n actual design, as per illustration Fig. MT 1, the system has a liquid reservoir also acting as an accumulator. The line that connects to the thermal expansion valve is connected underneath the accumulator. This will ensure that only refrigerant will be atomized by the valve supplied to the evaporator. R THE VAPOUR COMPRESSION REFRIGERATION CYCLE HIGH PRESSURE GAS LOW PRESSURE GAS LOW PRESSURE GASLIQUID HIGH PRESSURE LIQUID EVAPORATOR HEAT ABSORBED FRIDGE SPACE SENSING BULB LOW PRESSURE SIDE COMPRESSOR ACCUMULATOR EXPANSION VALVE TRAP SIGHT GLASS TUF DRAIN DRYER CARTRIDGE CONDENSER HEAT EXPELLED SEA WATER OR FAN COOLED PURGING VALVE E LIQUID RESERVOIR HIGH PRESSURE SIDE 4 PUMP
n actual design, as per illustration Fig. MT 1, the system has a liquid reservoir also acting as an accumulator. The line that connects to the thermal expansion valve is connected underneath the accumulator. This will ensure that only refrigerant will be atomized by the valve supplied to the evaporator. R THE VAPOUR COMPRESSION REFRIGERATION CYCLE HIGH PRESSURE GAS LOW PRESSURE GAS LOW PRESSURE GASLIQUID HIGH PRESSURE LIQUID EVAPORATOR HEAT ABSORBED FRIDGE SPACE SENSING BULB LOW PRESSURE SIDE COMPRESSOR ACCUMULATOR EXPANSION VALVE TRAP SIGHT GLASS TUF DRAIN DRYER CARTRIDGE CONDENSER HEAT EXPELLED SEA WATER OR FAN COOLED PURGING VALVE E LIQUID RESERVOIR HIGH PRESSURE SIDE 4 PUMP
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
Related questions
Question
In actual design, as per illustration Fig. MT 1, the system has a liquid reservoir also acting as an accumulator. The line that connects to the thermal expansion valve is connected underneath the accumulator. This will ensure that only ___ refrigerant will be atomized by the value supplied to the evaporator.
SUBJECT: REFRIGERATION SYSTEMS
![In actual design, as per illustration Fig. MT 1, the system has a liquid reservoir also acting as an accumulator. The line that connects to the thermal expansion valve is connected underneath the
accumulator. This will ensure that only
refrigerant will be atomized by the valve supplied to the evaporator.
DO
THE VAPOUR COMPRESSION REFRIGERATION CYCLE
PRESSURE GAS
LOW
HIGH PRESSURE GAS
LOW PRESSURE GAS LIQUID
THIGH PRESSURE LIQUID
EVAPORATOR
THEAT ABSORBED
FRIDGE
SPACE
TOUTHEN
SENSING BULB
LOW PRESSURE
SIDE
COMPRESSOR
CUMULATOR
HADE
EXPANSION
MALINE
PE
SIGHI
GLASS
KRAIN
DREM CARTRIDGE
5
CONDENSER
HEAT EXPELLED
BEA WATER OR FAN GOULDI
VALVE
LIQUID HUBERVINNI
HIGH PRESSURE
SIDE
PUNI](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Faa05b0cb-1d77-4ecc-b0d1-c2dffa20d437%2Fff34d3a7-93c5-4085-b46a-3a3e11b9d0ed%2Fplpyqy_processed.jpeg&w=3840&q=75)
Transcribed Image Text:In actual design, as per illustration Fig. MT 1, the system has a liquid reservoir also acting as an accumulator. The line that connects to the thermal expansion valve is connected underneath the
accumulator. This will ensure that only
refrigerant will be atomized by the valve supplied to the evaporator.
DO
THE VAPOUR COMPRESSION REFRIGERATION CYCLE
PRESSURE GAS
LOW
HIGH PRESSURE GAS
LOW PRESSURE GAS LIQUID
THIGH PRESSURE LIQUID
EVAPORATOR
THEAT ABSORBED
FRIDGE
SPACE
TOUTHEN
SENSING BULB
LOW PRESSURE
SIDE
COMPRESSOR
CUMULATOR
HADE
EXPANSION
MALINE
PE
SIGHI
GLASS
KRAIN
DREM CARTRIDGE
5
CONDENSER
HEAT EXPELLED
BEA WATER OR FAN GOULDI
VALVE
LIQUID HUBERVINNI
HIGH PRESSURE
SIDE
PUNI
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