pinch technology: 기본 이론

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Pinch Technology: 기본 이론. Identify Opportunities by Inspection. Stream A. Stream B. 10 C. Process Unit. 150 C. Feed. Product. 100 C. 30 C. Steam. Cooling Water. An opportunity for heat recovery. B. A. Good Idea … or is it?. 150 C. Process Unit. 10 C. Feed. Product. 100 C. - PowerPoint PPT Presentation

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Page 1: Pinch Technology: 기본 이론

Pinch Technology:

기본 이론

Page 2: Pinch Technology: 기본 이론

Identify Opportunities by Inspection

ProcessUnit

10 C

100 C

150 C

30 C

Steam Cooling Water

Feed Product

An opportunity for heat recovery

Stream A Stream B

Page 3: Pinch Technology: 기본 이론

Heat kW

ProcessUnit

10 C

100 C

150 C

30 C

Steam Cooling Water

Feed Product

Tem

pera

ture

C

Good Idea … or is it?

A

B

Page 4: Pinch Technology: 기본 이론

Tem

pera

ture

C

Heat kW

CoolingWater

Steam

A pity !A pity !

One part of the siteOne part of the site Another locationAnother location

ProcessUnit

10 C

100 C

150 C

30 C

Steam Cooling Water

Feed Product

Tem

pera

ture

C

Heat kW

Not a good idea any more?Not a good idea any more?

A good idea ?A good idea ?

C

D

B

A

Page 5: Pinch Technology: 기본 이론

Tem

pera

ture

C

But suppose we could have seen the entire picture !But suppose we could have seen the entire picture !

Better Approach

B

A

C

D

Page 6: Pinch Technology: 기본 이론

Especially

• On a large site• When we have different departments• No one person has all the knowledge• etc.

How can we avoid missing such opportunities?

Page 7: Pinch Technology: 기본 이론

Do we really need 2,040 kW of steam?

An Example

Page 8: Pinch Technology: 기본 이론

Heating and Cooling Duties

Page 9: Pinch Technology: 기본 이론

The hot composite curve

Page 10: Pinch Technology: 기본 이론

The cold composite curve

Page 11: Pinch Technology: 기본 이론

Energy Targets Ahead of Design!

The composite curves

PINCH

Qcmin=120 kW

QHmin=960kW

Page 12: Pinch Technology: 기본 이론

The composite curves show our target (minimum)

should be 960 kW of steam

We actually use 2040 kW

Why?

Page 13: Pinch Technology: 기본 이론

The closest approach between the compositecurves represents the "Pinch".

Page 14: Pinch Technology: 기본 이론

Divide the process at the Pinch

Page 15: Pinch Technology: 기본 이론

The feasibility of heat transfer

Page 16: Pinch Technology: 기본 이론

Therefore if we have ‘A’ kW of cross pinch heat transfer our utility consumption will be: Steam Q HMIN + A

Cooling Water QCMIN + A

In our example the X pinch heat transfer must be 1080kW

Page 17: Pinch Technology: 기본 이론

• Do not use hot utility below

• Do not recover process heat across

• Do not use cold utility above

Do not Transfer heat across the PinchDo not Transfer heat across the Pinch

Page 18: Pinch Technology: 기본 이론

Divide the process at the pinch

Pinch Design Principles

Page 19: Pinch Technology: 기본 이론

Design now achieves the target of 960 kW steam

Pinch Design

NEW

Page 20: Pinch Technology: 기본 이론

Design now achieves the target of 960 kW steam

Pinch Design

NEW

SMALLER EXCHANGERAND BOILER PLANT

SMALLEREXCHANGERAND COOLINGTOWER

Page 21: Pinch Technology: 기본 이론

NEW

SMALLER EXCHANGERAND BOILER PLANT

SMALLEREXCHANGERAND COOLINGTOWER

Which Design Is Cheaper?

To operate - clearly the one with less energyTo build?

The more energy efficient design is not necessarily more expensive

Original Design

Page 22: Pinch Technology: 기본 이론

Q Q HOTHOT

Q Q HOTHOT

TT

HH

Q Q COLDCOLD

TT

HHQ Q COLDCOLD

Composite Curve Grand Composite Curve

Process / Utility Interface

Page 23: Pinch Technology: 기본 이론

TT

HH HH

HP SteamHP Steam

Cooling WaterCooling Water

HP SteamHP Steam

MPMP

LPLP

bfwbfwCWCW

Simple Process/UtilityInterface

Alternative Process/UtilityInterface

Process / Utility Interface