Figure 2: Guy Debord's The Naked City,1957 i
“Our central idea is that of the construction of situations, that is to say, the concrete construction of momentary ambiences of life and their transformation into a superior passional quality. We must develop a methodical intervention based on the complex factors of two components in perpetual interaction, the material environment of life and the comportments which it gives rise to and which radically transform it.”ii
Guy Debord, "Report on the Construction of Situations”
Mu(tating)/Mu(table) Place
+ “However intricate it may be, the call is one emanation, a sound ensemble, specific in pitches, duration, pattern and intensity typical first of that bird's species but further modulated within that typically to be uniquely characteristic of that individual bird. The bird call does not contain, but is intimately shaped by both the history of the species and the history of the individual bird. In the bird's chicks, the call feels like mother, in another member of its species, the call feels erotic or maddening, depending on the other's sex; to a nearby hawk the same call fells like an urge to hunt, in a vole panic, in a poet walking in the woods a feeling that cascades into a lyrical turn of language, in a composer into a musical imagination, in a camper background noise.
To a heavy snowbank, the call does not feel like much, but had it been 10 hertz higher in pitch or 10 decibels louder in volume, the snow bank might have felt the call enough to avalanche. A blush of protons, rushing from a tree to reflect off a pond nearby feels virtually nothing of the call at all, nor does the call feel much of them. But the air between the tree and the pond feels some of the photons, heats up and changes density, an effect the call feels.”
Jeffrey Kipnis, “On the Wild Side”
A few meters past the recess and up three steps is the back entrance to a quiet, elegant restaurant serving local lawyers, bankers and business-people working in the remains of the historic downtown core of this mid-size Ontario city. As the tenants from upstairs linger, caught in the fence's field, the restaurant's patrons march through the billowing cloud of their presence, into the echoing emptiness of the dining room.
Figure 3: Siegfried Gaß's “Structures in Space and Time”
“The structures in space and time have typical phenotypes, depending on whether energy or matter is transported in space by the local motion of the particles. Waves produce periodically recurring motions which transport energy as a function of time (from top to bottom, left: images 1 and 2). If material particles are transported in space, motions of rotation are produced in an enclosed space which form vortexes. Further characteristic families of forms are ring vortexes (image 3), Bénard cells (right: image 4), helical vortexes (image 5), and vortex streets (image 6).”v
Siegfried Gaß, IL Form Force Mass 5: Experiments
Figure 4: Motion in Architecture: Vladimir Tatlin's The Monument to the Third Internationalvi (left: top), Cedric Price's Fun Palacevii (left: middle), Frank Ghery's Guggenheim Museum in Bilbaoviii (left: bottom), Norman Foster's The Swiss Re towerix (right: top), OMA's CCTV buildingx (right: middle), Zaha Hadid's MAXXIxi (right: bottom).
“If there is a single concept that must be engaged due to the proliferation of topological shapes and computer-aided tools, it is that in their structure as abstract machines, these technologies are animate.”xii
Greg Lynn, Animate Form
(A keyboard is an actual machine, it is technological therefore it is a concrete assemblage. The distribution of letters on keys in space is an abstract machine, it is a virtual diagram designed to limit the speed of typing; no particular test word or sentence exists, and it applies to an indefinite series of existing and future words.)xiii
collectively our experiences equal the dressed weight of an ox.
Maybe, maybe not.
Figure 5: Computer Models of Complex Systems: Kauffman Boolean Network from OO Programming in Java (left: top).xiv Cellular automata / random boolean networks from Discrete Dynamics Lab at the Santa Fe Institute (left: middle and bottom).xv From the Complexity & Artificial Life Research Concept for Self-Organizing Systems: Chirikov Mapping (right: top), Agent Network (right: middle), Lotka-Volterra Model (right: bottom).xvi
“Darwin could not have suspected the existence of self-organization, a recently discovered, innate property of some complex systems. It is possible that biological order reflects in part a spontaneous order on which selection has acted. Selection has molded, but was not compelled to invent, the native coherence of ontogeny, or biological development. Indeed, the capacity to evolve and adapt may itself be an achievement of evolution.”xvii
Stuart A. Kauffman, “Antichaos and Adaptation”
But just in case, I'll stop conjuring gold and let you in on the dirt: Advances in computer science emerging from, and developing in parallel with, research into the phenomenon of emergence (see Glossary) in biological organisms, and crowds, and the form of cities, are being leveraged by some architects to generate or influence the form and composition of buildings. Within this paradigm, I propose to consider two questions: What aspects of human occupation become useful (profitable) inputs for the building-organism? and, How does the crowd-organism respond to the building-organism outputs? (I might sidestep the implied question: What are the outputs?).
(I wallow happily in the thinking part of design (as I imagine do other architects who work in the building-organism paradigm), the working-through and arguing-for, and I suspect that I (and they?) secretly want to preserve this muckiness past the point of diagrams and construction drawings, oozing uncertainty through actual construction and into the lives of the occupants, the people – into the real world!)
My point, for the purposes of this paper, is this: I think that walking is the key, or a key … it's important, or at the very least, I think it's a good place to start. We (architects) should figure out how to design our buildings to sense walking, or speak walking, so that the occupant and the building can start to have a useful conversation (via matter and energy: photons, turbulence, and the “tone” of vibrations emanating from ox-breathing?).
Figure 6: FOA’s Phylogenetic Diagrams (from top to bottom: Function: ground - envelope, Faciality: single face - multiple face, Balance: constant - shifting, Discontinuity: planar - rippled - pinched - perforated - bifurcated, Orientation: oriented - non-oriented, Geometry: continuous - discontinuous, Diversification: patterned - contingent) xviii
“The phylogram operates to identify consistency across the different design processes, projects, and the overall body of the architects’ work.”xix
Alejandro Zaera Polo, Phylogenesis: foa’s ark
Self-Organization: The Biological Model...
Today, at least in part because of Thompson’s observations, biological organisms are understood as self-organizing systems: natural systems which organize material in space, over time, and under the load of gravity through the interactions of many simple components (such as sand grains, water molecules, and living cells) - a process known as morphogenesis. It is the differences in the patterns of assembly of these simple components which result in differences in the form and performance of the organism (or system).xxi (Siegfried Gaß, a student of Frei Otto, published an extensive analysis of typical forms resulting from self-forming processes in “Form Force Mass 5: Experiments” published in Institut für Leichte Flächentragwerke (IL) 25. Of particular relevance to this paper is the section on structures in space and time - see Figure 3xxii).
Figure 7: Organisational model of differential intersystemic relations (above left) derived by a digital-mapping technique of system-specific light and climatic conditions (above right).xxvii
Figure 8: Component evolution based on parametric variations of the boundary definition points, the seam layout, the pressure of the compressed air volume and the consequent geometry and prestressing of the membranes.xxviii
“The Postagriculture project begins with the recognition of the importance of environmentally and socially sustainable food production. The project needed to negotiate multiple programmatic claims on a limited space.... (The) location needs to facilitate both time-intensive agricultural production ... and extensive public leisure activities.... The aim is to articulate an inclusive and responsive strategy, one that enables a mode of agricultural production that is a highly integrated, mutable and vital urban programme. The project promotes a local hybridisation of intensified agroproduction with public recreation. This in turn demands an architecture that is capable of negotiating and adapting to different system requirements.”xxix
Achim Menges, “Morphoecologies”
For example: “phylogenesis” is used to generate diagrams for architectural design. Foreign Office Architects analyzed ten's years of their own work, classifying it in the manner of a phylogenetic tree (Figure 6) in the hopes that they could “address general questions about the identity and the consistency and the operativity of an architectural practice today.”xxxii Why inhabit the building-organism paradigm? “By constructing our identity from a populational analysis of the projects, we are trying to avoid constructing it on the basis of idealistic or critical claims. We are constructing the consistency of our practice out of its own material, understanding our production as a non-arbitrary group of individuals that may or may not share features and therefore belong to a species. From this perspective, our practice may be seen as a phylogenetic process in which seeds proliferate in time across different environments, generating differentiated yet consistent organisms that evolve through time and across different environments.”xxxiii
Figure 9: Andrew Kudless' p_wall (from top to bottom, left: initial pattern, array of points (density correlated to greyscale value), panel distribution; right: dowels to restrain fabric located at points from step 2, plaster poured into elasticated fabric mould, final surface form).xxxvi
“Kudless has established himself as a prominent figure in a new generation of architectural researchers whose investigation traverse physical “self-organized” production and computational processes; their material systems use pattern and surface differentiation to produce gradients of performance that transcend the atelier tradition of experimentation with arrangements of materials stressed to produce stable organizations.”xxxvii
Michael Weinstock, “Surfaces of Self-organization”
as I consider these experiments …
Figure 10: Map of Manchester: 1890-1905xli
“ ...what Engels observed are patterns in the urban landscape, visible because they have a repeated structure that distinguishes them from the pure noise you might naturally associate with an unplanned city. They are patterns of human movement and decision-making that have been etched into the texture of city blocks, patterns that are then fed back to the Manchester residents themselves, altering their subsequent decisions. (In that sense, they are the very opposite of the traditional sense of urban complexity - they are signals emerging where you would otherwise only expect noise.) A city is a kind of pattern amplifying machine: its neighbourhoods are a way of measuring and expressing the repeated behavior of larger collectivities - capturing information about group behavior, and sharing that information with the group. Because those patterns are fed back to the community, small shifts in behavior can quickly escalate into larger movements: upscale shops dominate the main boulevards, while the working class remains clustered invisibly in the alleys and side streets; the artists live on the Left Bank, the investment bankers in the Eighth Arrondissement. You don’t need regulations and city planners deliberately creating these structures. All you need are thousands of individuals and a few simple rules of interaction.”xlii
Steven Johnson, Emergence
postscript
Glossary
Adaptive emergent behavior: the system would use local rules between interacting agents to create higher-level behavior well suited to its environment.xlvi
Biomimesis: bionics is the application of biological methods and systems found in nature to the study and design of engineering systems and modern technology.xlvii
Complex behavior: a system with multiple agents dynamically interacting in multiple ways, following local rule and oblivious to any higher level instructions.xlviii
Ecology: the interdisciplinary scientific study of the distribution and abundance of organisms and their interactions with their environment. The environment of an organism includes all external factors, including abiotic ones such as climate and geology, and biotic factors, including members of the same species (conspecifics) and other species that share a habitat. If the general life science of biology is viewed as a hierarchy of levels of organization, from molecular processes, to cells, tissues and organs, and finally to the individual, the population and the ecosystem, then the study of the latter three levels belongs within the purview of ecology.xlix
Generative modeling: a shape is described by a sequence of processing steps, rather than just the end result of applying these operations. Shape design becomes rule design.l
Morphology (biology): the form, structure and configuration of an organism. This includes aspects of the outward appearance (shape, structure, colour, pattern) as well as the form and structure of the internal parts like bones and organs. This is in contrast to physiology, which deals primarily with function.li
Parametric Model: It maintains consistent relationships between elements as the model is manipulated. For example, in a parametric building modeler, if the pitch of the roof is changed, the walls automatically follow the revised roof line.lii
Performative Structure: a network of connected scenes that captures the relationships among scenes. A performative structure constrains the paths agents can traverse to move from one scene to another, depending on the roles they are playing.liii
Phenotype: is any observable characteristic or trait of an organism: such as its morphology, development, biochemical or physiological properties, or behavior. Phenotypes result from the expression of an organism's genes as well as the influence of environmental factors and possible interactions between the two. The genotype of an organism is the inherited instructions it carries within its genetic code. Not all organisms with the same genotype look or act the same way, because appearance and behavior are modified by environmental and developmental conditions. Similarly, not all organisms that look alike necessarily have the same genotype.liv
Phylogram (or Phylogenetic tree): a device of classification in biology which is used for systematic study of evolutionary history and the relationships among organisms that have common ancestors.lv
Proliferation: the growth or production of cells by multiplication of parts or a rapid and often excessive spread or increase: nuclear proliferation.lvi
Notes
iThe Naked City, Free Association Design, http://freeassociationdesign.wordpress.com/2009/12/20/urban-transects-revisited-2/ (accessed February 14, 2010).
ii“Report on the Construction of Situations and on the International Situationist Tendency’s Conditions of Organization and Action,” Bureau of Public Secrets, http://www.bopsecrets.org/SI/report.htm (accessed February 14, 2010).
iiiJeffrey Kipnis, “On the Wild Side,” in Phylogenesis: foa’s ark (Barcelona, Spain: Actar, 2004).
ivKipnis, “On the Wild Side.”
vSiegfried Gaß, “Preface,” IL Form Force Mass 5: Experiments in vol. 25 of Institut für Leichte Flächentragwerke (IL) (Stuttgart, Germany: IL, 1990): 0.17.
viThe Tatlin Tower, The Slog News & Arts, http://slog.thestranger.com/2008/06/15-21 (accessed June 10, 2009).
vii“O Fun Palace,” Arquitextos, http://www.vitruvius.com.br/arquitextos/arq000/esp500.asp (accessed June 10, 2009).
viii"L'Architettura Che Mi Emoziona," baARCH's photostream, http://www.flickr.com/photos/45225386@N00/ (accessed June 10, 2009).
ix“London Open House: From the top of the Gherkin and more”, SkyscraperPage, http://forum.skyscraperpage.com/archive/index.php/t-138268.html (accessed June 10, 2009).
x“CCTV,” cccdi, http://cccdi.hk/v1/archives/122, (accessed June 10, 2009).
xi“Maxxi,” My Modern Met, http://www.mymodernmet.com/photo/maxxi1-1?context=latest (accessed June 10, 2009).
xiiLynn, Animate Form.
xiiiLynn, Animate Form.
xiv"Kauffman Boolean Network," Soft Computing Technology, http://www.softcomp.com/class7/kauffman/quiz.htm (accessed July 12, 2009).
xv“Discrete Dynamics Lab: Cellular automata / random boolean networks”, g b l & e, http://www.gbl.tuwien.ac.at/_docs/studio/2002/vo/020313/main.htm (accessed July 12, 2009).
xvi“CALResCo Software Pages”, The Complexity & Artificial Life Research Concept for Self-Organizing Systems, http://www.calresco.org/sos/calressw.htm#bn (accessed July 12, 2009).
xviiStuart A. Kauffman, “Antichaos and Adaptation,” Scientific American, August 1991, 78-84.
xviiiForeign Office Architects, Phylogenesis: foa’s ark (Barcelona, Spain: Actar, 2004), 12 – 15.
xixZaera Polo, “Types, Style and Phylogenesis,” 36.
xx D'Arcy Wentworth Thompson. 1942. On growth and form. New ed ed. Cambridge: Cambridge University Press.
xxiWeinstock, “Surfaces of Self-organization: Andrew Kudless’ Material Explorations.“
xxii Siegfried Gaß, “Preface,” IL Form Force Mass 5: Experiments in vol. 25 of Institut für Leichte Flächentragwerke (IL) (Stuttgart, Germany: IL, 1990): 0.17.
xxiiiHensel, “Polymorphism,” 86.
xxivMenges, “Morphoecologies,” 73.
xxvMenges, “Morphogenesis and the Mathematics of Emergence,” 13.
xxviMenges, “Morphogenesis and the Mathematics of Emergence,” 13.
xxvii Menges, “Morphoecologies,” 73.
xxviii Menges, “Morphoecologies,” 73.
xxixMenges, “Morphoecologies,” 75.
xxxMenges. “Morphoecologies.”
xxxiLynn, Animate Form.
xxxiiAlejandro Zaera-Polo and Farshid Moussavi, Phylogenesis.
xxxiiiAlejandro Zaera-Polo and Farshid Moussavi, Phylogenesis.
xxxivGreg Lynn, Animate form (New York, NY: Princeton Architectural Press, 1999).
xxxv“Parametric Modeling,” TheFreeDictionary by Farlex, http://encyclopedia2.thefreedictionary.com/parametric+modeling (accessed June 10, 2009).
xxxviMichael Weinstock, “Surfaces of Self-organization: Andrew Kudless’ Material Explorations,“ in PRAXIS 9: Expanding Surface, (Cambridge, MA: Praxis Inc., 2006).
xxxviiWeinstock, “Surfaces of Self-organization: Andrew Kudless’ Material Explorations.“
xxxviii“Differential equation,” Wikipedia, http://en.wikipedia.org/wiki/Differential_equation (accessed June 10, 2009).
xxxixWeinstock, “Surfaces of Self-organization: Andrew Kudless’ Material Explorations.“
xlWeinstock, “Surfaces of Self-organization: Andrew Kudless’ Material Explorations.“
xliHistorical Ordnance Survey map, Francis Frith, http://www.francisfrith.com/manchester/maps/ (accessed June 12, 2009).
xliiSteven Johnson, Emergence : The connected lives of ants, brains, cities, and software (New York, NY: Touchstone, 2002), 40.
xliii Careri, Walkscapes, 21.
xlivKipnis, “On the Wild Side.”
xlvAchim Menges, “Emergence in Architecture,” AD Emergence: Morphogenetic Design Strategies 74, no. 3 (May/June 2004): 6.) (Helen Castle, “Editorial,” AD Emergence: Morphogenetic Design Strategies 74, no. 3 (May/June 2004): 4.)
xlviJohnson, Emergence, 19.
xlvii"Bionics," Wikipedia, http://en.wikipedia.org/wiki/Biomimetic (accessed June 10, 2009).
xlviiiJohnson, Emergence, 40.
xlix"Ecology," Wikipedia, http://en.wikipedia.org/wiki/Ecology (accessed June 10, 2009).
l"Generative Modelling Language," Wikipedia, http://en.wikipedia.org/wiki/Generative_Modelling_Language (accessed June 10, 2009).
li"Morphology (biology)," Wikipedia, http://en.wikipedia.org/wiki/Morphology_(biology) (accessed June 10, 2009).
lii“Parametric modeling”, TheFreeDictionary by Farlex, http://encyclopedia2.thefreedictionary.com/parametric+modeling (accessed June 10, 2009).
liiiMario Gómez and Enric Plaza, "Integrating Knowledge Modeling and Multi-Agent Systems," Artificial Intelligence Research Institute - Spanish Scientific Research Council, www.iiia.csic.es/People/enric/papers/ORCAS.pdf (accessed June 10, 2009).
liv"Phenotype," Wikipedia, http://en.wikipedia.org/wiki/Phenotype (accessed June 10, 2009).
lvAlejandro Zaera Polo, “Types, Style and Phylogenesis,” in AD Techniques and Technologies in Morphogenetic Design 76, no. 2 (March/April 2006): 36.
lvi"Proliferation," Dictionary.com, http://dictionary.reference.com/browse/proliferation (accessed June 10, 2009).
lviiJohnson, Emergence, 19.
lviiiJohnson, Emergence, 40.









