Tuesday, September 27, 2016

Presentation on Wayside Power

This week we have been working on the presentation of our project. We organized the information we have been collected since day 1. References from Fall 15-Spring 16 report, and our group research are organized in preparation for the presentation on September 28. Details for the presentation include project deadlines, direct problem statements and potential solutions, designs and developments.







Material List

A material list was created and copper was ordered from a supplier to test and determine the compatibility of the supplier's resources. A revision was made in which the PVC housing would be concave as well as the matching collector. This concave design would force the shoe to remain in contact with the powerline as the bogie travels. 


Monday, September 26, 2016

Developing Potential Third Rail Systems


The third rail design was collaborated on; a potential solution was to use a PVC tube with a side cutout and a conductive plate attached to the lower portion. This would be used in conjunction with a shoe that would contact the lower plate. With the shoe having vertical contact, the design would minimize the chance of losing contact. Further discussion was made on whether the collector should be placed on a hinge with a spring system to allow for alternating incline gradients where the shoe could move according to the slope of the rail.



Beginning Stages

The first meeting for the Spartan Superway Project entailed the planning and researching of the current wayside power system. A Gantt chart was composed to ensure the project followed a specific schedule. The notes on the present third rail and Gantt chart are as shown below.


 


Wednesday, August 31, 2016

Introductory Statement

I will be graduating San Jose State University in 2016 with a Bachelor’s degree in Mechanical Engineering with an interest in energy systems and development. I closely follow developments in the energy crisis situation and their respective usage of different manifestation techniques; my strengths in studies gravitate towards thermal sciences and their practical applications. My previous experience in work and academic courses has developed skills in communication, design and building; I shadowed a construction project for the Fairfield Rockville Bridge; participated in the National Aerospace NASA for which I submitted potential remote vehicle designs in CAD; and completed advanced courses in CAD over the course of my education. Previous group projects include the designing of high efficiency turbine blades as well as the development of effective solar energy harvesting systems. Personal past projects of mine include the construction of musical instruments and modifying/programming Arduino Boards and Raspberry Pi’s for systemic functions.