PERT Probabilistic Analysis - Worked Examples
CPM, Pert, and S-Curve Training Module
Example 1: PERT Expected Duration for Basic Earthmoving
A routine earthmoving activity for a lateral canal has an optimistic duration estimate of days (excellent weather), a most likely duration of days (typical conditions), and a pessimistic duration of days (heavy rains and equipment breakdown). Calculate the expected duration of this activity using PERT.
Step-by-Step Solution
0 of 3 Steps CompletedExample 2: PERT Expected Duration for Right-of-Way Acquisition
Securing Right-of-Way (ROW) for a main canal alignment is notorious for uncertainty. The optimistic estimate is days if landowners cooperate immediately. The most likely estimate is days based on average negotiation times. The pessimistic estimate is days if legal expropriation proceedings are required. Calculate the expected duration.
Step-by-Step Solution
0 of 2 Steps CompletedExample 3: PERT Activity Variance for Concrete Lined Canals
For a concrete canal lining activity, the optimistic duration is days and the pessimistic duration is days due to potential delays in aggregate delivery and failing compressive strength tests. Calculate the statistical variance of its duration.
Step-by-Step Solution
0 of 3 Steps CompletedExample 4: Standard Deviation for Concrete Lined Canals
Using the variance calculated in Example 3 () for the concrete lining activity, determine the standard deviation.
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0 of 2 Steps CompletedExample 5: Comparing Supplier Risk Profiles for Steel Gates
Supplier A provides an estimate for manufacturing and delivering steel sluice gates with an optimistic duration of days, most likely of days, and pessimistic of days. Supplier B, located overseas but with better stock, provides an estimate of days optimistic, days most likely, and days pessimistic. Determine which supplier presents a higher uncertainty (variance) for the delivery schedule to aid management in procurement decision-making.
Step-by-Step Solution
0 of 3 Steps CompletedExample 6: Project Variance for a Pumping Station Phase
The critical path for constructing a pumping station consists of three sequential activities: Site Clearing, Foundation Excavation, and Concrete Pouring. Based on PERT calculations, the variances for these critical activities are , , and , respectively. A fourth activity, Perimeter Fencing, is non-critical and has a variance of . Calculate the total project variance.
Step-by-Step Solution
0 of 2 Steps CompletedExample 7: Project Standard Deviation for an Irrigation Dam
The total project variance for the critical path of an earth-fill irrigation dam construction project is determined to be . Calculate the project standard deviation to be used for Z-score probability analysis.
Step-by-Step Solution
0 of 2 Steps CompletedExample 8: Z-Score for Target Completion Before the Wet Season
An earthworks project to desilt a reservoir has an expected total duration of days and a standard deviation of days. The contractor wants to evaluate the feasibility of finishing the project in days, just before the monsoon season begins, to avoid massive rework. Calculate the Z-score for this target date.
Step-by-Step Solution
0 of 2 Steps CompletedExample 9: Probability Assessment for Siphon Installation
A project to install a massive inverted siphon across a riverbed has an expected duration of days and a standard deviation of days. Using the Z-score of calculated for a target completion date of days, find the probability of completing the installation before the deadline using a standard normal distribution table.
Step-by-Step Solution
0 of 2 Steps CompletedExample 10: Evaluating Negative Z-Scores for Accelerated Schedules
Due to a rapidly approaching VIP inspection scheduled by local government officials, management requests that an ongoing canal lining project—which has an expected duration of days and a standard deviation of days—be completed in days. Calculate the Z-score and evaluate the schedule risk.
Step-by-Step Solution
0 of 3 Steps CompletedExample 11: End-to-End PERT Analysis of a Diversion Weir
The construction of a diversion weir has three critical activities sequentially linked: Cofferdam Installation, River Diversion, and Weir Foundation Pouring.
- Cofferdam: , ,
- River Diversion: , ,
- Foundation Pouring: , ,
Calculate the total expected project duration and standard deviation.
Step-by-Step Solution
0 of 4 Steps CompletedExample 12: Probability Decision on the Diversion Weir
Using the results from Example 11 ( days, days), the funding agency stipulates that the foundation must be poured and completed within days to avoid budget revocation. Calculate the probability of meeting this deadline and advise management.