157
JOHNSON CONTROLS
FORM 201.18-NM7
Compressor Loading
The micro loads and unloads individual compressors
by varying current to the Slide Valve solenoid which
controls oil flow to the slide valve. The slide valve load
solenoid applies oil pressure to the slide valve to over-
come spring pressure from an internal spring, increasing
capacity. The internal spring moves the slide valve in
the opposite direction against oil pressure to decrease
capacity.
Whenever chilled liquid leaving temperature is above
the Setpoint, loading current will increase to allow oil
pressure to move the slide valve to increase capacity.
Every 10 seconds, the micro will increment the slide
valve step from 1 to 10 steps according to error (devia-
tion from setpoint) and rate of change of chilled liquid.
The micro will always choose the compressor with the
lowest slide valve position to load on increasing demand,
provided the compressor is not pumping down, has run
at least 15 seconds, and is not in a “Limiting” condition.
Loading Limiting
Load limiting will occur if a system safety threshold is
neared. The anticipatory capability of the micro limits
loading or unloads a system if the micro anticipates a
safety threshold will be exceeded. Under circumstance
where loading is required and one of the systems is
nearing a threshold, the micro may elect to split the
number of steps that it would normally load a compres-
sor between more than one compressor. For instance,
if system 1 were nearing its motor current unload point
and it was scheduled to load, the micro could split a load
signal of 10 steps between system 1 and 2. It could only
load SYS 1 “2” steps while loading SYS 2 “8” Steps.
Under these circumstances, the two systems will not
appear to equalize loading.
Compressor Unloading and Shutdown Sequence
Whenever temperature is below the Setpoint, unload-
ing pulses will be sent to open the unloading port on
the control solenoid to relieve oil pressure on the slide
valve on the compressor with the highest slide valve
step. Opening of the unloading port on the control
solenoid allows spring pressure to move the slide valve
to decrease capacity. Every 5 seconds, the micro will
decrement the compressor with the highest slide valve
position by 1 - 10 steps according to the error (deviation
from Setpoint) and the rate of change of chilled liquid
temperature.
As load drops, the micro will continue to unload the
compressor with the highest slide valve step until all
compressor slide valves are at “0.” At this point, the last
lag compressor will pump down and cycle off, if chilled
liquid temperature drops below “Setpoint - Control
Range/2”. As load continues to decrease and the lag
compressor cycles off, the lead compressor will continue
to unload to a slide valve position of “0” and will pump
down and cycle off if the chilled liquid temperature drops
below “Setpoint – Control Range.”
The lag compressor may be shut down
before it is fully unloaded to avoid a
Chiller fault on a Low Water Tem‑
perature cut‑out under the following
conditions: a) if chilled liquid tem‑
perature falls below the low end of the
Control Range (CR) for more than 37
seconds, b) if chilled liquid tempera‑
ture drops more than CR/4 below the
low limit of the Control Range.
The lead compressor may be shut down
before it is fully unloaded to avoid a
Chiller Fault on Low Water Tempera‑
ture under the following conditions:
a) if chilled liquid temperature drops
2°F below the low limit of the Control
Range (CR), b) if chilled liquid tem‑
perature drops more than CR/2 below
the low limit of the Control Range.
8
Содержание YCAS0098EB
Страница 36: ...36 JOHNSON CONTROLS POWER AND CONTROL PANEL LAYOUTS WYE DELTA TYPICAL FIG 8 POWER PANEL SECTION 00263VIP 4...
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Страница 64: ...64 JOHNSON CONTROLS Technical Data ELEMENTARY DIAGRAM FIG 18 ELEMENTARY DIAGRAM ACROSS THE LINE START...
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Страница 70: ...70 JOHNSON CONTROLS Technical Data FIG 22A CONTROL PANEL COMPONENT LOCATIONS...
Страница 71: ...71 JOHNSON CONTROLS FORM 201 18 NM7 LD03280 FIG 22B POWER PANEL COMPONENT LOCATION 7...
Страница 72: ...72 JOHNSON CONTROLS Technical Data LEGEND LD03281...
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Страница 74: ...74 JOHNSON CONTROLS Technical Data CONNECTION DIAGRAM SYSTEM WIRING LD06256 LD03231 LD03232...
Страница 75: ...75 JOHNSON CONTROLS FORM 201 18 NM7 COMPRESSOR TERMINAL BOX LD03233 7...
Страница 76: ...76 JOHNSON CONTROLS LD03285 Technical Data...
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Страница 113: ...113 JOHNSON CONTROLS FORM 201 18 NM7 COMPRESSOR COMPONENTS CONT D FIG 40 COMPRESSOR COMPONENTS LD03669 7...
Страница 114: ...114 JOHNSON CONTROLS COMPRESSOR COMPONENTS CONT D FIG 41 COMPRESSOR COMPONENTS LD03670 Technical Data...
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