Principles of Urban Ecology Steward T.A. Pickett Cary Institute of Ecosystem Studies.

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Principles of Urban Ecology Steward T.A. Pickett Cary Institute of Ecosystem Studies

Transcript of Principles of Urban Ecology Steward T.A. Pickett Cary Institute of Ecosystem Studies.

Page 1: Principles of Urban Ecology Steward T.A. Pickett Cary Institute of Ecosystem Studies.

Principles of Urban Ecology

Steward T.A. Pickett

Cary Institute

of Ecosystem Studies

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What’s a principle?

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Components of Theory

• Domain• Assumptions• Concepts • Definitions• Facts• Confirmed generalizations • Laws • Models• Translation modes • Hypotheses• Framework

Pickett et al. 2007

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Senses of “urban”

• Broad – inclusive

• Narrow – specific

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Goal

• Framework

• Model building

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Themes

• Components

• Form

• Change

• Functioning

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Components of the system

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P1

• Cities are about people and ecosystems.– Human ecosystems

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The Ecosystem Concept

Sir Arthur G. Tansley (1871-1955)

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Biotic complex Physical complex

Social complex Built complex

The Tansleyan Ecosystem Concept

The Human Ecosystem Concept

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P2

• Cities have multiple and changing forms.

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Central Business District

Transitional zone: recent immigrants, deteriorating housing, factories, abandonment

Working class zone: single family tenements

Residential zone: single family homes with yards and garages

Commuter zone: suburbs

Burgess Model

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Antoni 2001

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P3

• Cities are mosaics extending into surroundings.

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Cadenasso

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Patch dynamics

• Applies to cities

• Hierarchical

• Gradients and fields

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Patch DynamicsCreation and Alteration of Spatial Heterogeneity through Time

Mosaic Configuration

Patch Types

Patch Adjacency

Slow Template

Patch Generation

Disturbance

EcologicalEngineering

Patch Change

Demographics

Succession

Flux

PatchContrast

FluxIdentity

BoundaryStructure

Pickett, Cadenasso

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Social processes

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P4

• Planned, opportunistic, incremental, incidental.

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Components of change

• Urban design

• Urban planning

• Topography

• Ecology

• Social-cultural

• Economic

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P5

• Urban designs as experiments.

Felson, Pickett (2005)

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Jordan Cove, CT

Control development

Traditional

BMP

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P6

• Social, economic, cultural processes influence biophysical processes.

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1970 1990

Grove, Burch

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P7

• Social, cultural, economic complexity.

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Components of social complexity

• Property regimes

• Households and individuals

• Social status

• Economic status

• Lifestyle grouping

• Social identity

• etc.

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Perceive highvalue of parks

Perceive lowvalue of parks

Troy et al.

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IKONOS ImageIKONOS Image

VegetationVegetation

ParcelsParcels

PROWVegetation

PROWVegetation

Private LandVegetation

Private LandVegetation

Fine Scale Analysis

Grove, Troy, O’Neil-Dunne

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Biophysical functions

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P8

• Remnant soils, waters, vegetation.

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Nitrogen retention

Suburban Forested Agriculture

----------------- kg N ha-1 y-1 --------------

Inputs

Atmosphere 8.7 8.7 8.7

Fertilizer 13.9 0 100

TOTAL 22.6 8.7 108.7

Outputs

Streamflow 6.5 0.52 16.4

Retention

Mass 16.1 8.2 92.3

Percent 71 94 85

Groffman, Belt, Fisher

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P9

• Biodiversity multifaceted and present.

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Mocking bird Mourning dove Catbird

Robin Grackle Pigeon Warren, Nilon, Wolf

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Methodological principles

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P10

• Study-specific definition of urban.

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P11

• Abstract urban gradients.

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NYCT

LI

NYBG

VCP

PBP

SWP

CEC

MRG

MLP

MSP

MSF

HSF

New York CityMcDonnell et al 1990

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P12

• Human perception as links.

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Pickett, Cadenasso (2008)

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Practical principles

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P13

• Flux of water, and water infrastructure.

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N. Law and L. Band

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Water principle

• Sites of cities

• Urban design

• Future demands.

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P14

• Exotic species functions.

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G. Brush et al. in prep

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P15

• City form and shared needs– Role of elites– Non-stationary roles– Non-overlapping agency– Environmental injustice.

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Boone

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P16

• Utility of data requires continual dialog.

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Review of the principles

• Human ecosystem• Multiple forms• Extensive spatial mosaics• Intention, opportunity, incidental,

constraint• Design as experiment• Role of social pattern and process• Social complexity …

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• Retain remnant soils, waters, vegetation

• Biodiversity multifaceted, value

• Urban definitions various

• Abstract gradients of urbanization

• Human perceptions and actions

• Flux of water, water infrastructure

• Exotics and function

• City form: equity and control

• Application through dialog.

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Conclusions

• Transdiciplinary concern

• Heterogeneous, changing subject

• Suggests emerging framework

• Open to new insights

• Context for specific tests.