Optimization of Cooling Utility System with Continuous Self-Learning Performance Models

Author:

Peesel Ron-HendrikORCID,Schlosser Florian,Meschede Henning,Dunkelberg Heiko,Walmsley TimothyORCID

Abstract

Prerequisite for an efficient cooling energy system is the knowledge and optimal combination of different operating conditions of individual compression and free cooling chillers. The performance of cooling systems depends on their part-load performance and their condensing temperature, which are often not continuously measured. Recorded energy data remain unused, and manufacturers’ data differ from the real performance. For this purpose, manufacturer and real data are combined and continuously adapted to form part-load chiller models. This study applied a predictive optimization algorithm to calculate the optimal operating conditions of multiple chillers. A sprinkler tank offers the opportunity to store cold-water for later utilization. This potential is used to show the load shifting potential of the cooling system by using a variable electricity price as an input variable to the optimization. The set points from the optimization have been continuously adjusted throughout a dynamic simulation. A case study of a plastic processing company evaluates different scenarios against the status quo. Applying an optimal chiller sequencing and charging strategy of a sprinkler tank leads to electrical energy savings of up to 43%. Purchasing electricity on the EPEX SPOT market leads to additional costs savings of up to 17%. The total energy savings highly depend on the weather conditions and the prediction horizon.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference32 articles.

1. Nachhaltige Kälteversorgung in Deutschland an den Beispielen Gebäudeklimatisierung und Industriehttps://www.umweltbundesamt.de/sites/default/files/medien/378/publikationen/climate_change_25_2014_nachhaltige_kaelteversorgung_in_deutschland_1.pdf

2. Prädiktive simulationsgestützte Optimierung von Kältemaschinen im Verbund;Peesel,2017

3. Mathematical Optimisation and Simulation of Parcel Transshipment Terminals—Better Solutions by Linking These Two Complementary Methods;Clausen;Simul. Prod. Logist.,2015

4. Betriebsoptimierung von Kältezentralen—Einsparpotentiale durch situationsabhängige Einsatzregeln. KKA Kälte Klima Aktuell Sonderausgabe Großkältetechnikhttp://www.perpendo.de/files/kka-2009.pdf

5. Optimal control development for chilled water plants using a quadratic representation

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