Analysis Method
AEM · Applied Element Method

With AEM Controlled Collapse

In collapse analysis we use the Applied Element Method (AEM) . Unlike classical methods that assume continuity, AEM models the structure as connected and separable elements — thereby simulating cracking, rupture and collapse motion with maximum realism. This is the critical advantage for controlled demolition: we see in advance how the structure fragments and where it descends. We run all analyses with our proprietary DTEX software.

True Separation

Modelling element rupture and detachment.

Collapse Motion

Predicting the descent direction and sequence of the structure.

Field Validation

Calibrating results against field data.

Design

The Collapse Tetikleyen Design

Which element is weakened, with how much explosive, and in what sequence — this is an engineering design.

Column Weakening

Determining the column and shear-wall cutting points and sequence that will trigger the controlled collapse.

Explosive Quantity

Engineering calculation of the charge required at each point.

Delay & Progressive Collapse

Managing collapse sequence and direction with millisecond delays.

Calculation details (explosive quantity, delay plan, collapse scenario) members-only Engineering Tools; this page stays at the level of method and outputs.

◆ Controlled Demolition

Site & Project Gallery

From our explosive controlled demolition projects

BeforePre-Demolition Preparation

Pre-Demolition Preparation

Preparing urban-renewal structures for controlled demolition.

AfterPost-Demolition Site

Post-Demolition Site

Structure brought down in the intended direction; loadable, separable debris.

IndustrialIndustrial Stack Demolition

Industrial Stack Demolition

Directional demolition of tall stack structures.

Digital TwinFailure Simulation

Failure Simulation

Demolition direction analysis with a 3D digital twin.

Engineering Services

Explosives-Based Controlled Demolition

We bring down massive and damaged structures exactly in the intended direction, with a science-based collapse scenario — debris loadable and separable, the whole project handled from A to Z by a single team.

Directional DemolitionLoadable DebrisSeparable RubbleA-Z Turnkey
Controlled Demolition Engineering

An Engineered Collapse

Controlled demolition is the engineering discipline of producing a pre-calculated collapse scenario using explosives placed at strategic points in a structure's load-bearing system. Commonly known as "implosion" is in fact a controlled progressive collapse: the structure descends under its own weight, in the direction and sequence designed by the engineers.

Urban Renewal

Fast, safe removal of ageing, at-risk structures.

Earthquake-Damaged Structures

Controlled demolition of high-risk buildings that have lost their integrity.

Industrial & High-Rise

Precision collapse of stacks, silos, towers and tall buildings.

Collapse Stratejisi

Method & Directional Demolition

We select the safest collapse strategy based on site geometry and adjacent structures.

Implosion (Inward Collapse)

Collapsing the structure inward onto its own footprint in confined areas, without harming the surroundings.

Felling (Directional Toppling)

Toppling the structure in a chosen direction where sufficient open space exists.

Exactly in the Intended Direction

We steer the collapse precisely toward the target direction, leaving the debris loadable and separable.

Our Difference

Loadable & Separable Debris

For us, demolition is not merely bringing a structure down. We design the collapse so that the resulting debris is directly loadable onto trucks and separable for recycling in size — the site is cleared quickly, costs and environmental impact drop.

Controlled Fragmentation

The collapse is designed to a target of transportable, processable fragment size.

Loadable Debris

Ready for direct loading and haulage, with minimal secondary breaking.

Separable Rubble

Suitable for separating concrete from rebar/steel; high recycling potential.

Rapid Site Clearance

Orderly debris means the site returns to use sooner.

Environmental Safety

Sismik Etki & Environmental Management

Demolition is carried out without harming adjacent structures and settlements; all impacts are kept under control against international limit curves.

PPV Monitoring

Ground vibration is measured continuously; USBM / DIN / TSE limit curves are not exceeded.

Air Overpressure Control

Airblast is measured to protect the surroundings.

Delayed Initiation

Millisecond delays reduce vibration amplitude.

Protection of Adjacent Structures

Neighbouring buildings and infrastructure are safeguarded at the design stage.

Seismic Analysis hizmetimiz
Administrative Process

Mevzuat · Risk Analizi & Documentation

A controlled demolition is won at the desk before the site. We prepare all administrative and technical documentation project-specifically.

Stability Report (Annex-5)

Prepared under Law No. 6306.

Risk Analyses & Materials

Site- and operation-specific risk assessment and all supporting documents.

Permits & Administrative Procedures

Management of all required permit and approval processes.

Regulatory Compliance

All relevant legislation in one source — Regulation & Knowledge Base.

Regulation & Knowledge Base
References

Sahada Proven

Kahramanmaraş · National & International

Safe Demolition of Massive Earthquake-Damaged Structures

In national and international projects — above all in Kahramanmaraş — we brought down massive earthquake-damaged structures that had lost their integrity, exactly in the intended direction, without harm to the surroundings, leaving loadable, separable debris.

Institutions We Work With
100+ Institutions
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Turnkey

Projeyi From A to Z We Deliver

The entire process from site survey to debris removal — single hand, single responsibility.

01

Site & Structural Survey

Assessment of the structure, surroundings and risks.

02

AEM Analysis & Collapse Design

Building the collapse scenario on the digital twin.

03

Explosives & Delay Plan

Determining charge quantities and delay design.

04

Risk & Permit Documentation

Completing risk analyses and administrative procedures.

05

Field Execution

Controlled demolition under seismic monitoring.

06

Debris Management

Removal of loadable, separable debris.

07

Reporting & Handover

Handover with measurement and compliance documentation.

Engineering Tools

Collapse Scenario & Explosive Quantity Tool

Enter your structural parameters; get collapse direction, column-weakening sequence and required explosive quantity estimates from our proprietary tool.

Members-only — open to subscribers and DTEX clients.
SSS

Frequently Asked Questions

What is the difference between implosion and felling?

Implosion collapses the structure inward onto its own footprint in confined spaces; felling topples it in a chosen direction where sufficient open space exists.

Can the collapse direction be controlled?

Yes; with AEM analysis and delay design, collapse direction and sequence are predicted and controlled in advance.

Can it be done on an earthquake-damaged building that has lost its integrity?

Yes; we have performed safe controlled demolitions even on high-risk structures (including Kahramanmaraş).

In what condition is the debris handed over?

Loadable and separable in size; the site is cleared quickly and recycling becomes easier.

Let's Work Together

Your Structure: With Confidence Brought Down Safely

Massive or damaged — talk to our engineering team for the controlled, directional, A-to-Z turnkey demolition of your structure.