Reference no: EM132841558
ENG 4006 Advanced Drilling Engineering and Well Completion - Teesside University
Assignment - Performance assessment of drilling mud rheological models using Fan 35 Rheometer Experiment
Assignment brief
Tasks:
• How would you characterise the given drilling fluid sample given in table 1 Using BINGHAM AND Power law rheological models
• Determine which model is best fit for the experimental data presented in table 1
• Clearly describe how you can differentiate between two samples of a given drilling fluid experimentally or through mathematical modelling.
• You are expected to submit an individual standard laboratory report of 2000 words to address all the tasks given above.
In view of COVID-19, you are provided with some laboratory measurement for modelling and analysis in place of the laboratory practical session.
Performance assessment of drilling mud rheological models using Fan 35 Rheometer Experiment.
Component 1: In-Course Assessment (ICA). Students will submit a 2,000 words report based on the construction and analysis of an engineering laboratory session in measuring drilling mud properties. This module is assessed through this laboratory report, that make up the 30% ICA marks, and the 70% for the final constrained three hours or online closed-book examination, End Course Assessment (ECA).
Tasks:
- How would you characterise the given drilling fluid sample given in table 1 Using BINGHAM AND Power law rheological models
- Determine which model is best fit for the experimental data presented in table 1
- Clearly describe how you can differentiate between two samples of a given drilling fluid experimentally or through mathematical modelling.
- You are expected to submit an individual standard laboratory report of 2000 words to address all the tasks given above.
In view of COVID-19, you are provided with some laboratory measurement for modelling and analysis in place of the laboratory practical session.
The corresponding dial readings for the following speed; 600, 300, 200, 100, 6 and 3 RPM were recorded as shown on table 1 below.
Table 1 Fann 35 Rheometer Reading
RPM (N)
|
Dial Readings (Sec-1?)(R)
|
600
|
82
|
300
|
52
|
200
|
46
|
100
|
30
|
6
|
12
|
3
|
7
|
The equations below from Fann 35 Rheometer Manual) are useful as conversion factor for Fann 35 Rheometer experimental measurements to field unit shear stress and shear rate calculations.
γ = 1.703N (1)
τ = 1.065R (2)
Although you can work and discuss with others the final presented work must be yours. All the experiment have been done for and the results are presented in table 1 for your modelling and analysis as earlier instructed. The experiment are described below to enable you to present a standard comprehensive laboratory report
(a) Application of Bingham and Power Law rheological models in performance assessment of the two drilling mud rheological models using Fan 35 Rheometer Experimental reading supplied.
(b) Literature review, standard structure and good referencing style (ref-work / End Note standard)
(c) Description of methodology that demonstrate good logic and understanding of Mud rheology experiment and modelling
(d) Demonstration of knowledge of critical issues and technology gap in drilling fluid/ mud technology
(e) Discussion and logical conclusions based on competent critical analysis, evidence and findings
The following report format is recommended for the ENG4006 Advanced Drilling Engineering ICA Lab report.;
- Title page
- Abstract
- Introduction (aim and objectives}
- Literature review to include theory of rheology modelling
- Procedure/methodology
- Results and discussions (could include sample calculations in appendix)
- Conclusions
- Recommendations
- References
Attachment:- Advanced Drilling Engineering and Well Completion.rar
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