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  1. proceedings.open.tudelft.nl

    Apr 29, 2024In the last two decades, Eco-engineering has emerged to mitigate and compensate the environmental impacts of man-made structures while integrates benefits to society, being concrete the most widely alternative material used to natural rocks for construction of artificial coastal structures. Over the past three decades, an extensive literature has documented different supplementary cementitious ...
  2. researchgate.net

    Apr 29, 2024The example of construction of Cubipod armor units of Homogeneous Low-Crested Structures allows to highlight some environmental advantages of this type of LCS : (1) the high hydraulic stability ...
  3. proceedings.open.tudelft.nl

    reviewed. Also, different types of cements, SCMs and aggregates are investigated for the proposal of feasible and sustainable concrete mixtures to manufacture armor units of LCS, showing as an example the construction of Cubipod armor units of Homogeneous Low-Crested Structures. 2 MECHANISMS TO ENHANCE THE BIORECEPTIVITY OF CONCRETE ARMOR UNITS
  4. semanticscholar.org

    DOI: 10.59490/coastlab.2024.695 Corpus ID: 269829025; Sustainable And Bioengineered Concrete For Armor Units Of Low-Crested Structures @article{Escudero2024SustainableAB, title={Sustainable And Bioengineered Concrete For Armor Units Of Low-Crested Structures}, author={Mireille Escudero and Jorge Molines and Josep R. Medina}, journal={CoastLab 2024: Physical Modelling in Coastal Engineering and ...
  5. ascelibrary.org

    Dec 31, 2024Abstract Eco-friendly armor units and coastal structures provide a sustainable alternative to traditional design by incorporating eco-enhancing aspects into the design process to enhance biodiversity in their vicinity. ECOncrete's Coastalock armor units ...
  6. semanticscholar.org

    Figure 3. Carbon emissions (GWP) on the left and 28-days compressive strength, fck, on the right corresponding to concrete mixes with different type and quantity of cement: (a) fck: 31 MPa, 340 kg cement/m3 ; (b) fck≈ 56-59 MPa, 320 kg cement/m3; (c) fck≈ 62-73 MPa, 350 kg cement/m3. - "Sustainable And Bioengineered Concrete For Armor Units Of Low-Crested Structures"
  7. The first artificial armour units were parallel-epipedic concrete blocks (cubes). Various attempts have been made to improve the stability and porosity of cube armouring and to reduce the concrete demand, which finally led to two basic armouring concepts for concrete armour units: Randomly placed interlocking armour units and uniformly placed ...
  8. proceedings.open.tudelft.nl

    LOW-CRESTED AND EMERGENT BREAKWATERS WITH ECO-FRIENDLY ARMOUR UNITS SERIM DOGAC SAYAR1, IOAN NISTOR1, SCOTT BAKER2, JORGE GUTIÉRREZ MARTÍNEZ3 1 University of Ottawa, Canada, ssayar@uottawa.ca, inistor@uottawa.ca 2 National Research Council Canada, Canada, scott.baker@nrc-cnrc.gc.ca 3 ECOncrete AQUA SL, Spain, jorge@econcretetech.com
  9. econcretetech.com

    Oct 11, 2023Interlocking Armor Needs an Upgrade Interlocking armor is used along many of our coasts and waterfronts as a versatile solution for building breakwaters, coastal erosion control, and land reclamation. Many of the traditional armoring units are problematic in the impacts they have on the environment, damaging marine life alongside high carbon footprints. Traditional concrete comes […]

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