Chilled Ceiling Adaptive Control with Application of Parameters Gained from the Chilled Ceiling System Proposal Algorithm

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Abstract:

Chilled ceiling represents air-conditioning system in which a part of heat load is taken away by the ceiling thus decreasing the demand of cooling air amount. Chilled ceiling can only be applied with automatic air-conditioning control. The contribution presents computer program that can serve for either the proposal of chilled ceiling parameters or for chilled ceiling control algorithm.

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317-324

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August 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Niu, J. L., Zuo, H. G., Burnett, J., Simulation Methodology of Radiant Cooling With Elevated Air Movement. In: Seventh International IBPSA Conference Proceedings. Rio de Janeiro, Brazil, August 13-15, 2001. url: http: /www. ibpsa. org.

Google Scholar

[2] Loveday, D. L. et al., Designing for Thermal Comfort in Combined Chilled Ceilings/Displacement Ventilation Environments. In: ASHRAE Transactions: Symposia, 1998. url: http: /www. ashrae. org.

Google Scholar

[3] Rimár, M. et al., Experimental Study on Energy Gain of the Solar Collector with Automatic Inclining System in Conditions of Central Europe During Low Solar Potential Periods, Applied Mechanics and Materials 415 (2013) 26-29. ISSN 1662-7482.

DOI: 10.4028/www.scientific.net/amm.415.26

Google Scholar

[4] Fedák, M. et al., Experimental Study of Correlation of Mechanical Properties of Al-Si Casts Produced by Pressure Die Casting with SiFeMn Content and Their Mutual Mass Relations, Advances in Materials Science and Engineering (2013).

DOI: 10.1155/2013/585714

Google Scholar

[5] Jurko, J. and Panda, A., Change of material deformation under the machined surface when drilling steel C45 and DIN 1. 4301. Applied Mechanics and Materials 459 (2013) 428-431.

DOI: 10.4028/www.scientific.net/amm.459.428

Google Scholar

[6] T. Krenický, Implementation of Virtual Instrumentation for Machinery Monitoring, Scientific Papers: Operation and Diagnostics of Machines and Production Systems Operational States 4, Lüdenscheid, RAM-Verlag (2011) pp.5-8.

Google Scholar

[7] Bičejová, Ľ., The influence of water pressure changes on vibrations origin at hydroerosion. Scientific Papers: Operation and diagnostics of machines and production systems operational states 4, Lüdenscheid, RAM-Verlag (2011) pp.34-38.

Google Scholar

[8] Mihalčová, J., Tribotechnical Diagnosis in Aircraft Engine Practice, Applied Mechanics and Materials 308 (2013) 57-62.

DOI: 10.4028/www.scientific.net/amm.308.57

Google Scholar

[9] Straka, Ľ., Operational reliability of mechatronic equipment based on pneumatic artificial muscle, Applied Mechanics and Materials 460 (2014) 41-48.

DOI: 10.4028/www.scientific.net/amm.460.41

Google Scholar

[10] EN STN 73 0548.

Google Scholar

[11] Krenický, T., Jacko, P., Simultaneous temperature monitoring using virtualization, Scientific Papers: Operation and diagnostics of machines and production systems operational states. Lüdenscheid, RAM-Verlag, 2009, pp.58-62.

Google Scholar

[12] Černecký, J., Koniar, J., Brodnianská, Z., Effect of regulating elements on convective heat transfer along shaped heat exchange surfaces, Chemical and Process Engineering-Inżynieria Chemiczna i Procesowa 34 (2013) 5-16.

DOI: 10.2478/cpe-2013-0002

Google Scholar