Tasks & Minigames Deep Dive
BS Oil Field Multiplayer Job features 6 custom-built 3D minigames that replace simple progress bars with engaging, skill-based interactions. Each task features custom 3D models, smooth camera transitions, authentic sound effects, and unique gameplay mechanics.
1. 🔩 Pipeline Flange Assembly (drive_bolt)
Connecting heavy pipeline flanges requires tightening high-tensile structural bolts using an industrial impact wrench and counter-holding spanner.
How to Complete:
- Raycast Aiming: An amber indicator pulses over the current active bolt. Move your mouse to aim at the bolt head.
- Impact Driving: Hold Left Mouse Button (LMB) to engage the socket wrench:
- Phase 1 (Free-Run): The socket rapidly spins the bolt into the flange threads.
- Phase 2 (Impact Tightening): Upon hitting the resistance threshold, the tool engages its pneumatic hammer mechanism, shaking the camera and applying torque until fully tightened.
- Counter-Wrench Physics: On the opposite side of the flange, a spanner automatically rotates and locks the nut to prevent slippage.
- Sequential Torquing: Once a bolt reaches 100%, release LMB and the camera smoothly transitions to the next bolt in the tightening order until all 8 bolts are secured.
2. 🪚 Rust Removal (grind_rust)
Corrosion on oil pipes compromises pipeline integrity and must be thoroughly ground off using an angle grinder before protective sealants can be applied.
How to Complete:
- Power On: Hold Left Mouse Button (LMB) to spin up the abrasive grinder disc.
- Abrasion: While holding LMB, drag your cursor across the rusted patches on the pipe surface.
- Dynamic Fading: As the spinning disc contacts corroded areas, rust planes dynamically fade out and disappear in real time.
- Completion: Clean 100% of the surface area to complete the maintenance task.
3. 🎛️ Valve Regulation (turn_valve)
Balancing pipeline pressure requires manually turning the primary pressure valve wheel to align the pressure needle with the safe operating target on the manometer.
How to Complete:
- Circular Rotation: Hold Left Mouse Button (LMB) and rotate your mouse in a continuous circular motion around the valve wheel.
- Pressure Simulation:
- As you rotate the wheel, pipeline pressure builds up.
- If you stop rotating, pressure naturally bleeds down due to system resistance.
- Target Calibration: Turn the valve until the manometer needle enters the highlighted green target zone (ranges between 4.0 and 10.0 PSI).
- Hold to Stabilize: Keep the needle within tolerance for 3 continuous seconds. The progress bar tracks stabilization; once stabilized at 100%, the valve locks into safe operation.
4. 👨🏭 Pipeline Welding (weld_pipe)
Welding severed pipe seams requires an orbital welding torch, steady hands, and thermal management.
How to Complete:
- Targeting: Move your cursor to the glowing target point along the pipe joint seam.
- Thermal Welding: When the torch aligns with the joint, hold Left Mouse Button (LMB) to begin welding. Intense spark particles will illuminate the workspace.
- Heat Management:
- A temperature meter monitors torch heat.
- Continuous welding causes temperature to spike.
- Overheating Danger: If the meter reaches 100%, the torch overheats and locks up with an on-screen warning, incurring a cooling time penalty!
- Cool-Down Strategy: Pulse your welding—weld in 3-to-4 second bursts, release LMB briefly to allow the torch to vent heat, then resume until the seam reaches 100%.
5. ✂️ Pipeline Cutting (cut_pipe)
Damaged pipeline sections must be precisely severed using a high-temperature oxy-fuel gas cutting torch.
How to Complete:
- Aim Cutter: Align the cursor with the cutting line on the pipe circumference.
- Cut Joint: Hold Left Mouse Button (LMB) to ignite the cutting flame and slice through the steel wall.
- Temperature Control: Similar to welding, cutting steel generates extreme heat. Release LMB intermittently to prevent the cutter nozzle from overheating.
- Severance: Once the cut line completes 100% of its perimeter, the pipe section separates cleanly.
6. ⚡ Technical Box Repair (technicalbox)
High-voltage electrical control boxes and fluid cooling reservoirs require a 3-in-1 multi-stage maintenance procedure.
The 3 Stages of Repair:
- Stage 1: Main Power Disconnect (Safety First!)
- Camera focuses on the master power switch.
- Click and drag the high-voltage safety lever downwards to isolate electrical current from the box.
- Stage 2: Fuse Diagnosis & Replacement
- Camera zooms into the circuit enclosure door.
- Open the enclosure panel, click the burnt, black-scorched ceramic fuse to extract it, and click the replacement fuse to snap it into place.
- Stage 3: Cooling Fluid Refill
- Camera shifts to the cooling reservoir tank.
- Click to unscrew the fluid filler cap.
- Drag the oil can over the filler neck and tilt to pour cooling fluid until the reservoir reaches the optimal fill line.
- Re-tighten the filler cap to finish.