Foundations of Design : Representation, SEM1, 2017 M3 JOURNAL - PATTERN vs SURFACE yukang wang
(900906) Brooke Elizabeth Gibson studio class2
WEEK 6 READING: SURFACES THAT CAN BE BUILT FROM PAPER IN ARCHITECTURAL GEOMETRY
PANELLING 2D PATTERN
Complete your reading before attempting these questions:
Question 1: What are the three elementary types of developable surfaces? Provide a brief description. (Maximum 100 words) Cylinders/cones/tangent surfaces of space curves Generally speaking,developable surfaces are special ruled surfaces. Formed by a family of parallel lines, a cylinder surface S can be modeled if we prescribe a profile curve p and extrude it in some direction r by a parallel extrusion.
Plan
Prespective
Panel Custom 2D - Cruve Attractor
Cones can be modeled on condition that we present a profile curve p and a vertex point v, in this cpnnection, consisting of all lines connecting v with points of p. Tangent surfaces of space curves; let p , be a polygon with verticals.From this polygon,we get a polyhedral model M, of a developable surface. Question 2: Why is the understanding of developable surface critical in the understanding of architectural geometry? Choose one precedent from Research/Precedents tab on LMS as an example for your discussion. (Maximum 100 words) Developable surfaces have the great advantage that they can be easily covered with sheet metal which means it can be shown vividly and effectively ;plus these surfaces carry a family of straight lines which will simplify the construction work and can narrow the gap between representation and actual building. An example would be the Greenhouse designed by Plasma Studio.
Plan
Prespective
Panel 2D Grid
Surface Domain Variable (create new grid) - Cruve Attractor Panel Custom 2D - Cruve Attractor
Plan
Prespective
VARIABLE 2D PATTERN
3D PANEL TEST PROTOTYPE & TEMPLATE
Single Pattern
Plan
Prespective
Maze 2D Pattern Panel 2D Custom
Insert your annotation Single Pattern
Plan
Insert Photos of your fragment or prototype of folding panels (min 6 panels) (see Week 7, Studio 1, task Item 1)
Radiant 2D Pattern Prespective
Panel 2D Variable Rotate + Cruve Attractor
Triangle 2D Pattern Panel 2D Variable -
Single Pattern
Panel Custom 3D Variable - Curve Attractor
Scale + Cruve Attractor Plan
Prespective
Primary Modle Unroll Surface Layout
(2 patterns mix up)
WEEK 7 READING: DIGITAL FABRICATION
EXPLORING 3D PANELLING
Complete your reading before attempting these questions:
Question 1: What is digital fabrication and how does it change the understanding of two dimensional representation? (Maximum 100 words) Digital fabrication represents a process that joins design with production through the use of 3Dtechnology or computer-aided design (CAD) and additive and subtractive manufacturing processes. Being a generative media,digital fabrication posseses unique possibilities, unlike 2 dimensional representaion ,Digital practices have the potential to narrow the gap between representation and building,affording a hypothetically seamless connection betweem design and making.Being a technical pioneer, digital fabrication make it possible for many practioners even students accessible to it.Digital fabrication can not only emilanate the intermidiate process between design and final production, but can give equal emphasis on its aesthetic aspect.
Pattern 01 Pattern 01 4 Changes
Question 2: Suggest two reasons why folding is used extensively in the formal expression of building design? (Maximum 100 words)
Pattern 02 Pattern 02 4 Changes
Folding is materially economical,visually appealing,and effective at multiple scales. Being a theorectical concept,formal tactic,most literally material opration , it expands the three dimensional vocabulary of surface by naturally producing deformation and inflection. Folding holds a long history in craft –based practices and product design and it is in this context that digital tools are bridging a traditionally object-oriented practice and architectually scaled work. Pattern 03 Pattern 03 4 Changes
3D Panelling Process Combine there patterns together and every patterns having 4 changes to create various interations.
Combine there patterns together and every patterns having 4 changes to create various interations. Skill: Panel Custom 3D Variable - Curve Attractor -- 12 interations
Final Model
UNROLL TEMPLATE OF YOUR FINAL MODEL
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phsical model
detail photo of model
APPENDIX digital model process
detail physical model process