vauban and stairs

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  1. 1. VAUBAN L'INTELLIGENCE DU TERRITOIRE Martin Barros, Nicole Salat et Thierry Sarmant Nicholas Chaudun (Service Historique de La defense) My viewpoint:I am considering here flood as an intermediate energy that can contourne and avoid obstacles like a wall. Because of the fluid plasticity,there is a need for having a real strategy that matches this contournment by creating conditions that are analogous to the threat with flood defence technologies that are shaping the flood prone regions with the same contournement and deviation infrastructures, in real time (or anticipated) to match the water adversities. The metaphore is like an infantry troop on the battle ground encirclingopponent/foe with the goalto reduce its size,constrain it to surrender or cut its part from it supply source. In this kind of flood fighting, the Vauban architecture may put some milestone in the planning of these infrastrustrure: adaptation strategies/mitigations that are trenches and walls. The other part of the adaptations is by using modern material like inflatable buoys that can really contourn the flood and also building canala and using pumps to drain excessive water on land. 2 applications of these principles could be found? In Vietnam and holland with drying estuaries for farming or separating slted water from inland water and also control drainage
  2. 2. Sambre inundation Wall Plan de Charleroy avec les attaques 1-batterie de 6 mortiers ... p.132 L'invention du grand homme Baffe Ville Village Darmay Attaque Darmay Les travaux d'attaque de Charleroi se concentrrent sur le front est de la place, la plus vulnrable . Attaque de la Garenne Installation de olace d'arme dont les batteries protegaient les troupes sous les feux de la place
  3. 3. La ceinture de fer (Iron belt) Water flow Pilotiarchitecture Land
  4. 4. PLAN D'ATTAQUES DU SIEGE DE LA VILLE D'ATH (Page 55) Profile of the trench Profile of the 1rst and 2 ndarmed sitesCan be a stair, here
  5. 5. The body as a tool 1 coude 5 4 3 Egyptian triangle: 12 coudes Pythagore 25 = 16 +9 12 coudes 1 coude La corde 12 noeuds Page 41
  6. 6. Stair rules: 60 cm < 2H +G< 64 cm Verification: flat stairs e.g. no step is a foot 0 + 62 = 62 OrPublic garden: H=10 G=24 2x20 + 24 = 64 Or Stair under the roof (sharp stairs): H= 20 G= 24 2H + G = 64 OrThe ladder against the wall: Space between the ladder rim: 2x30 + 0 = 60 Or Stairs in the house: H = 17 G= 29 -> 34 + 29 = 63Page 48
  7. 7. Intervals to climbwith a stairs: how many steps? Elevation is 2.72 m -> 16 steps of 17 cm will be fine! Length of the stairs depends on the room left for it
  8. 8. 2.72 m 1.60 3.90 4.50 (2 x 22.6 + 14.8 =60) = 64 =60