Kesselring S- diagram Energy Zero

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MORPHOLOGICAL CHART M2IO HOOFDGEBOUW TU/E th

MICRO CLIMATE

LANDMARK

Green Machine

Wood Oven

Cooling Natural Ventilation

Mechanical Ventilation

Mech. Vent. Heat Recovery

Maintain HR++ Glass

High Performance Insul.

High Thermal Mass

Gray Water Use

Floor Heating

Climate Ceiling

Radiators

Cooling Climate Ceiling

Natural Ventilation

Mechanical Ventilation

Mech. Vent. Heat Recovery

Combination Mech-Nat Vent.

Maintain

Concrete Core Activation

Automatic Doors

Storage

Insulation

Heating

Wind Turbines

Heat Pump Hot/Cold Storage

Water Energy Storage

Double

Triple

Climate

Double Skin

Solar Roof

Daylight Mechanical Blinds

Manual Blinds

Permanent Blinds

Natural Blinds

Atrium

Color

Solid

Local Roof

Daylight

Reflectors

Internal Curtains

Appearance Vertical Grid

Multi (X;Y) Grid

Assymetric Grid

Shading Control

Appearance Flexible Workspace

Corridors

Single Height

Double Height

Stability Core - Floor Disks

Shear Walls

Reduce Buckling Length

Bracing Elements

Add Beams, Columns

Parking Underground

Partly Underground

Ground Floor

Reinforcing Structure

Add Beams, Columns

Parking

Roof

Single Level

Slopes

Fire Safety Sacrifice Material

Heat Resistent Material

Over Dimensioning Vitals

Heat Resistent Material

Kesselring method

Local

Ventilation Ducts

Manual

Combination

Reflecting Surfaces

Acoustics Noise Canceling Facade

Reducing Surrounding Noize

Acoustic Walls

Volume

Tissue Blending In

Standing Out

Involving Nature

Acoustic Floors

Single height Floors

micro climate landmark

Fixed Floorplan

Total Percentage Routing

Horizontal

Windows

2 4 2 3 3 2 2 1

Acoustic Ceilings

Floor Lamps

Sound Panels

4 2 4 4 4 3 4 2

3 3 3 2 3 2 3 2

Local Lamps

Open Floorplan

Corridors

Flexible Floorplan

19 59

Permanent Objects

27 84

80

21 66

Flexible Objects

Zero energy

Kesselring method micro climate landmark 2 4 2 3 3 2 2 1 19 59

4 2 4 4 4 3 4 2 27 84

micro climate landmark

Kesselring S-diagram

Realization: Investment costs 100 Space requirements Constructive feasibility 90 Appearance Flexibility Costs lifecycle 80 Sustainability Firesafety

3 3 3 2 3 2 3 2 21 66

70 60

nctionig

Total Percentage

Zero energy

Functioning: Comfort Energy Use Ventilation possibilities Daylight entrance Sound insulation View Adjustability Maintenance

50

Total Percentage

1 2 3 2 1 1 4 3

17 53

2 3 2 Total Percentage 3 4 3 Realization: 2 Investment costs Space requirements 2

Constructive feasibility Appearance Flexibility Costs lifecycle Sustainability Firesafety

21 66

Total Percentage

micro climate landmark 2 4 2 3 3 2 2 1

4 2 4 4 4 3 4 2

2 3 2 19 27 59 4 84 3 2micro climate landmark Zero energy 3 1 2 23 3

3 3 3 2 3 2 3 2 21 66

Safety

Kesselring S-diagram

3 2 1 1 4 3

2 3 4 3 2 2

17 53

21 66

22 69

Controleable Vent. Ducts

Light Natural Light

Artificial Light

Silent Areas

Noise Areas

Combination

Acoustics

Volume Furnature Arrangement

70 60

Tissue Group People

Separate People

Elevator

Stairs

Formal

Informal

Routing

50

Kesselring S-diagram 100

40

90 80

30

70

20 10

2 3 2 4 3 2 3 3

22 69

100 90

Kesselring method

Functioning: Comfort Energy Use Ventilation possibilities Daylight entrance Sound insulation View Adjustability Maintenance

Fire Alarm

Windows

Wall Lamps

Double Height Floors

Atrium

Zero energy

Fire Hoses

Ventilation

Tissue

Routing Vertical

Ceiling Lamps

Smoke Alarms

PERCEPTION

Change Existing Volume

PERCEPTION

PERCEPTION

Keep Existing Volume

Ventilation Shafts

Sprinklers

COMFORT

COMFORT

COMFORT

Light Automatic

Functioning: Comfort Light Energy Use Ventilation possibilities Acoustics Daylight entrance Sound insulation View Volume Adjustability Maintenance

According To Function

Fire Compartments

Zero energy

Ventilation Global

Ventilation

Fire Safety Fire Escapes

Ventilation

Daylight

Parking

Routing

Functionig

Fire Safety

Multi Level

Expension

STRUCTURE

Reinforcing Structure

Commercials/Logo

Closed Space

Expension

STRUCTURE

STRUCTURE

Leight Weight Construction

Artwork

Stability Open Space

Expension

Clothing

Daylight

Internal Blinds

Permanent Workspace

Stability

Economic Use

Roof

Appearance Horizontal Grid

Control Unit

Stickers/Foil

ENVELOPE

High Insulated

Semi Transparant

Roof

ENVELOPE

ENVELOPE

Green Roof

Local Thermostat(s)

Glazing Transparent

Roof

Windows

Plants

Glazing Single

Control Unit

Storage Closed Rooms

Glazing

Local Thermostat(s)

Maintain

Storage Solar Panels

Body Heat

Cooling ENERGY

Cold Pump

PERSONAL LEVEL

Heat Pump

Heating

ENERGY

ROOM LEVEL

Solar Boiler

ENERGY

BUILDING LEVEL

Heating

60 Functionig

ZERO ENERGY

Steijn de Jongh (0851591), Eirini Sfakiotaki (0876124), Ping Tsui (0726202), Boyd Ben Blijleven (0816963)

50 40 30

0 0

20

10

20

30

40

50

60

Realization

10 0 0

10

20

30

40

50 Realization

60

70

80

90

100

70

80

90

100


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