181
17. Restructure of the Anglesea waste water works to include regenerative waste use systems, including aquaculture systems, surface- flow wetland systems, and root zone systems
12
;
18. Restructure town public areas to include biodiversity corridors linking the River with various
parklands and recreational areas;
19. Establish siting and building guidelines that allow future built forms to reflect the local character
of the coastal architecture of Anglesea, respecting and celebrating the traditional and heritage
architectural forms; and
20. Set in place a community adaptation response plan that includes requirements for applying the
regenerative-adaptive design model for the sustainable and resilient future of Anglesea under a
new future-changed climate scenario.
11.12.2 Adaptation Response Plan
The dynamic process of the regenerative- adaptive design model must be considered as the process for
the implementation of actions and responses to impacts and risks, and for use in an adaptation response
plan. This plan will provide guidance for actions to be taken based upon the proposed adaptation and
design planning proposals for Anglesea, as well as the implementation of all of the features of the
regenerative-adaptive design model. This is the last step in the process flow of the risk management
framework.
11.13 Conclusion Statement
This chapter started with the documentation of the process of how to apply the regenerative- adaptive
design model to the case study region of the Great Ocean Road coast and the town of Anglesea. The
process included the development of the regenerative-adaptive patterns of place, using the ‘notion of
regenerative-adaptive patterns’ equation. Keeping within the unfolding principles of a generative
system that follows a step-by-step process, the establishment of core patterns supported the further
development and refinement of a generative code. The generative code with its core patterns was then
used as an input for the development of the regenerative- adaptive patterns based on the ‘notion of
regenerative- adaptive patterns’ equation, which then evolved into the formal structure of the regenerative-adaptive design model.
Demonstrated in the results of the application of the regenerative-adaptive design model, this process indicates a more dynamic, adaptive outcome that includes a generative code with unfolding steps
and specific regenerative-adaptive opportunities that consider the whole. Combined with adaptation
planning and design principles that emerged during the application of the regenerative- adaptive pattern language, it is evident that the emerging phenomena of all the elements of the 15 fundamental
properties of wholeness are embedded in the adaptive capacity of the natural and the built environment of the case study area.
Therefore:
12 Regenerative technology includes waste as a resource for regeneration, including the use of aquaculture systems,
surface-flow wetland systems, and root zone systems. Examples as noted by Lyle included the Tijuana River Valley
constructed wetland plan, the Lyle Centre for Regenerative Studies - aquaculture system and the waste treatment system, and the Arcata Marsh and Wildlife Sanctuary marsh treatment system, which is a combination of aeration oxidation
ponds, treatment marshes and salmon hatchery in the lagoon (Lyle, 1994, pp. 225–243).
11.13 Conclusion Statement
17. Restructure of the Anglesea waste water works to include regenerative waste use systems, including aquaculture systems, surface- flow wetland systems, and root zone systems
12
;
18. Restructure town public areas to include biodiversity corridors linking the River with various
parklands and recreational areas;
19. Establish siting and building guidelines that allow future built forms to reflect the local character
of the coastal architecture of Anglesea, respecting and celebrating the traditional and heritage
architectural forms; and
20. Set in place a community adaptation response plan that includes requirements for applying the
regenerative-adaptive design model for the sustainable and resilient future of Anglesea under a
new future-changed climate scenario.
11.12.2 Adaptation Response Plan
The dynamic process of the regenerative- adaptive design model must be considered as the process for
the implementation of actions and responses to impacts and risks, and for use in an adaptation response
plan. This plan will provide guidance for actions to be taken based upon the proposed adaptation and
design planning proposals for Anglesea, as well as the implementation of all of the features of the
regenerative-adaptive design model. This is the last step in the process flow of the risk management
framework.
11.13 Conclusion Statement
This chapter started with the documentation of the process of how to apply the regenerative- adaptive
design model to the case study region of the Great Ocean Road coast and the town of Anglesea. The
process included the development of the regenerative-adaptive patterns of place, using the ‘notion of
regenerative-adaptive patterns’ equation. Keeping within the unfolding principles of a generative
system that follows a step-by-step process, the establishment of core patterns supported the further
development and refinement of a generative code. The generative code with its core patterns was then
used as an input for the development of the regenerative- adaptive patterns based on the ‘notion of
regenerative- adaptive patterns’ equation, which then evolved into the formal structure of the regenerative-adaptive design model.
Demonstrated in the results of the application of the regenerative-adaptive design model, this process indicates a more dynamic, adaptive outcome that includes a generative code with unfolding steps
and specific regenerative-adaptive opportunities that consider the whole. Combined with adaptation
planning and design principles that emerged during the application of the regenerative- adaptive pattern language, it is evident that the emerging phenomena of all the elements of the 15 fundamental
properties of wholeness are embedded in the adaptive capacity of the natural and the built environment of the case study area.
Therefore:
12 Regenerative technology includes waste as a resource for regeneration, including the use of aquaculture systems,
surface-flow wetland systems, and root zone systems. Examples as noted by Lyle included the Tijuana River Valley
constructed wetland plan, the Lyle Centre for Regenerative Studies - aquaculture system and the waste treatment system, and the Arcata Marsh and Wildlife Sanctuary marsh treatment system, which is a combination of aeration oxidation
ponds, treatment marshes and salmon hatchery in the lagoon (Lyle, 1994, pp. 225–243).
11.13 Conclusion Statement
