Standardized Balance of Plant Engineering for Solar Process Heat
DOI:
https://doi.org/10.52825/solarpaces.v1i.690Schlagworte:
Balance of Plant, BoP, Concentrating Solar, Solar Process Heat, ModulusAbstract
The aim of the Modulus (Modular Heat Transfer Station) project is to achieve a cost reduction by standardizing the Balance of Plant (BoP) in the field of solar thermal process heat plants. A consortium of three parabolic trough collector manufacturers, one producer of conventional BoP plants, and two research institutes have joined forces to develop a conceptional approach: First, a worldwide research of existing process heat plants was carried out and the database "ship-plants.info" was evaluated. One partner analyzed in particular the plants that will be added in 2021. In the next step, the components of a BoP plant were listed in the power range from 0.5 to 10 MW, their potential for standardization was investigated and classified. Based on this, a standardized piping and instrumentation diagram (P&ID) was developed. This has already been used as a template for further detailing of the BoP for three process heat plants in Europe, which are presented in the third chapter. Finally, further standardization options for commissioning (functional and safety tests) and performance evaluation are discussed.
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Literaturhinweise
Database for applications of solar heat integration in industrial processes, http://ship-plants.info accessed 12th of February 2022.
B. Epp, Survey results based on project developers’ information, collected by Solrico in February 2022.
B. Epp, “Concentrating solar heat capacity quadruples in 2022”, 29 August 2022, www.solarthermalworld.org, accessed 30th of August 2022.
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Copyright (c) 2024 Dirk Krüger, Jakob Leicht, Sven Fahr, Bärbel Epp, Joachim Krüger, Stefan Bonleitner, Andreas Burger, Klaus-Jürgen Riffelmann, Jana Stengler

Dieses Werk steht unter der Lizenz Creative Commons Namensnennung 4.0 International.
Daten zur Förderung
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Deutsches Zentrum für Luft- und Raumfahrt
Nummer der Förderung 03ETW021A