resource efficiency for textile industry
TRANSCRIPT
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7 ( ) 6
2011.6.2
2011 2014
reducing energyconsumption and carbon emission by atleast 10% in textile industry through :
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Challenge 1:overcome oppositionEfficiency vs Flexibility
Challenge 2:energy efficiency and carbonemissions in day by dayoperations and decisions
Challenge 3:poor information about energycosts in textile industry
Challenge 4:From single machine efficiencyto supply chain efficiency
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Challenge 1:overcome oppositionEfficiency vs Flexibility
Challenge 2:energy efficiency and carbonemissions in day by dayoperations and decisions
Challenge 3:poor information about energycosts in textile industry
Challenge 4:From single machine efficiencyto supply chain efficiency
* : 4,5005,500 C
E 0.450.55
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C F ( )
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Challenge 1:overcome oppositionEfficiency vs Flexibility
Challenge 2:energy efficiency and carbonemissions in day by dayoperations and decisions
Challenge 3:poor information about energycosts in textile industry
Challenge 4:From single machine efficiencyto supply chain efficiency
* : 4,5005,500 C
E 0.450.55
: C :
( + ) 0,002 E/ 2 ( 24 / 2)
? ?
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H 8/
38 2 / 120 5% ( )
1
( )
290 2,5 / 635 138.000 3 , 7,5%
()
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+5% ( )
and many other being discovered
Applying best practices and best available technologies to the concrete textile process
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E
E
( , ,..)
E :H AC ( , , ),
( ) E ( )
ARTISAN provides toolsallowing the decision
makers to tackle them ina co-ordinated and non
separated way.
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E E
E E
E FE F
EE CC
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Productionorder
Materials
Productivecapacity
DSS:- Scheduler - SCM
Monitoring- faults- performance
Floor
Maintenance
Supply chain
FinishedProduct
EMS :- actual energy costs- consumption Alarms- consumption forecast
GreenProducts andcertifications
- energy consumpt.Efficiencyprojects
Energy & carbon permits trading
Energymarket andsuppliers
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( ) E G ;
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. . , ,
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