IFWMS-Kiehl2009Archive: Difference between revisions

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==About the Collection==
==About the Collection==
This archive is a collection of diagrams about the concept of the Integrated Food and Waste Management System ([[Integrated_Food_and_Waste_Management_System|IFWMS]]. They were created in 2009-2010 by OSE contributor Rasmus Kiehl while he was putting together a variety of pages on the OSE Wiki. The collection has been archived here for further development.  
This archive is a collection of diagrams related to the concept of the Integrated Food and Waste Management System ([[Integrated_Food_and_Waste_Management_System|IFWMS]]. Some of them have nothing to do with food though. They were created in 2009-2010 by OSE contributor Rasmus Kiehl while he was putting together a variety of pages on the OSE Wiki. The collection has been archived here for further discussion and development.  
* the material is all handwritten. If something is not legible, contact Rasmus Kiehl for clarification  
* the material is all handwritten. If something is not legible, contact Rasmus for clarification  
* The way the diagrams are organized is that for each of them, one particular component is “in the spotlight” and others are peripheral. The interconnections of energy and resource flows are shown mostly as arrows.  
* if content needs to be clarified, contact Rasmus also ("''What was he thinking?''" literally)
* The way the diagrams are organized is that for each of them, one particular component is “in the spotlight” and others are peripheral. The interconnections of energy and resource flows are shown as arrows. This is obviously a simplification.  
* For portability, the material has also been turned into a single .pdf file: http://opensourceecology.org/w/images/7/73/IFWMS-Kiehl2009Archive_-_all_diagrams.pdf
* For portability, the material has also been turned into a single .pdf file: http://opensourceecology.org/w/images/7/73/IFWMS-Kiehl2009Archive_-_all_diagrams.pdf


==Purpose of this archive==  
==Purpose of archiving this material here==  
* archiving and availability of this information
* available to the community rather than forgotten on Rasmus' personal hard drive
* for others to learn and develop IFWMS science and product ecology  
* for others to study and develop IFWMS science and product ecology  
* use of these diagrams in handbooks or textbooks about the IFWMS
* use of these diagrams in handbooks or textbooks about the [[Integrated_Food_and_Waste_Management_System|IFWMS]]
* Future development of this material: specific tasks, see below  
* Future development of this material: specific tasks have been outlined below  
* Future extension: various new components  
* Future extensions: various new components  


==Future disposition of this material: project==
==Future disposition of this material: project==
* graphic improvement needed  
* graphic improvement needed: use cloud editable docs for a neat design, like google docs 
* open public discussion, improvement, additional components (again: “spotlight approach”)  
* open public discussion, improvement, additional components (again: “spotlight approach”)  
* improve on interconnections: instead of just arrows or lines connecting them, there can be specific “qualities” associated with them, e.g. colors to indicate whether something is an energy flow, a resource flow (e.g. chemical or nutrient), a financial flow, etc.  
* improve on interconnections: instead of just simple arrows or lines, there can be specific “qualities” associated with them, e.g. colors to indicate whether something is an '''energy''' flow, a '''resource''' flow (e.g. chemical or nutrient), a '''food''' flow, a '''financial''' flow, etc.  
* serve as the basis to begin using modeling approaches for the integrated farm
* serve as the basis to begin using '''modeling approaches''' (i.e. “in silico models”) of energy and resource flows. In other words, before an integrated farm is even set up, it could first be modeled ''in silico'', and those models could later be tested in the real world when the farm is built, and feedback provided to the models. Various “in silico farm” iterations can be made until a realistic, workable final iteration is achieved. Then the farm can be implemented in the most efficient way possible, with minimal [losses] of time, financial resources and effort.  
* Future “in silico models” of energy and resource flows: before such an integrated farm is even set up, it could be modeled, and those models could be tested in the real world. Various “in silico farm” iterations until a realistic, workable final iteration is achieved. Then the farm can be built in the most efficient way possible, with minimal [losses] of time, financial resources and effort.  


==Diagram 1==
==Diagram 1==
[[File:Diagram1-IFWMS-Kiehl2009Archive.jpg]]


==Diagram 2==
[[File:Diagram2-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 3==
[[File:Diagram3-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 4==
[[File:Diagram4-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 5==
[[File:Diagram5-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 6==
[[File:Diagram6-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 7==
[[File:Diagram7-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 8==
[[File:Diagram8-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 9==
[[File:Diagram9-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 10==
[[File:Diagram10-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 11==
[[File:Diagram11-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 12==
[[File:Diagram12-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 13==
[[File:Diagram13-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 14==
[[File:Diagram14-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 15==
[[File:Diagram15-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 16==
[[File:Diagram16-IFWMS-Kiehl2009Archive.jpg]]
==Diagram 17==
[[File:Diagram17-IFWMS-Kiehl2009Archive.jpg]]


==Diagram 2==
==Diagram 18==
[[File:Diagram18-IFWMS-Kiehl2009Archive.jpg]]
 
==Diagram 19==
[[File:Diagram19-IFWMS-Kiehl2009Archive.jpg]]
 
==Diagram 20==
[[File:Diagram20-IFWMS-Kiehl2009Archive.jpg]]
 
==Diagram 21==
[[File:Diagram21-IFWMS-Kiehl2009Archive.jpg]]

Revision as of 00:15, 1 October 2015

About the Collection

This archive is a collection of diagrams related to the concept of the Integrated Food and Waste Management System (IFWMS. Some of them have nothing to do with food though. They were created in 2009-2010 by OSE contributor Rasmus Kiehl while he was putting together a variety of pages on the OSE Wiki. The collection has been archived here for further discussion and development.

  • the material is all handwritten. If something is not legible, contact Rasmus for clarification
  • if content needs to be clarified, contact Rasmus also ("What was he thinking?" literally)
  • The way the diagrams are organized is that for each of them, one particular component is “in the spotlight” and others are peripheral. The interconnections of energy and resource flows are shown as arrows. This is obviously a simplification.
  • For portability, the material has also been turned into a single .pdf file: http://opensourceecology.org/w/images/7/73/IFWMS-Kiehl2009Archive_-_all_diagrams.pdf

Purpose of archiving this material here

  • available to the community rather than forgotten on Rasmus' personal hard drive
  • for others to study and develop IFWMS science and product ecology
  • use of these diagrams in handbooks or textbooks about the IFWMS
  • Future development of this material: specific tasks have been outlined below
  • Future extensions: various new components

Future disposition of this material: project

  • graphic improvement needed: use cloud editable docs for a neat design, like google docs
  • open public discussion, improvement, additional components (again: “spotlight approach”)
  • improve on interconnections: instead of just simple arrows or lines, there can be specific “qualities” associated with them, e.g. colors to indicate whether something is an energy flow, a resource flow (e.g. chemical or nutrient), a food flow, a financial flow, etc.
  • serve as the basis to begin using modeling approaches (i.e. “in silico models”) of energy and resource flows. In other words, before an integrated farm is even set up, it could first be modeled in silico, and those models could later be tested in the real world when the farm is built, and feedback provided to the models. Various “in silico farm” iterations can be made until a realistic, workable final iteration is achieved. Then the farm can be implemented in the most efficient way possible, with minimal [losses] of time, financial resources and effort.

Diagram 1

Diagram1-IFWMS-Kiehl2009Archive.jpg

Diagram 2

Diagram2-IFWMS-Kiehl2009Archive.jpg

Diagram 3

Diagram3-IFWMS-Kiehl2009Archive.jpg

Diagram 4

Diagram4-IFWMS-Kiehl2009Archive.jpg

Diagram 5

Diagram5-IFWMS-Kiehl2009Archive.jpg

Diagram 6

Diagram6-IFWMS-Kiehl2009Archive.jpg

Diagram 7

Diagram7-IFWMS-Kiehl2009Archive.jpg

Diagram 8

Diagram8-IFWMS-Kiehl2009Archive.jpg

Diagram 9

Diagram9-IFWMS-Kiehl2009Archive.jpg

Diagram 10

Diagram10-IFWMS-Kiehl2009Archive.jpg

Diagram 11

Diagram11-IFWMS-Kiehl2009Archive.jpg

Diagram 12

Diagram12-IFWMS-Kiehl2009Archive.jpg

Diagram 13

Diagram13-IFWMS-Kiehl2009Archive.jpg

Diagram 14

Diagram14-IFWMS-Kiehl2009Archive.jpg

Diagram 15

Diagram15-IFWMS-Kiehl2009Archive.jpg

Diagram 16

Diagram16-IFWMS-Kiehl2009Archive.jpg

Diagram 17

Diagram17-IFWMS-Kiehl2009Archive.jpg

Diagram 18

Diagram18-IFWMS-Kiehl2009Archive.jpg

Diagram 19

Diagram19-IFWMS-Kiehl2009Archive.jpg

Diagram 20

Diagram20-IFWMS-Kiehl2009Archive.jpg

Diagram 21

Diagram21-IFWMS-Kiehl2009Archive.jpg