharin and Ibrahim, Idris and Baharddin, Zuhairi (2012) CAUSAL MODEL FOR PEAK AND OFF PEAK WASTE HEAT RECOVERY FOR CHILLED WATER PRODUCTION. In: 2012 The 3rd International Conference on Production, Energy and Reliability (ICPER2012), Kuala Lumpur Convention Center. http://eprints.utp.edu.my/7799/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Abd Majid, Mohd Amin
A.Sulaiman, Shaharin
Ibrahim, Idris
Baharddin, Zuhairi
CAUSAL MODEL FOR PEAK AND OFF PEAK WASTE HEAT RECOVERY FOR CHILLED WATER PRODUCTION
description The objective of this study is to develop a causal model for estimating the amount of chilled water that can be produced from generated waste heat during off peak period of a district cooling plant. The methodology adopted is to calculate the amount of waste heat generated by the gas turbines of the plant during peak and off peak operations. Ten months of 2009 historical data of waste heat generated during peak and off peak periods are analyzed. The chilled water produced by absorption cooling for the ten months during peak period is also analyzed. Mathematical models using the causal relationship of the waste heat generated with the chilled water produced during the peak period for the ten months are formulated. Three models are formulated using the data namely linear, quadratic and exponential. The R2 values obtained are 0.5034, 0.784 and 0.5128 for the linear, quadratic and exponential respectively. Since the R2 value for the quadratic model is the highest, the quadratic model is used to evaluate the amount of chilled water that could be generated from the off peak waste heat. From the calculation it is estimated that an average of 520,310 RTh of chilled water could be produced monthly from the off peak waste heat. This is 79.7 percent of the chilled water produced during peak period. Based on these findings the waste heat during off peak if converted to chilled water using absorption process will lead to economic benefits as well as reduced emission to atmosphere. Further detail study will be undertaken to enhance the model and to establish the design configuration of the system to recover the off peak waste heat for chilled water production by absorption process.
format Conference or Workshop Item
author Abd Majid, Mohd Amin
A.Sulaiman, Shaharin
Ibrahim, Idris
Baharddin, Zuhairi
author_facet Abd Majid, Mohd Amin
A.Sulaiman, Shaharin
Ibrahim, Idris
Baharddin, Zuhairi
author_sort Abd Majid, Mohd Amin
title CAUSAL MODEL FOR PEAK AND OFF PEAK WASTE HEAT RECOVERY FOR CHILLED WATER PRODUCTION
title_short CAUSAL MODEL FOR PEAK AND OFF PEAK WASTE HEAT RECOVERY FOR CHILLED WATER PRODUCTION
title_full CAUSAL MODEL FOR PEAK AND OFF PEAK WASTE HEAT RECOVERY FOR CHILLED WATER PRODUCTION
title_fullStr CAUSAL MODEL FOR PEAK AND OFF PEAK WASTE HEAT RECOVERY FOR CHILLED WATER PRODUCTION
title_full_unstemmed CAUSAL MODEL FOR PEAK AND OFF PEAK WASTE HEAT RECOVERY FOR CHILLED WATER PRODUCTION
title_sort causal model for peak and off peak waste heat recovery for chilled water production
publishDate 2012
url http://eprints.utp.edu.my/7799/1/1569565437.pdf
http://eprints.utp.edu.my/7799/
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