Question: Assignment Instructions: 1 . Understand the Problem 2 . Review the provided problem statement and parameters. 3 . Code Implementation using Python 4 . Modify

Assignment Instructions: 1. Understand the Problem 2. Review the provided problem statement and parameters. 3. Code Implementation using Python 4. Modify the Parameters: Change the parameters (e.g., fluid properties, flow rate, pipe diameters, and lengths) to see how they affect the results. 5. Analysis: Write a short report analyzing the impact of different parameters on the pressure losses. Problem: Calculating Pressure Losses in a Circulating System You are tasked with calculating the pressure losses in a drilling fluid circulating system. The system consists of a series of pipes with different diameters and lengths. The fluid properties, such as density and viscosity, are known. You need to calculate the pressure losses in each segment of the pipe and the total pressure loss in the system. Parameters: - Fluid density (p\rhop): \(1200\mathrm{~kg}/\mathrm{m}^{3}\)- Fluid viscosity (\(\mu \)(muu): 0.001 Pais (1 cP )- Flow rate \((Q)=0.02\mathrm{~m}^{3}/\mathrm{s}\)- Pipe segments: - Segment 1: Diameter (D1)\(=0.1\mathrm{~m}\), Length \((\mathrm{L}1)=50\mathrm{~m}\)- Segment 2: Diameter (D2)\(=0.15\mathrm{~m}\), Length (L2)\(=75\mathrm{~m}\)- Segment 3: Diameter (D3)\(=0.1\mathrm{~m}\), Length \((\mathrm{L}3)=100\mathrm{~m}\) Objectives: 1. Calculate the Reynolds number for each pipe segment to determine the flow regime (laminar or turbulent).2. Calculate the friction factor for each pipe segment using appropriate correlations. 3. Calculate the pressure loss in each pipe segment using the Darcy-Weisbach equation. 4. Calculate the total pressure loss in the system.
Assignment Instructions: 1 . Understand the

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