Transcript
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


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