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Petroleum Engineering: ANZSCO 233612
Energy plays a key function in our regular daily existences - from our cell phones to our vehicles to our homes, it increases our expectation of living. Through cooperation and a pioneer's mentality, petroleum engineers fuel the world. Utilizing science, material science, and geography, petroleum engineers can address and understand significant issues that will prompt energy security and subsequently are sought after.
Competency Demonstration Report (CDR) Sample for Petroleum Engineers
The Competency Demonstration Report Sample for Petroleum Engineer includes all the necessary reports such as Three Career Episodes, Continuing Professional Development, Summary Statement and Curriculum Vitae. The Content of the Sample is as follow
CPD Sample clearly explains the author’s Engineering Knowledge- 1000 words.
Petroleum Engineer Career Episode Report Sample – 1
“Density Control, Compressive Strength and Cost Control for cement slurry”- 2030 words
Petroleum Engineer Career Episode Report Sample – 2
“Comparative study on the absorbed gas potential for different material”- 2020 words
Petroleum Engineer Career Episode Report Sample – 3
“Process Instrumentation and Control”- 1940 words
Petroleum Engineer Summary Statement Sample
Detail explanation of all the competency element- 3230 words
Petroleum Engineer Career Episode Report Samples
The career episode must be written on your own based on your recent work experience and must be in the English language. Each career episode should highlight the problems faced in your project and the steps taken to overcome them. It would be best if you numbered each paragraph of your career episodes as `` Career episode 1 (paragraphs 1.1, 1.2, 1.3, etc.) ``. The primary four components are as follows:
Project Name: Density Control, Compressive Strength and Cost Control for cement slurry
In first career episode, the author describes the project he completed as a partial fulfilment of the Department of Petroleum Engineering over the duration of a week. The project’s name was “Density Control, Compressive Strength and Cost Control for cement slurry”. The responsibilities of the author were to:
To prepare the samples consisting of various additives using the mixer
To carry out the density and viscosity determination of the mud
To plot the RPM vs dial reading obtained from the viscometer
To compare the slurry density form the calculated to the reported values
To compare the compressive strength of samples containing Bentonite
Project Name: Comparative study on the absorbed gas potential for different material
In second Career Episode, the author explains the project he was involved in to meet the undergraduate research requirement for petroleum engineering department of Curtin University. His duties and responsibilities in the project “Comparative study on the absorbed gas potential for different material” were:
To perform detail review and study of adsorption ability of the different minerals , study of volumetric method
To compare methane adsorption ability of different mineral samples such as clay, Quartz
To construct methane adsorption isotherm curve with the help of High-pressure volumetric analyzer
To measure methane adsorption by using Langmuir theory
To analyze the clay and coal samples using HPVA equipment
To analyze the result obtained from experimental analysis of Shale sample
To measure adsorption capacity of clay based on total organic content (TOC)
In third Career Episode, the author demonstrates his technical skills he used to complete the project he was involved in as an assignment project during his undergraduate program. The Project was “Process Instrumentation and Control”. The Key responsibility of the writer was to
To carefully select the Integral term in combination with the Proportional term to give an efficient response to the changes in the system
To research and study about the process flow of the PCT 51 and the various components involved
To carry out the experiment for the on/off control of flow or the closed loop
To carry out the experiment for the proportional control flow with a closed loop with P only and with P + I
To obtain the results in a graph and conclude the stability of the system applying various disturbances
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