ºÝºÝߣshows by User: PietroGalli1 / http://www.slideshare.net/images/logo.gif ºÝºÝߣshows by User: PietroGalli1 / Fri, 06 May 2016 15:54:57 GMT ºÝºÝߣShare feed for ºÝºÝߣshows by User: PietroGalli1 Simulation of a small scale cogeneration system using a microturbine /slideshow/simulationofasmallscalecogenerationsystemusinga/61750825 aec0651c-7e45-44a2-9aff-a72c0e0ed2ed-160506155457
The aim of the thesis was to develop an operating model of some sizes of Microturbines on the software eQuest. Then used the model developed to simulate the installation of a Cogeneration (CHP) plant to satisfy the heat and electric demand of a school. The final step was to consider the economics of the investment and choosing which size and use of the turbine was the most convenient for the building. The key topics of the project were the following: • Collecting experimental data about some size of Microturbines • Development of the turbine model for the software eQuest • Development of the building following the ASHRAE standard • Simulation of some size of Cogeneration Plants • Analysis of the results of the simulations • Energy auditing of the building and analysis of the cost of the current and new plant • Choice of the best solution for the building The thesis was developed in collaboration between Politecnico di Torino and the University of Illinois at Chicago, during the course of the double degree program TOP-UIC ]]>

The aim of the thesis was to develop an operating model of some sizes of Microturbines on the software eQuest. Then used the model developed to simulate the installation of a Cogeneration (CHP) plant to satisfy the heat and electric demand of a school. The final step was to consider the economics of the investment and choosing which size and use of the turbine was the most convenient for the building. The key topics of the project were the following: • Collecting experimental data about some size of Microturbines • Development of the turbine model for the software eQuest • Development of the building following the ASHRAE standard • Simulation of some size of Cogeneration Plants • Analysis of the results of the simulations • Energy auditing of the building and analysis of the cost of the current and new plant • Choice of the best solution for the building The thesis was developed in collaboration between Politecnico di Torino and the University of Illinois at Chicago, during the course of the double degree program TOP-UIC ]]>
Fri, 06 May 2016 15:54:57 GMT /slideshow/simulationofasmallscalecogenerationsystemusinga/61750825 PietroGalli1@slideshare.net(PietroGalli1) Simulation of a small scale cogeneration system using a microturbine PietroGalli1 The aim of the thesis was to develop an operating model of some sizes of Microturbines on the software eQuest. Then used the model developed to simulate the installation of a Cogeneration (CHP) plant to satisfy the heat and electric demand of a school. The final step was to consider the economics of the investment and choosing which size and use of the turbine was the most convenient for the building. The key topics of the project were the following: • Collecting experimental data about some size of Microturbines • Development of the turbine model for the software eQuest • Development of the building following the ASHRAE standard • Simulation of some size of Cogeneration Plants • Analysis of the results of the simulations • Energy auditing of the building and analysis of the cost of the current and new plant • Choice of the best solution for the building The thesis was developed in collaboration between Politecnico di Torino and the University of Illinois at Chicago, during the course of the double degree program TOP-UIC <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/aec0651c-7e45-44a2-9aff-a72c0e0ed2ed-160506155457-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The aim of the thesis was to develop an operating model of some sizes of Microturbines on the software eQuest. Then used the model developed to simulate the installation of a Cogeneration (CHP) plant to satisfy the heat and electric demand of a school. The final step was to consider the economics of the investment and choosing which size and use of the turbine was the most convenient for the building. The key topics of the project were the following: • Collecting experimental data about some size of Microturbines • Development of the turbine model for the software eQuest • Development of the building following the ASHRAE standard • Simulation of some size of Cogeneration Plants • Analysis of the results of the simulations • Energy auditing of the building and analysis of the cost of the current and new plant • Choice of the best solution for the building The thesis was developed in collaboration between Politecnico di Torino and the University of Illinois at Chicago, during the course of the double degree program TOP-UIC
Simulation of a small scale cogeneration system using a microturbine from Pietro Galli
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Some components dimensiond using GT&D /slideshow/some-components-dimensiond-using-gtd/61156364 98541217-f36c-4fdd-8093-db3faf87f793-160420172156
During the course, we had to develop some projects and assemblies on CAD using the Advaced GT&D dimensioning system to label the work. In the attachments are presented some of the final assembly and dimensions given to the products]]>

During the course, we had to develop some projects and assemblies on CAD using the Advaced GT&D dimensioning system to label the work. In the attachments are presented some of the final assembly and dimensions given to the products]]>
Wed, 20 Apr 2016 17:21:56 GMT /slideshow/some-components-dimensiond-using-gtd/61156364 PietroGalli1@slideshare.net(PietroGalli1) Some components dimensiond using GT&D PietroGalli1 During the course, we had to develop some projects and assemblies on CAD using the Advaced GT&D dimensioning system to label the work. In the attachments are presented some of the final assembly and dimensions given to the products <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/98541217-f36c-4fdd-8093-db3faf87f793-160420172156-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> During the course, we had to develop some projects and assemblies on CAD using the Advaced GT&amp;D dimensioning system to label the work. In the attachments are presented some of the final assembly and dimensions given to the products
Some components dimensiond using GT&D from Pietro Galli
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GT&D dimensioning of an assembly /slideshow/assieme-tavola-1pdf/61156138 ebf72bdf-cfab-466e-93d8-7585d2136db0-160420171641
During the course, we had to develop some projects and assemblies on CAD using the Advaced GT&D dimensioning system to label the work. In the attachments are presented some of the final assembly and dimensions given to the products]]>

During the course, we had to develop some projects and assemblies on CAD using the Advaced GT&D dimensioning system to label the work. In the attachments are presented some of the final assembly and dimensions given to the products]]>
Wed, 20 Apr 2016 17:16:40 GMT /slideshow/assieme-tavola-1pdf/61156138 PietroGalli1@slideshare.net(PietroGalli1) GT&D dimensioning of an assembly PietroGalli1 During the course, we had to develop some projects and assemblies on CAD using the Advaced GT&D dimensioning system to label the work. In the attachments are presented some of the final assembly and dimensions given to the products <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/ebf72bdf-cfab-466e-93d8-7585d2136db0-160420171641-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> During the course, we had to develop some projects and assemblies on CAD using the Advaced GT&amp;D dimensioning system to label the work. In the attachments are presented some of the final assembly and dimensions given to the products
GT&D dimensioning of an assembly from Pietro Galli
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Study of a Gear-Rack and links System: Equations, configuration and CAD design /slideshow/gearracklinks-report/61154161 dc348804-52eb-492b-a0a0-94024546a848-160420162730
The study dealt with the Designing of a mechanism form a starting configuration. Development of equations (Study of the motion and of the velocities), CAD files and engineer drawings (Using Solidworks) ]]>

The study dealt with the Designing of a mechanism form a starting configuration. Development of equations (Study of the motion and of the velocities), CAD files and engineer drawings (Using Solidworks) ]]>
Wed, 20 Apr 2016 16:27:30 GMT /slideshow/gearracklinks-report/61154161 PietroGalli1@slideshare.net(PietroGalli1) Study of a Gear-Rack and links System: Equations, configuration and CAD design PietroGalli1 The study dealt with the Designing of a mechanism form a starting configuration. Development of equations (Study of the motion and of the velocities), CAD files and engineer drawings (Using Solidworks) <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/dc348804-52eb-492b-a0a0-94024546a848-160420162730-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The study dealt with the Designing of a mechanism form a starting configuration. Development of equations (Study of the motion and of the velocities), CAD files and engineer drawings (Using Solidworks)
Study of a Gear-Rack and links System: Equations, configuration and CAD design from Pietro Galli
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Design of a Handle Mechanism (Solidworks) /slideshow/report-final-project/61153720 d3cc4cbc-e442-4765-aff3-811f6d717ab2-160420161649
The project was developped on Solidworks and dealt with the costruction of an Hadle mechanism, the study of its motion and the Finite Element Analysis (FEA) of the assembly.]]>

The project was developped on Solidworks and dealt with the costruction of an Hadle mechanism, the study of its motion and the Finite Element Analysis (FEA) of the assembly.]]>
Wed, 20 Apr 2016 16:16:49 GMT /slideshow/report-final-project/61153720 PietroGalli1@slideshare.net(PietroGalli1) Design of a Handle Mechanism (Solidworks) PietroGalli1 The project was developped on Solidworks and dealt with the costruction of an Hadle mechanism, the study of its motion and the Finite Element Analysis (FEA) of the assembly. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/d3cc4cbc-e442-4765-aff3-811f6d717ab2-160420161649-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The project was developped on Solidworks and dealt with the costruction of an Hadle mechanism, the study of its motion and the Finite Element Analysis (FEA) of the assembly.
Design of a Handle Mechanism (Solidworks) from Pietro Galli
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Bachelor's Thesis: Use of CAD technologies to optimize the productivity of a small company /slideshow/tesi-triennale-61152620/61152620 a7e50e7b-9840-454d-90d6-d9d53c5ac4a4-160420155215
The Thesis was developed during the Internship at Plurigest SRL. It deals with one of the projects done during that experience. In particular the aim of this was to provide a plant layout for a Pellet Heating system. All the components of the plant were designed on Solidworks and AutoCAD. Then was performed a study of the layout of the components in order to provide best solution in terms of space used and functioning. If you’d like discover more about this project in the attachment there is the pdf version of the thesis (Italian language) and some pictures. For more info please contact me ]]>

The Thesis was developed during the Internship at Plurigest SRL. It deals with one of the projects done during that experience. In particular the aim of this was to provide a plant layout for a Pellet Heating system. All the components of the plant were designed on Solidworks and AutoCAD. Then was performed a study of the layout of the components in order to provide best solution in terms of space used and functioning. If you’d like discover more about this project in the attachment there is the pdf version of the thesis (Italian language) and some pictures. For more info please contact me ]]>
Wed, 20 Apr 2016 15:52:15 GMT /slideshow/tesi-triennale-61152620/61152620 PietroGalli1@slideshare.net(PietroGalli1) Bachelor's Thesis: Use of CAD technologies to optimize the productivity of a small company PietroGalli1 The Thesis was developed during the Internship at Plurigest SRL. It deals with one of the projects done during that experience. In particular the aim of this was to provide a plant layout for a Pellet Heating system. All the components of the plant were designed on Solidworks and AutoCAD. Then was performed a study of the layout of the components in order to provide best solution in terms of space used and functioning. If you’d like discover more about this project in the attachment there is the pdf version of the thesis (Italian language) and some pictures. For more info please contact me <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/a7e50e7b-9840-454d-90d6-d9d53c5ac4a4-160420155215-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The Thesis was developed during the Internship at Plurigest SRL. It deals with one of the projects done during that experience. In particular the aim of this was to provide a plant layout for a Pellet Heating system. All the components of the plant were designed on Solidworks and AutoCAD. Then was performed a study of the layout of the components in order to provide best solution in terms of space used and functioning. If you’d like discover more about this project in the attachment there is the pdf version of the thesis (Italian language) and some pictures. For more info please contact me
Bachelor's Thesis: Use of CAD technologies to optimize the productivity of a small company from Pietro Galli
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Plant layout of a Warehouse for a big toys company /slideshow/magazzino-bologna-per-stampa-model-1/61152004 842c06f5-3e53-4a04-bb93-4cc75d847e87-160420153903
The project dealt with the definition of all the characteristics of a Warehouse using the principles of the Kaizen and of Lean manufacturing. The main points of the analysis were the following: • Definition of the optimal geographical area were to build the Warehouse considering the connections among cities that will be served. • Definition of the flux of the goods • Definition of the Industrial shelving needed considering the dimension and frequency of movement of the goods. • Definition of the plant layout of the Warehouse considering the principle of Lean manufacturing and the safety norms. • Definition of the Forklift trucks needed • Definition of the personnel needed • Definition of the proper heating system • Definition of the light system The calculus were performed using Excel and the plant layout using Autocad and Solidworks ]]>

The project dealt with the definition of all the characteristics of a Warehouse using the principles of the Kaizen and of Lean manufacturing. The main points of the analysis were the following: • Definition of the optimal geographical area were to build the Warehouse considering the connections among cities that will be served. • Definition of the flux of the goods • Definition of the Industrial shelving needed considering the dimension and frequency of movement of the goods. • Definition of the plant layout of the Warehouse considering the principle of Lean manufacturing and the safety norms. • Definition of the Forklift trucks needed • Definition of the personnel needed • Definition of the proper heating system • Definition of the light system The calculus were performed using Excel and the plant layout using Autocad and Solidworks ]]>
Wed, 20 Apr 2016 15:39:03 GMT /slideshow/magazzino-bologna-per-stampa-model-1/61152004 PietroGalli1@slideshare.net(PietroGalli1) Plant layout of a Warehouse for a big toys company PietroGalli1 The project dealt with the definition of all the characteristics of a Warehouse using the principles of the Kaizen and of Lean manufacturing. The main points of the analysis were the following: • Definition of the optimal geographical area were to build the Warehouse considering the connections among cities that will be served. • Definition of the flux of the goods • Definition of the Industrial shelving needed considering the dimension and frequency of movement of the goods. • Definition of the plant layout of the Warehouse considering the principle of Lean manufacturing and the safety norms. • Definition of the Forklift trucks needed • Definition of the personnel needed • Definition of the proper heating system • Definition of the light system The calculus were performed using Excel and the plant layout using Autocad and Solidworks <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/842c06f5-3e53-4a04-bb93-4cc75d847e87-160420153903-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The project dealt with the definition of all the characteristics of a Warehouse using the principles of the Kaizen and of Lean manufacturing. The main points of the analysis were the following: • Definition of the optimal geographical area were to build the Warehouse considering the connections among cities that will be served. • Definition of the flux of the goods • Definition of the Industrial shelving needed considering the dimension and frequency of movement of the goods. • Definition of the plant layout of the Warehouse considering the principle of Lean manufacturing and the safety norms. • Definition of the Forklift trucks needed • Definition of the personnel needed • Definition of the proper heating system • Definition of the light system The calculus were performed using Excel and the plant layout using Autocad and Solidworks
Plant layout of a Warehouse for a big toys company from Pietro Galli
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Assembly of 3D printed tools /slideshow/exploited-assembly-of-the-project-3d-printing-toolspdf/61150457 979af055-61ca-49e5-8d7d-13c4b22e1ac9-160420150435
The project included the realization on Soliworks of some tools to realize through 3D printing. The components had to respect some important characteristics in order to be being 3D printable Pictures and drawings of the assembly are reported]]>

The project included the realization on Soliworks of some tools to realize through 3D printing. The components had to respect some important characteristics in order to be being 3D printable Pictures and drawings of the assembly are reported]]>
Wed, 20 Apr 2016 15:04:35 GMT /slideshow/exploited-assembly-of-the-project-3d-printing-toolspdf/61150457 PietroGalli1@slideshare.net(PietroGalli1) Assembly of 3D printed tools PietroGalli1 The project included the realization on Soliworks of some tools to realize through 3D printing. The components had to respect some important characteristics in order to be being 3D printable Pictures and drawings of the assembly are reported <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/979af055-61ca-49e5-8d7d-13c4b22e1ac9-160420150435-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The project included the realization on Soliworks of some tools to realize through 3D printing. The components had to respect some important characteristics in order to be being 3D printable Pictures and drawings of the assembly are reported
Assembly of 3D printed tools from Pietro Galli
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Engineering drawing of a spur gear /slideshow/gear-engineering-drawingpdf/61149481 394407a6-0f00-4d86-9ffe-dc18acad18ae-160420144529
In this project was realized a gear mechanism able to move and its motion was studied In the attachment you can find some of the video of its motion and the pictures of the gears]]>

In this project was realized a gear mechanism able to move and its motion was studied In the attachment you can find some of the video of its motion and the pictures of the gears]]>
Wed, 20 Apr 2016 14:45:29 GMT /slideshow/gear-engineering-drawingpdf/61149481 PietroGalli1@slideshare.net(PietroGalli1) Engineering drawing of a spur gear PietroGalli1 In this project was realized a gear mechanism able to move and its motion was studied In the attachment you can find some of the video of its motion and the pictures of the gears <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/394407a6-0f00-4d86-9ffe-dc18acad18ae-160420144529-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> In this project was realized a gear mechanism able to move and its motion was studied In the attachment you can find some of the video of its motion and the pictures of the gears
Engineering drawing of a spur gear from Pietro Galli
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Computation of a gearbox for a wind power plant /slideshow/computation-of-a-gearbox/61145060 497eedab-d728-4f3b-8871-120fb3ca4b58-160420131541
The project Computation of a Gearbox for a Wind Power Plant dealt with the study and the analysis of the Generator in order to provide data about the following characteristics o Static Design of the gearbox:  Design of shaft 1  Design of bearings  Internal stresses  Safety factor  Design of shaft 2 o Fatigue analysis:  Shaft 1 section 3  Shaft 1 section 4  Shaft 2 section 1  Shaft 2 section 2 o Rolling bearings analysis, life and fatique:  Roller bearings C and D  Bearing E  Rating life_bearing D  Rating life_bearing E o Spur gears analysis:  Computation of transmission ratio, pt and b  Tooth bending strength  Tooth surface fatigue strength]]>

The project Computation of a Gearbox for a Wind Power Plant dealt with the study and the analysis of the Generator in order to provide data about the following characteristics o Static Design of the gearbox:  Design of shaft 1  Design of bearings  Internal stresses  Safety factor  Design of shaft 2 o Fatigue analysis:  Shaft 1 section 3  Shaft 1 section 4  Shaft 2 section 1  Shaft 2 section 2 o Rolling bearings analysis, life and fatique:  Roller bearings C and D  Bearing E  Rating life_bearing D  Rating life_bearing E o Spur gears analysis:  Computation of transmission ratio, pt and b  Tooth bending strength  Tooth surface fatigue strength]]>
Wed, 20 Apr 2016 13:15:40 GMT /slideshow/computation-of-a-gearbox/61145060 PietroGalli1@slideshare.net(PietroGalli1) Computation of a gearbox for a wind power plant PietroGalli1 The project Computation of a Gearbox for a Wind Power Plant dealt with the study and the analysis of the Generator in order to provide data about the following characteristics o Static Design of the gearbox:  Design of shaft 1  Design of bearings  Internal stresses  Safety factor  Design of shaft 2 o Fatigue analysis:  Shaft 1 section 3  Shaft 1 section 4  Shaft 2 section 1  Shaft 2 section 2 o Rolling bearings analysis, life and fatique:  Roller bearings C and D  Bearing E  Rating life_bearing D  Rating life_bearing E o Spur gears analysis:  Computation of transmission ratio, pt and b  Tooth bending strength  Tooth surface fatigue strength <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/497eedab-d728-4f3b-8871-120fb3ca4b58-160420131541-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The project Computation of a Gearbox for a Wind Power Plant dealt with the study and the analysis of the Generator in order to provide data about the following characteristics o Static Design of the gearbox:  Design of shaft 1  Design of bearings  Internal stresses  Safety factor  Design of shaft 2 o Fatigue analysis:  Shaft 1 section 3  Shaft 1 section 4  Shaft 2 section 1  Shaft 2 section 2 o Rolling bearings analysis, life and fatique:  Roller bearings C and D  Bearing E  Rating life_bearing D  Rating life_bearing E o Spur gears analysis:  Computation of transmission ratio, pt and b  Tooth bending strength  Tooth surface fatigue strength
Computation of a gearbox for a wind power plant from Pietro Galli
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Solar Energy Equipment: Design of a solar plant for a building /slideshow/solar-energy-equipment-relation-61125283/61125283 33863827-9277-4ec9-9847-4804762506a8-160420050056
The project dealt with the design of a solar plant heating-system for a building. The following analysis were performed: • Data collection and preliminary design: (building characteristics and geographical information) • Estimation of the how water demand • Evaluation of the Irradiance: • Computation of the volume of the hot storage tank and definition of its insulation • Off-Design Calculations • F-chart • Thermal balance of the solar panel • Heat exchanger analysis • Exergy Analysis for each component of the plant (Collectors, Tank, Boiler) • Economics and cost analysis • Determination of the temperature profile of the thermal fluid along the pipe (Using MatLab) ]]>

The project dealt with the design of a solar plant heating-system for a building. The following analysis were performed: • Data collection and preliminary design: (building characteristics and geographical information) • Estimation of the how water demand • Evaluation of the Irradiance: • Computation of the volume of the hot storage tank and definition of its insulation • Off-Design Calculations • F-chart • Thermal balance of the solar panel • Heat exchanger analysis • Exergy Analysis for each component of the plant (Collectors, Tank, Boiler) • Economics and cost analysis • Determination of the temperature profile of the thermal fluid along the pipe (Using MatLab) ]]>
Wed, 20 Apr 2016 05:00:56 GMT /slideshow/solar-energy-equipment-relation-61125283/61125283 PietroGalli1@slideshare.net(PietroGalli1) Solar Energy Equipment: Design of a solar plant for a building PietroGalli1 The project dealt with the design of a solar plant heating-system for a building. The following analysis were performed: • Data collection and preliminary design: (building characteristics and geographical information) • Estimation of the how water demand • Evaluation of the Irradiance: • Computation of the volume of the hot storage tank and definition of its insulation • Off-Design Calculations • F-chart • Thermal balance of the solar panel • Heat exchanger analysis • Exergy Analysis for each component of the plant (Collectors, Tank, Boiler) • Economics and cost analysis • Determination of the temperature profile of the thermal fluid along the pipe (Using MatLab) <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/33863827-9277-4ec9-9847-4804762506a8-160420050056-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The project dealt with the design of a solar plant heating-system for a building. The following analysis were performed: • Data collection and preliminary design: (building characteristics and geographical information) • Estimation of the how water demand • Evaluation of the Irradiance: • Computation of the volume of the hot storage tank and definition of its insulation • Off-Design Calculations • F-chart • Thermal balance of the solar panel • Heat exchanger analysis • Exergy Analysis for each component of the plant (Collectors, Tank, Boiler) • Economics and cost analysis • Determination of the temperature profile of the thermal fluid along the pipe (Using MatLab)
Solar Energy Equipment: Design of a solar plant for a building from Pietro Galli
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https://cdn.slidesharecdn.com/profile-photo-PietroGalli1-48x48.jpg?cb=1581090702 I am a young, energetic engineer who wants to make new experiences and grow. I started to move around Europe and the USA for long period both for work and study since I was 18, this gave me a great chance to develop a multicultural mindset and I’m not afraid of travels and relocation. Growing professionally to me means learning and taking responsibilities giving all of myself to achieve the best result https://cdn.slidesharecdn.com/ss_thumbnails/aec0651c-7e45-44a2-9aff-a72c0e0ed2ed-160506155457-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/simulationofasmallscalecogenerationsystemusinga/61750825 Simulation of a small ... https://cdn.slidesharecdn.com/ss_thumbnails/98541217-f36c-4fdd-8093-db3faf87f793-160420172156-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/some-components-dimensiond-using-gtd/61156364 Some components dimens... https://cdn.slidesharecdn.com/ss_thumbnails/ebf72bdf-cfab-466e-93d8-7585d2136db0-160420171641-thumbnail.jpg?width=320&height=320&fit=bounds slideshow/assieme-tavola-1pdf/61156138 GT&amp;D dimensioning of a...