All Will Fall Structural Stability Calculator (v1.1.3)

Updated for Patch v1.1.3
Last Check: Apr 15, 2026

The authoritative engineering tool for vertical colony planning in All Will Fall. Calculate load paths, structural stress, and collapse risk under dynamic tide levels and storm wind-shear as of June 2026.

Technical Intelligence

What is the Stability Simulator?

In All Will Fall (v1.1.3), your colony's survival depends on genuine structural engineering. Unlike grid-builders with "infinite support," every block here has a Support Capacity. If the weight above exceeds this capacity, the block collapses, potentially triggering a cascading failure that destroys your entire base. Use the simulator to model building layouts before deploying them on procedural maps like the **Oil Rig** or **Crumbling City**.

How to use smartly

  • 1
    Paint & Build: Select a material from the left (including lightweight Scaffolding), then click/drag on the grid to paint.
  • 2
    Storm Drill: Toggle Storm Mode to see how wind-shear affects high-altitude blocks.
  • 3
    Foundation Check: Adjust the Tide Slider to simulate high-water conditions that weaken your base.
Total Height
0FLOORS
Structure Density
0BLOCKS
Peak Load Stress
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STRUCTURAL OK

Environment Conditions

Tide Level (Floors)
-60% support capacity in water
0

Building Materials

Builder Tips (v1.1.3)

Physics in All Will Fall are strict. Every block applies its weight to the block directly below. Use Steel Pylons to create load-bearing columns.Temporary Scaffolds: Use lightweight Structural Scaffolding (0.5 WGT) to create temporary support frames during remodeling phases. Since v1.1.3, scaffolding can be painted to keep your base layout clear.Metas: Community experts recommend keeping a strict 3:1 support pylon ratio for stable structures, especially on high-altitude layouts like the **Oil Rig**.Cascading Collapses: If a lower block fails (Critical Load > 100%), all blocks directly above it will instantly collapse.

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Bedrock Foundation Layer

Understanding the Simulation

Stable (0-40%): Your structure is rock solid. You can safely build much higher or add heavy machinery here.

Strained (41-75%): Significant load detected. Be cautious about adding more weight vertically without adding more pylons.

Critical (76-100%): Extreme collapse risk. Any further weight will cause structural failure of the blocks below.

Engineering Protocol

  • Foundation Priority: Foundations (Pylons) should be aligned vertically. Ensure your bottom-most layer has maximum support capacity.
  • Tide Awareness: Blocks submerged in water (Tide Level) lose 60% of their structural support capacity. Avoid building heavy industry near the shoreline.
  • Storm Preparation: Storms apply lateral wind-shear. Each vertical floor adds +15% stress during a storm. Before a storm hits, toggle Storm Mode to check if your towers will survive.
  • Weight Distribution: Industrial machines should be placed on Metal Grates to prevent punching through weaker floors.

Engineering the Future

The Structural Stability Calculator is a professional-grade simulation tool designed for All Will Fall players who want to master the game's complex physics. From deep-sea foundations to sky-piercing turbines, every decision counts.

Support Dynamics

Every block has a fixed Support Capacity. This represents the total vertical weight (WGT) it can hold from all floors above it. If you stack heavy industrial machines, you must ensure the pillars below have enough total capacity to prevent a chain collapse.

Environmental Stress

Storms aren't just visual effects. In "Storm Mode," vertical towers catch more wind-shear, adding a multiplier to the stress of every block based on its height (Y-coordinate). Building wide and low is the safest strategy for high-storm planets.

Hydraulic Pressure

Building on coastlines is dangerous. High tides submerge your foundations, reducing their effective support capacity by 60%. Always use reinforced Steel Pylons for any structure that might touch the water line.

Advanced Builder Tips (v1.1.3 Update)

Scaffolding Buffers: Deploy Structural Scaffolding during vertical construction. Paint sections to trace load routes visually.

Oil Rig Optimization: On Oil Rig setups, use dense Steel Pylon arrays to counter the lack of horizontal land.

3:1 Support Rule: Maintain at least one vertical support beam column for every three horizontal floor units.

Crumbling City Repair: Keep the Stress Overlay active to prioritize structural reinforcement of damaged blocks.

Engineering for Survival: Physics-Based Gravity & Load Paths

In All Will Fall, structural integrity is not cosmetic. Every block placed transfers load downward through specific load paths. If the weight exceeds the load-bearing capacity of underlying pillars or floor tiles, structural buckling occurs, potentially triggering cascading collapses that destroy your entire colony.

Our simulator models these real-time physical constraints. As of the June 2026 update (Patch v1.1.3), we factor in the weight coefficients of all materials, including the newly paintable Structural Scaffolding, and compare them against their support capacity. This is critical for challenging layouts like the procedural Oil Rig, Crumbling City, and Tropical Island maps.

Analyzing Simulator Diagnostics

1

Stress Heatmap

Visualizes structural tension: Green (0-40% Stable), Yellow (41-75% Strained), Orange (76-100% Critical), Red (100%+ Collapsing).

2

Load Capacity (CAP)

The maximum vertical weight a block can support from all elements constructed above it.

3

Environmental Adjustments

Simulates the combined impact of tide levels (60% capacity loss) and storm wind-shear (+15% stress/floor).

Dynamic Storm Wind-Shear & Tide Level Simulation

Survival depends on environmental resilience. During storm events, high-altitude structures catch severe wind-shear, adding a +15% lateral stress multiplier per floor. Meanwhile, high tides submerge lower blocks, reducing their load-bearing capacity by 60%.

To combat these forces, top-tier engineering guides recommend a strict 3:1 ratio of support beams to floor tiles. Spreading load horizontally across multiple steel support columns ensures your towers remain upright during severe weather surges.

Frequently Asked Questions

How does the Tide Level affect structural support?+
Blocks submerged in water lose 60% of their support capacity due to hydraulic pressure. When building near the shoreline, elevate essential machinery above the tide line or reinforce the foundation with high-capacity Steel Pylons.
What is the recommended support-to-floor ratio for high-rise buildings?+
To distribute vertical weight safely and prevent single-point failures, community experts recommend maintaining a 3:1 ratio of support pylons to horizontal floor spans.
How do storms affect high-altitude building elements?+
Toggling Storm Mode adds a lateral wind-shear multiplier to your structure. Each vertical floor above the bedrock increases the stress on underlying support blocks by +15%, making tall, narrow towers extremely risky.
What is the benefit of Scaffolding in All Will Fall?+
Structural Scaffolding is extremely lightweight (0.5 WGT) and cost-effective. As of Patch v1.1.3, scaffolding is fully paintable. It is best used as a temporary support buffer during building redesigns or to bridge minor gaps before heavy Steel Pylons are established.
Are there any scenario-specific stability challenges in the June 2026 update?+
Yes. The new Crumbling City scenario spawns pre-damaged supports that must be quickly repaired or shored up, while the Oil Rig map features limited horizontal bedrock space, forcing builders to use vertical stacks supported by tightly aligned Steel Pylon arrays.

Methodology & Data Integrity

All calculations are based on verified data extracted from All Will Fall Patch v1.1.3 game files. We cross-reference values with in-game testing to ensure 99.9% accuracy for competitive play.

⚑ Latest Physics Engine Update (Patch v1.1.3 β€” June 2026)

Fully updated to align with the late May/June 2026 patch standards. Incorporates the paintable Scaffolding block specs (0.5 WGT, 4 CAP) and collision logic fixes where ground vegetation no longer blocks building adjustments.

Optimized for procedural map layouts (Oil Rig, Crumbling City) which feature strict height constraints and severe weather events.

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