Project

TATRakshak

TATRakshak is a sustainable coastal protection system that defends shorelines while restoring natural ecosystems. It reimagines coastal infrastructure by working with nature — not against it — creating protection that strengthens over time.

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How TATRakshak works.

Completed testing & validation.

Computational simulation

Flow behaviour assessed.

Selected ANSYS views present indicative flow patterns examined during the completed simulation work.

ANSYS velocity magnitude contour showing simulated flow around a coastal protection model
01
Sectional flow study

A controlled simulation view used to assess indicative velocity patterns around the model.

Three-dimensional ANSYS velocity contour showing simulated flow around a coastal protection model
02
Three-dimensional flow study

A wider simulation view used to assess flow behaviour around the geometry.

Physical model testing

Miniature model testing completed.

Miniature coastal models were observed under controlled conditions to support measured comparison and design refinement.

Physical breakwater scale model configured inside a laboratory flume
01
Breakwater scale model

A physical coastal cross-section observed under controlled laboratory conditions.

Assorted coloured scale-model coastal armour units arranged for testing
02
Model units assessed

Different unit forms arranged and reviewed through comparative physical testing.

Multiple coastal protection unit forms arranged beside a laboratory flume
03
Comparative model series

A wider set of concepts prepared and observed during the completed laboratory study.

Sustainable development

SDG Goals

See the global goals connected with the direction of TATRakshak.

Key performance indicators

01Validated indicator
16+

Coastal & Natural Configurations Tested

Scientific evaluation across natural, conventional, and hybrid ecological shoreline systems.

02Validated indicator
~800-1,200

Tons CO2 Reduction per km per Year

Climate-positive infrastructure integrating blue-carbon sequestration and lower-emission materials.

03Validated indicator
80%+

Mangrove Survival Rate

Field-validated biological design supporting sapling stability in tidal and wave conditions.

04Validated indicator
25-30%

Reduction in Wave Run-Up

Lab-validated Tripot performance dissipating energy instead of reflecting it.

05Validated indicator
30%

Lower Embodied CO2

GreenMix material strategy reduces construction-stage emissions while retaining durability.

06Validated indicator
75%

Infrastructure Lifecycle Reusability

Repairable, relocatable, and redeployable units designed for circular infrastructure.

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