Jeven JLI-TURBO technicalbroc

Transcription

Jeven JLI-TURBO technicalbroc
JLI-Turbo Hood
Product Description
System Jeven JLI-Turbo hood has been designed for
kitchens where exhaust hoods with high effiency
grease extracting are needed and supply air units on
the hoods are impossible to install.
JLI-Turbo hood is supplied with rotating filter unit with
damper plate and measurement taps.
TurboSwing filtering solution was developed for separating grease in professional kitchens with high quality.
The fast rotating separation plate extract even the
smallest particles and slings them at high speed to the
outer edges of the separation dome , from which
grease and other impurities drain into the collection
basin.
TurboSwing separates liquid grease and impurities and
they are removed by means of a tap.
During the annual check-up and cleaning of the
exhaust channels in addition the TurboSwing dome
and separation plate can easily be removed and
washed in a dishwasher.
Lights and Filters
JLI-Turbo is supplied with light fixture and TurboSwing
filter.
Material
The basic material is stainless steel (AISI 304)
or glass (JLI-S-Turbo models).
TurboSwing basic material is stainless steel, AISI 304.
The separation plate has been treated with dirt and fat
resistant nano-coating.
Accessories
Covering boards to enclose the area between the top
of the hood and the ceiling.
TurboSwing FC control unit.
Product Code
Jeven Hood JLI-R-Turbo 3000x1500x540 -2x315 - 380 l/s + Control unit FC
Hood model
TurboSwing
Hood length x width x height
Total of exhaust air connections and their size
Exhaust air total l/sec
Accessories
JLI-Turbo HOODS
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in products without prior notice
Page
1
Function principle, JLI-Turbo
3
2
1. Heat and impurities rise into the hood.
2. Grease particles are removed in the filter
3. Clean air is extracted.
1
Construction, JLI-Turbo
1
1. Outer casing
2. Light fixture with cable
3. Grease filters, measurement tap
for exhaust air
4. Exhaust air connection and damper plate
5.Hanging bracket
2
5
4
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2
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JLI-Turbo HOODS
3
Structure, TurboSwing
1
2
1. Collar saddle
2. Damper
3. Motor
4. Motor connection box
5. Motor cable
6. Dome fixing
7. Separation plate
8. Airflow measuring tap
9. Protective domes
10.Tap
11. Limit switch
12. Signal light
3
4
11
5
6
7
8
9
10
12
Operation principle, TurboSwing
7
3
1
2
Dirty air enters the TurboSwing(1). The
separation plate rotates (2), grease and
impurities are separated (3) and moved (4)
to the edges of the separation chamber from
where they drain into the collection basin
(5). Liquid grease is removed by turning on
the tap (6). Cleansed air exits (7) to ducts.
4
6
5
The picture shows the air flowing through
TurboSwing. Different colours and arrows
are used to describe different airflow speeds
and directions in different areas.
All of the dirty air flows through the fast
rotating separation plate. A sealing flow with
vortices is formed on the edge of the
separation plate, preventing the dirty air
short-circuit flow into the exhaust.
Air velocity
m/s
JLI-Turbo HOODS
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Page
3
Dimensions
190 200
Height
130
550
500
200
A
500
ø315
ø3
15
width
B
Height
2x36W
length
A and B dimensions are freely selectable (at
100mm intervals, for example). Although A and
B dimensions must be at least 300mm. Max.
module size is 3000mm x 1800mm. Standard
heights 330mm and 540mm.
Page
4
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in products without prior notice
These dimensions are for standard units.
Specific details are available from Jeven Design
Service Department and will be furnished to suit
individual requirements.
JLI-Turbo HOODS
Recommended exhaust air flow rates
Operating areas
Product
TurboSwing 1
Connection size Ø
mm
315
Air volume
l/s
0 - 200
Pressure loss
Pa
0 - 60
m3/h
0 - 720
TurboSwing 1
ø315
Pressure loss and Sound data
Pressure loss and noise information
Pressure
Ps (Pa)
TurboSwing 1
120
100
Adjustment plate ½ closed AP open
80
70
60
50
dB(A) =50
dB(A) =40
40
dB(A) =38
30
80 100120 160 200240 320 400 l/s
300
500
700 1000 1400 m3/h
Noise output level, Lw
The noise output level according to octave band is
achieved by adding correction Kok to the noise level
output LpA according to the following formula
Lw = LpA + Kok
Correction, Kok
Hz
Kok
tol.
JLI-Turbo HOODS
125
7
±3
250
-1
±3
500
-5
±2
1000
-5
±2
2000
-7
±3
4000
-6
±4
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in products without prior notice
Page
5
Objectives of Kitchen Ventilation
Exhaust Flow Rates
1. Cooking vapours and heat should be removed with the
help of efficient local exhaust in such a way that contaminants do not pass though the breathing zone of workers.
2. Temperature, velocity and cooling effect of the supply air
should be comfortable in the occupied zone.
3. In cases where workers are subjected to high heat
radiation, supply air should be adjustable by personnel
(local cooling)
4. Grease extractors should be fire-proof and, as with
supply air units, should be easily maintained.
5. Air flow rates should be easily adjustable.
Dimensioning
1. Size of the hood is determined by the size of the kitchen
equipment.Overhang depends on the type of equipment
and the distance between the hood´s condende gutter and
top of the kitchen equipment. Normal overhang varies
between 200-300 mm.
When sizing hood to oven, overhang should be at least
400mm, because when the door of the oven is opened,
a great amount of steam is discharged from the oven.
2. Air flow rates are dimensioned on the basis of connection
powers of the kitchen equipment.
3. Planning of the distribution of the supply air and marking
the products codes with air flows.
Supply Air and Generally Exhaust
Supply air flow rates are usually 80-90 % of the exhaust air
flow rates.Generally exhaust is usually 10% of the hoods
exhaust air flow rates.
Calculation of the exhaust air flows, based on the of the
connection power of the kitchen equipment.
Table 1
Kitchen
equipment
factor
Kitchen equipm.
Kettle
Steamer
Pasta cooker
Combi oven
Convection oven
Pizza oven
Tandoor oven
Bratt pan
Fryer
Range
Halogen range
Multif. cookers
Stockpot stoves
Broiler
Dishwasher
Pot washer
Bain marine
Salamander
Kebab grill
Wok pan
Grill
Ke
Connection
power
P/kW
Load factor
Exhaust
Mp=KexPxS
S (0,3-1,0)
Mp/l/s
10
5
10
10
10
12
35
30
20
30
20
30
30
35
20
20
35
35
35
60
60
Total.
l/s
Different kitchen equipment release impurities and excess
heat in different amounts. When air flow rates are
determined, kitchen equipment factor `Ke´ takes care of this.
Load factor `S´ is determined by the operation hours and
operation level of the kitchen equipment. If the equipment is
fully powered all the time, load factor is 1.0.
The exhaust flow rate `Mp´ is obtained by multiplying the
kitchen equipment factor `Ke´ by connection power of the
equipment `P´ and by load factor `S´.
Example
1. Combi oven
2. Kettle
3. Range
Page
6
P
36 kW
12 kW
8 kW
Ke
10
10
30
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S
0,7
0,9
0,5
Exhaust Air Flow
36 kW x 10 l/s/kW x 0,7 = 252 l/s
12 kW x 10 l/s/kW x 0,9 = 108 l/s
8 kW x 30 l/s/kW x 0,5 = 120 l/s
Sum = 480 l/s
General Exhaust
Total Exhaust
Supply Air Flow
= 0.10 x 480 l/s = 48 l/s
= 48 l/s + 480 l/s = 528 l/s
= 0.9 x 528 l/s = 475 l/s
JLI-Turbo HOODS
JLI-Turbo Hoods Benefits
-TurboSwing filters for efficient extraction
-Easy measuring of air flows
-Custom built hoods with System Jeven
Design Service
-Flexible design
-Easy cleaning and long life
System Jeven Design Service
System Jeven Design Service helps you choose a good solution for your professional kitchen project.
Send us the kitchen lay-out with load effects of the kitchen equipment. We shall send back our solution for hoods
and calculated air flow rates with the dimensioned CAD-drawing
-Air flow calculations
-Custom built hoods
-Noise levels
-Individual project design
-Datas and drawings by e-mail
-Cad files .dwg and .dxf
-Always individual product drawings with order
confirmation
1200
700
1200
700
15
ø3
15
540
Modul 1
ø3
15
ø3
ø3
1500
700
75
700
15
220
Example : JLI- R-Turbo - 5200 x 1500 x 540 - 4x315 - 800 l/s
Modul 2
2x58W
2x58W
1500
Positioningof
of the
the Hood
Positioning
Hood
1900-2100
Normal distance between the hood side and the floor is
1900 - 2100 mm.
X
Size of the hood is determined by the size of the kitchen
equipment. Overhang depends on the type of equipment
and the distance between hood and equipment. Normal
overhang is 200-300 mm.
When sizing the hood over the oven , the overhang should
be at least 400 mm, because when the door open, a great
amount of steam is discharged from the oven.
JLI-Turbo HOODS
_ 200
>
_ 400
>
Oven
Range
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in products without prior notice
Page
7
Light fixture
2
85
40
1
1) Light fixture ,as standard , IP 54
T8
B= 131 mm , ( 1x18W , 1x36W , 1x58W )
B= 168 mm , ( 2x18W , 2x36W , 2x58W )
T5
B= 80 mm , ( 1x14W , 1x28W , 1x49W )
B= 160 mm , ( 2x14W , 2x28W , 2x49W )
2) ca. 2 m cabel , type EKK 3 x 1,5
B
Every hood module incorporates light fixture as a stardard. The light fixture has a cable with it.
The cable should be connected to a junction box with cable lock. The junction box is not supplied.
TurboSwing motor features
Power connection:
Power consumption:
Protection grade:
Insulating class:
CE- approved
Page
8
230V
90W ; 0,40A
IP55
155
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in products without prior notice
JLI-Turbo HOODS

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