date: 2020-10-04T11:56:02Z pdf:PDFVersion: 1.5 pdf:docinfo:title: Experimental & Computational Fluid Dynamics Study of the Suitability of Different Solid Feed Pellets for Aquaculture Systems xmp:CreatorTool: LaTeX with hyperref package access_permission:can_print_degraded: true subject: Fish feed delivery is one of the challenges which fish farmers encounter daily. The main aim of the feeding process is to ensure that every fish is provided with sufficient feed to maintain desired growth rates. The properties of fish feed pellet, such as water stability, degree of swelling or floating time, are critical traits impacting feed delivery. Some considerable effort is currently being made with regard to the replacement of fish meal and fish oil with other sustainable alternative raw materials (i.e., plant or insect-based) with different properties. The main aim of this study is to investigate the motion and residence time distribution (RTD) of two types of solid feed pellets with different properties in a cylindrical fish tank. After experimental identification of material and geometrical properties of both types of pellets, a detailed 3D computational fluid dynamics (CFD) study for each type of pellets is performed. The mean residence time of pellets injected at the surface of the fish tank can differ by up to 75% depending on the position of the injection. The smallest residence time is when the position is located at the center of the liquid surface (17 s); the largest is near the edge of the tank (75 s). The maximum difference between the two studied types of pellets is 25% and it increases with positions closer to the center of the tank. The maximum difference for positions along the perimeter at 3/4 tank radius is 8%; the largest residence times are observed at the opposite side of the water inlet. Based on this study, we argue that the suitability of different solid feed pellets for aquaculture systems with specific fish can be determined, and eventually the pellet composition (formula) as well as the injection position can be optimized. dc:format: application/pdf; version=1.5 pdf:docinfo:creator_tool: LaTeX with hyperref package access_permission:fill_in_form: true pdf:encrypted: false dc:title: Experimental & Computational Fluid Dynamics Study of the Suitability of Different Solid Feed Pellets for Aquaculture Systems modified: 2020-10-04T11:56:02Z cp:subject: Fish feed delivery is one of the challenges which fish farmers encounter daily. The main aim of the feeding process is to ensure that every fish is provided with sufficient feed to maintain desired growth rates. The properties of fish feed pellet, such as water stability, degree of swelling or floating time, are critical traits impacting feed delivery. Some considerable effort is currently being made with regard to the replacement of fish meal and fish oil with other sustainable alternative raw materials (i.e., plant or insect-based) with different properties. The main aim of this study is to investigate the motion and residence time distribution (RTD) of two types of solid feed pellets with different properties in a cylindrical fish tank. After experimental identification of material and geometrical properties of both types of pellets, a detailed 3D computational fluid dynamics (CFD) study for each type of pellets is performed. The mean residence time of pellets injected at the surface of the fish tank can differ by up to 75% depending on the position of the injection. The smallest residence time is when the position is located at the center of the liquid surface (17 s); the largest is near the edge of the tank (75 s). The maximum difference between the two studied types of pellets is 25% and it increases with positions closer to the center of the tank. The maximum difference for positions along the perimeter at 3/4 tank radius is 8%; the largest residence times are observed at the opposite side of the water inlet. Based on this study, we argue that the suitability of different solid feed pellets for aquaculture systems with specific fish can be determined, and eventually the pellet composition (formula) as well as the injection position can be optimized. pdf:docinfo:subject: Fish feed delivery is one of the challenges which fish farmers encounter daily. The main aim of the feeding process is to ensure that every fish is provided with sufficient feed to maintain desired growth rates. The properties of fish feed pellet, such as water stability, degree of swelling or floating time, are critical traits impacting feed delivery. Some considerable effort is currently being made with regard to the replacement of fish meal and fish oil with other sustainable alternative raw materials (i.e., plant or insect-based) with different properties. The main aim of this study is to investigate the motion and residence time distribution (RTD) of two types of solid feed pellets with different properties in a cylindrical fish tank. After experimental identification of material and geometrical properties of both types of pellets, a detailed 3D computational fluid dynamics (CFD) study for each type of pellets is performed. The mean residence time of pellets injected at the surface of the fish tank can differ by up to 75% depending on the position of the injection. The smallest residence time is when the position is located at the center of the liquid surface (17 s); the largest is near the edge of the tank (75 s). The maximum difference between the two studied types of pellets is 25% and it increases with positions closer to the center of the tank. The maximum difference for positions along the perimeter at 3/4 tank radius is 8%; the largest residence times are observed at the opposite side of the water inlet. Based on this study, we argue that the suitability of different solid feed pellets for aquaculture systems with specific fish can be determined, and eventually the pellet composition (formula) as well as the injection position can be optimized. pdf:docinfo:creator: Firstname Lastname, Firstname Lastname and Firstname Lastname PTEX.Fullbanner: This is pdfTeX, Version 3.14159265-2.6-1.40.18 (TeX Live 2017/W32TeX) kpathsea version 6.2.3 meta:author: Firstname Lastname, Firstname Lastname and Firstname Lastname trapped: False meta:creation-date: 2020-10-04T11:56:02Z created: Sun Oct 04 13:56:02 CEST 2020 access_permission:extract_for_accessibility: true Creation-Date: 2020-10-04T11:56:02Z Author: Firstname Lastname, Firstname Lastname and Firstname Lastname producer: pdfTeX-1.40.18 pdf:docinfo:producer: pdfTeX-1.40.18 Keywords: recirculating aquaculture systems (RAS); fish feed; residence time distribution (RTD); 3-dimensional (3D) simulation access_permission:modify_annotations: true dc:creator: Firstname Lastname, Firstname Lastname and Firstname Lastname dcterms:created: 2020-10-04T11:56:02Z Last-Modified: 2020-10-04T11:56:02Z dcterms:modified: 2020-10-04T11:56:02Z title: Experimental & Computational Fluid Dynamics Study of the Suitability of Different Solid Feed Pellets for Aquaculture Systems Last-Save-Date: 2020-10-04T11:56:02Z pdf:docinfo:keywords: recirculating aquaculture systems (RAS); fish feed; residence time distribution (RTD); 3-dimensional (3D) simulation pdf:docinfo:modified: 2020-10-04T11:56:02Z meta:save-date: 2020-10-04T11:56:02Z pdf:docinfo:custom:PTEX.Fullbanner: This is pdfTeX, Version 3.14159265-2.6-1.40.18 (TeX Live 2017/W32TeX) kpathsea version 6.2.3 Content-Type: application/pdf X-Parsed-By: org.apache.tika.parser.DefaultParser creator: Firstname Lastname, Firstname Lastname and Firstname Lastname dc:subject: recirculating aquaculture systems (RAS); fish feed; residence time distribution (RTD); 3-dimensional (3D) simulation access_permission:assemble_document: true xmpTPg:NPages: 15 access_permission:extract_content: true access_permission:can_print: true pdf:docinfo:trapped: False meta:keyword: recirculating aquaculture systems (RAS); fish feed; residence time distribution (RTD); 3-dimensional (3D) simulation access_permission:can_modify: true pdf:docinfo:created: 2020-10-04T11:56:02Z