Development of a vertical axis wind turbine
Material type:
TextDescription: xi, 100 pages 29cmContent type: - BTH TP 492.5 A58 2023
| Item type | Current library | Shelving location | Call number | Copy number | Status | Date due | Barcode |
|---|---|---|---|---|---|---|---|
Bachelor's Thesis CIT
|
TUP Manila Library | Thesis Section-2nd floor | BTH TP 492.5 A58 2023 (Browse shelf(Opens below)) | c.1. | Not for loan | BTH0005566 |
Browsing TUP Manila Library shelves, Shelving location: Thesis Section-2nd floor Close shelf browser (Hides shelf browser)
No cover image available
|
No cover image available
|
No cover image available
|
No cover image available
|
No cover image available
|
No cover image available
|
No cover image available
|
||
| BTH TN 730 F47 2023 Development of Volleyball Spike Trainer | BTH TN 730 J33 2023 Development of open canal waste stopper and collector/ | BTH TP 492.5 A28 2023 Development of portable vacuum pump and refrigerant recovery machine / | BTH TP 492.5 A58 2023 Development of a vertical axis wind turbine | BTH TP 492.5 A95 2025 Development of a user interface (UI) air conditioning training unit/ | BTH TP 492.5 B37 2023 Development of a taping machine for piping installation in refrigerator and aur conditioner/ | BTH TP 492.5 C68 2023 Development of a filter by repurposing the condensate from air-conditioning unit/ |
Bachelor's thesis
College of Industrial technology.-- Bachelor of engineering technology major in mechanical technology option in heating, ventilation, and air conditioning/refrigeration: Technological university of the Philippines, Manila 2023
Includes bibliographic references and index.
The Study, Development of Vertical Axis Wind turbine, aimed to produce a hybrid renewable
energy that would run an appliance that is limited only to 35 watts and to determine its
efficiency to generate and produce electricity that can help the betterment of the environment.
The two sources of hybrid renewable energy will mainly from the solar panel and wind turbine
which would be efficient in both places whether it is co-efficient with solar or wind type of
energy source. There are different categories used in evaluating the project design such as,
Functionality, workability, durability, aesthetics and safety. The mean result of the evaluation
is from the 5 experts on the field of Air Conditioning and 25HVAC students (N=30), each of
the evaluation category are presented as follows: Functionality: 4.57, Workability: 4.49,
Durability: 4.37, Aesthetics: 4.52, Safety: 4.52 and an overall mean of 4.49. Workability was
outlined as having the capacity to generate electricity, having access to technical knowledge,
and having technical components that could be worked on. Functionality, usability, comfort,
and convenience of the prototype were considered to be its functional attributes. The project's
lifetime, the precision of the joints and other parts, rigidity, and capacity for long-term use are
all included in its durability. Aesthetics includes things like how the design looks, how
neatly the edges are polished, and how well the sample is exhibited and safety including the
safety features and the available safety handbook, was also considered. From the following
Project testing and Evaluation, the recommendations were derived. Develop a DC Generator
that is capable of producing high amounts of watts. Develop a GFCI Outlet that is capable in
plugging more than two appliances at the same time Improve the project in order to run power
tools and other appliances that requires high amount of Wattage to operate.
Keywords: wind turbine, renewable energy, electricity, solar, wind, direct current.
There are no comments on this title.