Newly Developed Thermal Load Profile for Enhancement in Hot Water System

In recent years with the advancement of technologies, the demand of a reliable and flexible hot water system has increased tremendously. A reliable system includes several critical points which are the degree of safety that a system can offer, the conservation of the energy used and the issue of cos...

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Main Authors: Munirah, Nawi, Norazlianie, Sazali, S. A., Che Ghani, Kettner, Maurice
Format: Article
Language:English
Published: Akademia Baru Publishing (M) Sdn Bhd 2021
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/30624/7/Newly%20Developed%20Thermal%20Load%20Profile%20for%20Enhancement%20in%20Hot%20Water%20System.pdf
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author Munirah, Nawi
Norazlianie, Sazali
S. A., Che Ghani
Kettner, Maurice
author_facet Munirah, Nawi
Norazlianie, Sazali
S. A., Che Ghani
Kettner, Maurice
author_sort Munirah, Nawi
collection UMP
description In recent years with the advancement of technologies, the demand of a reliable and flexible hot water system has increased tremendously. A reliable system includes several critical points which are the degree of safety that a system can offer, the conservation of the energy used and the issue of cost saving. While a flexible system must provide the flexibility in the control of the output from a system desired by the consumers itself. This paper reported on newly developed system for hot water that will greatly benefit consumer. It focuses on building an extension of the cyber physical system in the existing system with purposes of implementing a thermal load profile for consumer who use the hot water system in their daily life. The implementation of the thermal load profile to the system is significant especially in conserving the energy used in the system simultaneously saving any related cost to operate the system. Based on the implemented thermal load profile, the system works in maintaining an output of thermal energy from the hot water supplied to the consumer at a certain value. In addition, it also allows flexibility in controlling the desired temperature by consumers. This new system is simulated in a test bench in the form of laboratory setup. The system uses a control loop feedback mechanism, which means that it will continuously regulate the temperature and mass flow rate of the flowed water in the pipeline for the consumer hot water simulation based on the calculated difference of the actual supplied values and the set values. With the use of standard devices and actuators to drive the system, a robust system can be realized.
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spelling UMPir306242021-02-04T08:30:28Z http://umpir.ump.edu.my/id/eprint/30624/ Newly Developed Thermal Load Profile for Enhancement in Hot Water System Munirah, Nawi Norazlianie, Sazali S. A., Che Ghani Kettner, Maurice TJ Mechanical engineering and machinery In recent years with the advancement of technologies, the demand of a reliable and flexible hot water system has increased tremendously. A reliable system includes several critical points which are the degree of safety that a system can offer, the conservation of the energy used and the issue of cost saving. While a flexible system must provide the flexibility in the control of the output from a system desired by the consumers itself. This paper reported on newly developed system for hot water that will greatly benefit consumer. It focuses on building an extension of the cyber physical system in the existing system with purposes of implementing a thermal load profile for consumer who use the hot water system in their daily life. The implementation of the thermal load profile to the system is significant especially in conserving the energy used in the system simultaneously saving any related cost to operate the system. Based on the implemented thermal load profile, the system works in maintaining an output of thermal energy from the hot water supplied to the consumer at a certain value. In addition, it also allows flexibility in controlling the desired temperature by consumers. This new system is simulated in a test bench in the form of laboratory setup. The system uses a control loop feedback mechanism, which means that it will continuously regulate the temperature and mass flow rate of the flowed water in the pipeline for the consumer hot water simulation based on the calculated difference of the actual supplied values and the set values. With the use of standard devices and actuators to drive the system, a robust system can be realized. Akademia Baru Publishing (M) Sdn Bhd 2021 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/30624/7/Newly%20Developed%20Thermal%20Load%20Profile%20for%20Enhancement%20in%20Hot%20Water%20System.pdf Munirah, Nawi and Norazlianie, Sazali and S. A., Che Ghani and Kettner, Maurice (2021) Newly Developed Thermal Load Profile for Enhancement in Hot Water System. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 79 (2). pp. 83-94. ISSN 2289-7879. (Published) https://doi.org/10.37934/arfmts.79.2.8394 https://doi.org/10.37934/arfmts.79.2.8394
spellingShingle TJ Mechanical engineering and machinery
Munirah, Nawi
Norazlianie, Sazali
S. A., Che Ghani
Kettner, Maurice
Newly Developed Thermal Load Profile for Enhancement in Hot Water System
title Newly Developed Thermal Load Profile for Enhancement in Hot Water System
title_full Newly Developed Thermal Load Profile for Enhancement in Hot Water System
title_fullStr Newly Developed Thermal Load Profile for Enhancement in Hot Water System
title_full_unstemmed Newly Developed Thermal Load Profile for Enhancement in Hot Water System
title_short Newly Developed Thermal Load Profile for Enhancement in Hot Water System
title_sort newly developed thermal load profile for enhancement in hot water system
topic TJ Mechanical engineering and machinery
url http://umpir.ump.edu.my/id/eprint/30624/7/Newly%20Developed%20Thermal%20Load%20Profile%20for%20Enhancement%20in%20Hot%20Water%20System.pdf
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AT sacheghani newlydevelopedthermalloadprofileforenhancementinhotwatersystem
AT kettnermaurice newlydevelopedthermalloadprofileforenhancementinhotwatersystem