ESP System Design - TDH Calculation


Spreadsheet

40 rows x 3 columns

fx
A B C
1 ESP System Design - TDH
2 Well Configuration
3 Pump Setting Depth (TVD) 6800 ft
4 Tubing ID 2.992 in
5 Tubing Length 7200 ft
6
7 Fluid Properties
8 Specific Gravity 0.95 -
9 Flow Rate 1800 BPD
10
11 Pressure Data
12 Wellhead Pressure 150 psi
13 Reservoir Pressure 2800 psi
14 Productivity Index 2.5 BPD/psi
15
16 Pressure Calculations
17 Drawdown 720 psi
18 Flowing BHP 2080 psi
19 Pump Intake Pressure 1363.463203 psi
20
21 Head Components
22 Static Head (TVD) 6800 ft
23 Wellhead Pressure (as head) 364.7368421 ft
24 Friction Head 78.71183919 ft
25 Intake Pressure (as head) 3315.368421 ft
26
27 Dynamic Fluid Level
28 Submergence 3315.368421 ft
29 Dynamic Fluid Level 3484.631579 ft (from surface)
30 Net Lift 3315.368421 ft
31
32 Total Dynamic Head
33 TDH (Full Calculation) 3928.08026 ft
34 TDH Components Sum 3928.08026 ft
35
36 Head Summary
37 Component Head (ft) % of TDH
38 Net Lift (TVD - Intake) 3484.631579 88.71080396
39 Wellhead Pressure 364.7368421 9.285371427
40 Friction Loss 78.71183919 2.003824616

Description

Complete ESP system design calculating Total Dynamic Head (TDH) and all head components.

TDH Components:

  • Net lift (pump setting depth minus dynamic fluid level)
  • Wellhead pressure (converted to head)
  • Friction losses in tubing
  • Minus intake pressure head (from reservoir)
How to use this blueprint
  1. In Excel, go to the Petroleum Office ribbon tab and click Blueprint Manager
  2. Search for ESP System Design - TDH Calculation
  3. Click on the blueprint to preview the spreadsheet template
  4. Click Insert to place it into your worksheet. Modify the input values to match your data.
Tags:
ESPtdhsystem-designnodal-analysisfriction

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