00132286_0
DID604/593×593/LE


00132715_0
Tested to VDI 6022


00135812_0
Water connection


00135817_0
Set of air control blades


00132286_0
00132715_0
00135812_0
00135817_0

DID604

Active chilled beam with four-way air discharge, vertical heat exchanger and condensate drip tray, for grid ceilings with grid size 600 or 625

Active chilled beam for heating and cooling, with 2-pipe or 4-pipe heat exchanger, for integration with various ceiling systems. The condensate drip tray is useful if the temperature temporarily falls below the dew point.

  • Preferably for room heights up to 4.00 m
  • High heating and cooling capacity with a low conditioned primary air volume flow rate and low sound power level
  • High comfort levels due to low airflow velocity in the occupied zone
  • Three nozzle variants to optimise induction based on demand
  • Removable induced air grille, fixed with magnets


Optional equipment and accessories

  • Control system
  • Adjustable air control blades for air direction control
  • Heat exchanger powder-coated black
  • Powder coating in many different colours, e.g. RAL CLASSIC

Application

Application

  • Active chilled beams of Type DID604 for the integration into various ceiling systems, preferably for room heights up to 4.00 m
  • Particularly suitable for grid ceilings with grid size 600 or 625
  • The condensate drip tray is useful if the temperature temporarily falls below the dew point
  • Adjustable air control blades (optional) allow for the manual adjustment of the four-way air discharge
  • 2-pipe or 4-pipe heat exchangers enable good comfort levels with a low conditioned primary air volume flow rate
  • Energy-efficient solution since water is used for heating and cooling

Special characteristics

  • The vertical heat exchanger with condensate drip tray is useful if the temperature temporarily falls below the dew point
  • Heat exchanger as 2-pipe or 4-pipe system
  • Water connections at the narrow side, Ø12 mm Cu pipe, with plain tails or with G½" external thread, or with a G½" union nut; with flat seal
  • Adjustable air control blades for air direction control
  • Internal nozzle plate with punched nozzles (non-combustible)

Nominal sizes

  • 600, 1200 mm

Description

Variants

Heat exchanger

  • 2: 2-pipe systems
  • 4: 4-pipe systems


Nozzle variants

  • Z: Small plus
  • M: Medium
  • G: Large

Construction

  • Powder-coated RAL 9010, pure white, gloss level 50 %
  • P1: Powder-coated in any other RAL colour, gloss level 70 %
  • P1: Powder-coated RAL 9006, white aluminium, gloss level 30 %

Attachments

  • Adjustable air control blades
  • Water connection A1: G½" external thread and flat seal
  • Water connection A2: G½" union nut and flat seal

Useful additions

  • Connecting hoses
  • Control equipment consisting of a control panel including a controller with integral room temperature sensor; valves and valve actuators; and lockshields
  • X-AIRCONTROL

Construction features

  • Spigot is suitable for circular ducts to EN 1506 or EN 13180
  • Four suspension points for on-site installation (by others)
  • Three nozzle variants to optimise induction based on demand
  • Internal nozzle plate with punched nozzles (non-combustible)
  • Removable induced air grille, fixed with magnets, secured with safety cables

Materials and surfaces

  • Casing, front frame and perforated induced air grille made of galvanised sheet steel
  • Heat exchanger with copper tubes and aluminium fins
  • Exposed surfaces are powder-coated pure white (RAL 9010) or in any other RAL colour
  • Heat exchanger also in black (RAL 9005)
  • Nozzle plate powder-coated black (RAL 9005)
  • Air control blades made of polypropylene, UL 94, flame retardant (V0)
  • Nozzle plate made of sheet steel

Standards and guidelines

  • Products are certified by Eurovent (no. 09.12.432) and listed on the Eurovent website
  • Declaration of hygiene conformity to VDI 6022

Maintenance

  • No moving parts, hence low maintenance
  • The heat exchanger can be vacuumed with an industrial vacuum cleaner if necessary
  • VDI 6022, Part 1, applies (Hygiene requirements for ventilation and air-conditioning systems and units)

Technical information

Function, Technical data, Quick sizing, Specification text, Order code, Related products

  • Function
  • Technical data
  • Quick sizing
  • Specification text
  • Order code

Functional description

Active chilled beams provide centrally conditioned primary air (fresh air) to the room and use heat exchangers for additional cooling and/or heating.

The primary air is discharged through nozzles into the mixing chamber; as a result of this, secondary air is induced. Secondary air (room air) is induced via the induced air grille and passes through the vertical heat exchanger, where it is heated or cooled.

Primary and secondary air mix and are then supplied to the room horizontally through the supply air slots.

Nominal length

600, 1200 mm

Length

593, 598, 618, 623 mm (one tile), or 1193, 1198, 1243, 1248 mm (two tiles)

Height

230 mm

Width

593, 598, 618, 623 mm

Primary air spigot, diameter

123 mm

Primary air volume flow rate

6 – 50 l/s or 22 – 180 m³/h

Cooling capacity

Up to 1330 W

Heating capacity

Up to 1250 W

Max. operating pressure, water side

6 bar

Max. operating temperature

75 °C


The quick sizing table contains operating points for defined reference units. For other operating points you may use the Easy Product Finder design software.

Quick sizing

Nominal size Primary air Cooling Heating
Nominal size VPr Δpt LWA Qtot QWK¹ ΔtW Δpw WH = Qtot ΔtW ΔpW
Nominal size l/s m³/h Pa dB(A) W K kPa W K kPa

600 × 600

Z

6

22

49

<15

283

211

1.1

2.4

448

7.7

0.3

600 × 600

Z

10

36

137

20

434

313

1.6

2.4

665

11.4

0.3

600 × 600

Z

14

50

269

30

575

407

2.1

2.4

863

14.8

0.3

600 × 600

M

12

43

85

16

464

320

1.6

2.4

634

10.9

0.3

600 × 600

M

18

65

192

29

654

437

2.2

2.4

805

13.8

0.3

600 × 600

M

22

79

287

35

772

507

2.6

2.4

895

15.4

0.3

600 × 600

G

20

72

68

20

616

375

1.9

2.4

612

10.5

0.3

600 × 600

G

29

104

143

32

838

488

2.5

2.4

683

11.7

0.3

600 × 600

G

38

137

245

40

1031

573

2.9

2.4

724

12.5

0.3

1200 × 600

Z

12

43

75

15

561

416

2.1

3.2

805

13.8

0.4

1200 × 600

Z

18

65

169

28

789

573

2.9

3.2

985

16.9

0.4

1200 × 600

Z

22

79

252

34

927

662

3.4

3.2

1072

18.4

0.4

1200 × 600

M

20

72

91

23

776

535

2.7

3.2

986

17.0

0.4

1200 × 600

M

27

97

167

32

994

668

3.4

3.2

1146

19.7

0.4

1200 × 600

M

33

119

249

38

1167

769

3.9

3.2

1253

21.6

0.4

1200 × 600

G

30

108

62

26

871

509

2.6

3.2

896

15.4

0.4

1200 × 600

G

40

144

111

35

1109

627

3.2

3.2

1017

17.5

0.4

1200 × 600

G

50

180

174

42

1331

728

3.7

3.2

1108

19.0

0.4

¹ If the air discharge is not straight, the water-side capacity will be slightly affected; blades set at 45° may cause a loss of up to 5 %.

① Nozzle variant ② Air-regenerated noise


Reference values

Parameter Cooling Heating

tR

26 °C

22 °C

tPr

16 °C

22 °C

tWV

16 °C

50 °C

VW

170 l/h

50 l/h


Active chilled beams of Type DID604, with four-way air discharge and high thermal output, for air-water systems.

For installation flush with the ceiling, preferably in rooms with a height up to 4.00 m.

The units consist of a casing with suspension points, a spigot, non-combustible nozzles, and a vertical heat exchanger with condensate drip tray.

Three nozzle variants to optimise induction based on demand.

Special characteristics

  • The vertical heat exchanger with condensate drip tray is useful if the temperature temporarily falls below the dew point
  • Heat exchanger as 2-pipe or 4-pipe system
  • Water connections at the narrow side, Ø12 mm Cu pipe, with plain tails or with G½" external thread, or with a G½" union nut; with flat seal
  • Adjustable air control blades for air direction control
  • Internal nozzle plate with punched nozzles (non-combustible)

Materials and surfaces

  • Casing, front frame and perforated induced air grille made of galvanised sheet steel
  • Heat exchanger with copper tubes and aluminium fins
  • Exposed surfaces are powder-coated pure white (RAL 9010) or in any other RAL colour
  • Heat exchanger also in black (RAL 9005)
  • Nozzle plate powder-coated black (RAL 9005)
  • Air control blades made of polypropylene, UL 94, flame retardant (V0)
  • Nozzle plate made of sheet steel

Construction

  • Powder-coated RAL 9010, pure white, gloss level 50 %
  • P1: Powder-coated in any other RAL colour, gloss level 70 %
  • P1: Powder-coated RAL 9006, white aluminium, gloss level 30 %

Technical data

  • Nominal length: 600, 1200 mm
  • Length: 593, 598, 618, 623 mm (one tile), or 1193, 1198, 1243, 1248 mm (two tiles)
  • Height: 230 mm
  • Width: 593, 598, 618, 623 mm
  • Primary air spigot, diameter: 123 mm
  • Primary air volume flow rate: 6 – 50 l/s, 22 – 180 m³/h
  • Cooling capacity: up to 1330 W
  • Heating capacity: up to 1250 W
  • Max. operating pressure: 6 bar
  • Max. operating temperature: 75 °C

Sizing data

Primary air

  • V _______________________ [m³/h]
  • Δpt _______________________ [Pa]

Air-regenerated noise

  • LWA _______________________ [dB(A)]

Cooling

  • Qges _______________________ [W]

Heating

  • Qges _______________________ [W]

This specification text describes the general properties of the product. Texts for variants can be generated with our Easy Product Finder design programme.

00132985_0

 Type
DID604       Active chilled beam

 Induced air grille
LR       Perforated metal, circular holes

 Heat exchanger
2       2-pipe
4       4-pipe

 Nozzle variant
Z       Small plus
M       Medium
G       Large

 Arrangement of water connections
VR       Front right
HL       Rear left

 Water connections
       No entry: Ø12 mm pipe with plain tails
A1       With G½" external thread and flat seal
A2       With G½" union nut and flat seal

 Overall dimensions [mm]
L × B, nominal size 600 × 600
593 × 593
598 × 598

 


       L × B, nominal size 625 × 625
618 × 618
623 × 623


L × B, nominal size 1200 × 600
1193 × 593
1198 × 598


       L × B, nominal size 1250 × 625
1243 × 618
1248 × 623

 Exposed surface
       No entry: powder-coated RAL 9010, pure white
P1       Powder-coated, specify RAL CLASSIC colour

       Gloss level
       RAL 9010 50 %
       RAL 9006 30 %
       All other RAL colours 70 %

 Surface of casing and heat exchanger
       No entry: untreated
G1       RAL 9005, black

 Air control blades
       No entry: none
LE       With

 Valves and actuators
       No entry: none
VS       With

DID604-LR-2-M-VR/598×598

Induced air grille

Perforated metal, circular holes

Heat exchanger

2-pipe

Nozzle variant

Medium

Arrangement of water connections

Front right

Overall dimensions

598 × 598 mm


DID604-LR-4-G-VR-M/1248×623/1-RAL9016/G1/LE/VS

Induced air grille

Perforated metal, circular holes

Heat exchanger

4-pipe

Nozzle variant

Large

Arrangement of water connections

Front right

Overall dimensions

1248 × 623 mm

Exposed surface and surface of heat exchanger

Black

Air control blades

With

Valves and actuators

With


 

Variants, Attachments, Dimensions and weight

  • Variants
  • Attachments
  • Dimensions and weight

Set of air control blades

If a high cooling capacity is required in a very small space with active chilled beams, optional air control blades allow for adjusting the air discharge pattern such that the acceptable air velocity in the occupied zone is not exceeded. The airflow of each active chilled beam is spread and discharged according to the room geometry. If the use of a room changes, the air discharge pattern can be optimised by adjusting the air control blades accordingly.

  • It is possible to adjust several air control blades (i.e. a set of air control blades) together
  • For fine adjustment, the sets of air control blades can be disconnected from complementary to one another
  • To adjust a set of air control blades, use both hands to move the two outer blades of the set as required
  • Maximum possible adjustment is 45° to the right or left in steps of 15°
  • The blades are factory set to straight air discharge

If the air discharge is not straight, the water-side capacity will be slightly affected. Blades set at 45° may cause a loss of up to 5 %. Air control blades have to be factory fitted; it is not possible to retrofit air control blades at a later stage.

Dimensions [mm]

Nominal size L B L1 L2

600 × 600

593

593

500

520

600 × 600

598

598

500

520

600 × 600

618

618

500

520

600 × 600

623

623

500

520

1200 × 600

1193

593

1100

1120

1200 × 600

1198

598

1100

1120

1200 × 600

1243

618

1100

1120

1200 × 600

1248

623

1100

1120


Weight [kg]

Nominal size kg/piece Contained water (max.)

600 × 600

15

1

1200 × 600

22

2

Differences in width can be neglected


Dimensions [mm]

B A

593

99

598

102

618

112

623

114


Installation examples, Installation details, Basic information and nomenclature

  • Installation examples
  • Installation details
  • Basic information and nomenclature

Installation and commissioning

  • Preferably for rooms with a clear height up to 4.00 m
  • Flush ceiling installation
  • Side entry primary air spigot
  • Lengths of 593, 598, 618, 623 (one tile), or 1193, 1198, 1243, and 1248 mm (two tiles), and widths of 593, 598, 618, and 623 mm, hence suitable for all ceiling systems, particularly for grid ceilings with grid size 600 or 625
  • Installation and connections to be performed by others; fixing, connection and sealing material to be provided by others
  • Active chilled beam has 4 suspension points for on-site installation (by others)
  • Heat exchangers are fitted with water flow and water return connections at the narrow side


Installation into T-bar ceilings or continuous ceilings

  • To avoid too much load on the ceiling, the suspension points should be used

LN [mm]

Nominal length

LWA [dB(A)]

Sound power level

tPr [°C]

Primary air temperature

tWV [C°]

Water flow temperature – cooling/heating

tR [C°]

Room temperature

tR [C°]

Room temperature

tAN [C°]

Secondary air intake temperature

QPr [W]

Thermal output – primary air

Qtot [W]

Thermal output – total

QW [W]

Thermal output – water side, cooling/heating

VPr [l/s]

Primary air volume flow rate

VPr [m³/h]

Primary air volume flow rate

VW [l/h]

Water flow rate – cooling/heating

V [l/h]

Volume flow rate

∆tW [K]

Temperature difference – water

∆pW [kPa]

Pressure drop, water side

∆pt [Pa]

Total pressure drop, air side

∆tPr = tPr - tR [K]

Difference between primary air temperature and room temperature

∆tRWV = tWV - tR [K]

Difference between water flow temperature and room temperature

∆tWm-Ref [K]

Difference between mean water temperature and reference temperature

LN [mm]

Nominal length

Mixed flow

The supply air is discharged from the diffuser into the space with a velocity between 2 and 5 m/s. The resulting air jet mixes with the room air, ventilating the entire space. Mixed flow systems typically provide a uniform temperature distribution and air quality within the space. The originally high velocity of the turbulent air jet decreases rapidly due to the high induction levels of mixed flow systems.

Heat exchanger

The maximum water-side operating pressure for all heat exchangers is 6 bar.

The maximum water flow temperature (heating circuit) for all heat exchangers is 75 °C; if flexible hoses are used, the water flow temperature should not exceed 55 °C. Units for other pressures and temperatures are available on request.

The water flow temperature (cooling circuit) should be at least 16 °C such that it does not permanently fall below the dew point. For units with a condensate drip tray the water flow temperature may be reduced to 15 °C.

Heat exchanger as 2-pipe system

Air-water systems with a 2-pipe heat exchanger may be used for either heating or cooling. In changeover mode it is possible to use all units within a water circuit exclusively for cooling in summer and exclusively for heating in winter.

Heat exchanger as 4-pipe system

Air-water systems with a 4-pipe heat exchanger may be used for both heating and cooling. Depending on the season, i.e. especially in spring and autumn, it may be possible that an office has to be heated in the morning and cooled in the afternoon.

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