Minimizing and monitoring the energy consumption of control valves

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30285_2012_SP1_02
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The discussions revolving around the scarcity of fossil fuels and increasing energy prices have refocused on the most effective action in the long term: reducing energy consumption. According to ZVEI, the association of manufacturers in the German electrical and electronic industry, using the right automation could help the German industry alone cut back its energy consumption by 10 to 25 %. Status monitoring, status conservation and infrastructure optimization can be of help when optimizing the technical infrastructure by preventing additional energy consumption due to plant failures, the resulting start-up and shutdown procedures as well as the production of nonconforming products. Three major areas can also be identified when optimizing the production process: process sizing, process monitoring and process control. This article deals with the control valve as a final control element that can help minimize energy consumption when it is perfectly tuned to its assigned task. In addition, we will look at state-of-the-art asset management concepts based on smart positioners, which facilitate energy monitoring and indicate possible savings potentials thanks to optimized operating modes.
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Authors Jörg Kiesbauer/Domagoj Vnucec
Publishing Date 30 Sept 2012
Format PDF
Zeitschrift Industriearmaturen - Special 1 2012
Publisher Vulkan-Verlag GmbH
Language English
Pages 8
Title Minimizing and monitoring the energy consumption of control valves
Description The discussions revolving around the scarcity of fossil fuels and increasing energy prices have refocused on the most effective action in the long term: reducing energy consumption. According to ZVEI, the association of manufacturers in the German electrical and electronic industry, using the right automation could help the German industry alone cut back its energy consumption by 10 to 25 %. Status monitoring, status conservation and infrastructure optimization can be of help when optimizing the technical infrastructure by preventing additional energy consumption due to plant failures, the resulting start-up and shutdown procedures as well as the production of nonconforming products. Three major areas can also be identified when optimizing the production process: process sizing, process monitoring and process control. This article deals with the control valve as a final control element that can help minimize energy consumption when it is perfectly tuned to its assigned task. In addition, we will look at state-of-the-art asset management concepts based on smart positioners, which facilitate energy monitoring and indicate possible savings potentials thanks to optimized operating modes.
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