1

Ťažká

Why do CO₂ refrigeration systems require special attention when separating liquid and oil?


CO₂ cannot be used in systems with sight glasses
CO₂ is flammable, so separators cannot be used
CO₂ operates at high pressure, which increases the risk of compressor failure and leaks
CO₂ does not require lubrication, so separators are unnecessary

2

Ťažká

What is the critical pressure of CO₂ (R744)?


Approximately 74 bar
Approximately 120 bar
Approximately 31 bar
Approximately 10 bar

3

Ťažká

What characterises the transcritical process in CO₂ systems?


Conventional condensation occurs
It is irrelevant to the operation of the system
It occurs only at low temperatures
The system operates above the critical point and the refrigerant does not condense in the conventional manner

4

Ťažká

What characterises the subcritical CO₂ process?


The conventional condensation process below the critical point
The absence of condensation
The absence of evaporation
Operation above the critical point

5

Ťažká

What is the log(p)-h diagram for CO₂ used for?


To detect leaks
To measure temperature
To regulate pressure
For analysing thermodynamic processes in a refrigeration system

6

Ťažká

What can be read from the log(p)-h graph?


Pressure, enthalpy, temperature and state of the refrigerant
Only the temperature
Only the amount of refrigerant
Only the humidity

7

Ťažká

What are CO₂ saturation tables used for?


To measure humidity
To regulate the compressor
To determine the oil quantity
To determine the relationship between temperature and pressure at saturation

8

Ťažká

What does the CO₂ saturation state mean?


A state of high pressure
Dry ice state
A state in which the refrigerant is only a gas
Equilibrium between the liquid and vapour phases

9

Ťažká

When can dry ice (solid CO₂) form?


During normal operation of the system
In the event of a sudden drop in pressure and temperature below the triple point
At high temperature
At high pressure

10

Ťažká

What risks are associated with the formation of dry ice in a CO₂ system?


No risk
Improved efficiency
Blocked pipes and system damage
Pressure reduction

11

Ťažká

How does the CO₂ pressure change as the temperature rises?


It first decreases, then increases
It remains the same
It decreases
Rises sharply

12

Ťažká

Why is understanding the log(p)-h graph particularly important for CO₂?


As CO₂ systems operate in different modes (sub- and transcritical) and require detailed analysis
It is only used for design purposes
It only applies to NH₃
It doesn’t matter

13

Ťažká

What happens to CO₂ above the critical point?


It turns into a solid
It ceases to conduct heat
It transitions to a supercritical state (no distinction between liquid and gas)
It turns into a liquid

14

Ťažká

Why do CO₂ systems require precise pressure control?


Due to significant pressure changes with temperature fluctuations
Due to low pressures
Because there are no valves
They do not require control

15

Ťažká

What is the main characteristic of R744 (CO₂) refrigeration systems?


Low operating pressures
Low energy efficiency
No need for regulation
Very high operating pressures

16

Ťažká

What are the requirements for piping materials in CO₂ systems?


They may be made of any material
They must be made exclusively from plastics
It does not matter
They must be able to withstand high pressures (e.g. high-grade steel)

17

Ťažká

How does a booster system work in CO₂ installations?


It reduces the amount of refrigerant
It reduces the pressure in the evaporator
It utilises two stages of compression (low and medium pressure) in a single system
It is used to store the refrigerant

18

Ťažká

What is the function of high-pressure control valves in CO₂ systems?


They lower the evaporator temperature
They regulate oil flow
They are used to store the refrigerant
They control the pressure on the high-pressure side and optimise system operation

19

Ťažká

Why is pressure optimisation in CO₂ systems crucial?


It reduces the amount of refrigerant
It reduces the ambient temperature
It enables the system to achieve maximum energy efficiency
It doesn’t matter

20

Ťažká

What role do parallel-operating compressors play in CO₂ systems?


They enable gas recovery from the medium-pressure stage and improve efficiency
It does not matter
They lower the ambient temperature
They increase energy consumption

21

Ťažká

How does an ejector work in a CO₂ system?


Stores the refrigerant
It increases the amount of refrigerant
It uses the energy of the higher-pressure refrigerant to raise the pressure of the refrigerant from the lower stage, which improves efficiency
It lowers the evaporator temperature

22

Ťažká

What is the function of liquid ejectors in CO₂ systems?


They assist with liquid recovery and improve evaporator feed
They reduce atmospheric pressure
They raise the refrigerant temperature
They increase the amount of oil

23

Ťažká

What are the characteristics of partially flooded systems in CO₂ systems?


Lack of regulation
The presence of liquid in the evaporator, which improves heat transfer and efficiency
Low operating pressure
The absence of liquid in the evaporator

24

Ťažká

What is the main risk associated with static pressure in CO₂ systems?


A rise in pressure resulting from the refrigerant heating up whilst at rest
A drop in temperature
A decrease in refrigerant quantity
Increased efficiency

25

Ťažká

How can standstill pressure in CO₂ systems be reduced?


By using parallel compressors and external cooling systems
By shutting down the system completely
By increasing the temperature
By increasing the refrigerant charge

26

Ťažká

What does ‘stagnation’ of a refrigeration system mean in the context of CO₂?


A drop in temperature
Improved efficiency
Normal system operation
A lack of refrigerant flow, which can lead to increased pressure and safety risks

27

Ťažká

Why do CO₂ systems require more advanced automation than traditional systems?


Due to low pressures
Because there are no valves
They do not require automation
Due to the need for precise control of pressure and temperature

28

Ťažká

Which safety class applies to R744?


A1
B2L
A3
A2

29

Ťažká

In an R744 system operating in supercritical mode, the refrigerant entering the evaporator expansion valve is...


A subcooled liquid
Saturated vapour at intermediate pressure
A supercritical fluid
A two-phase mixture at intermediate pressure

30

Ťažká

In R744 supercritical systems, the gas cooler outlet valve controls:


The pressure in the gas cooler
The inlet temperature to the gas cooler
The gas cooler fans
The outlet temperature of the gas cooler

31

Ťažká

What is the main reason for using K65 copper tubing in some R744 systems?


They bend easily
They can withstand higher pressures
They have good low-temperature performance
They come in a wider range of diameters

32

Ťažká

Which of the following statements is correct regarding the installation of Schrader valves?


When brazing the valve body to the system, the core must be removed, then refitted and tightened to the correct torque
Schrader valves must not be used in R744 systems
Hydrocarbons leak through Schrader valves
All Schrader valve cores are suitable for all refrigerants

33

Ťažká

Which refrigerant can be detected using phenolphthalein paper?


R1234ze
R744
R1270
R717

34

Ťažká

How does a refrigerant shortage affect the high-pressure side of the system (without discharge pressure regulation)?


Discharge pressure will be higher, and the degree of subcooling will be higher
Discharge pressure will be lower, subcooling will be higher
Discharge pressure will be higher, and the degree of subcooling will be lower
The discharge pressure will be lower, and the subcooling will be lower

35

Ťažká

What is the benefit of using helium as a tracer gas in nitrogen during a pressure test?


It has a higher pressure than pure nitrogen
It has a distinct odour
It is non-flammable
It has smaller molecules and diffuses more easily

36

Ťažká

Why should an R744 system that has been drained be initially charged with the refrigerant in gaseous form?


To prevent damage to the compressor
To ensure that R744 is charged slowly
To prevent the drain valve from opening
To prevent the formation of dry ice

37

Ťažká

If an R744 system contains moisture because it has not been properly drained, what is the likely consequence?


The formation of hydrogen fluoride, which will decompose into hydrofluoric acid and damage the compressor
The formation of carbonic acid, which will cause damage to the system
Excessively high discharge pressure
Reduced cooling capacity

38

Ťažká

The pressure of R744 at a saturation temperature of 20 °C is approx.


14 bar g
90 bar g
56 bar g
25 bar g

39

Ťažká

At an ambient temperature of 25°C, the standby pressure in the low-pressure stage of an R744 cascade system will typically be…


27.5 bar g
Higher than the maximum permissible pressure in the low-pressure stage
The same as the pressure set on the relief valve
The same as the high-pressure setting on the pressure switch

40

Ťažká

What is the correct definition of critical temperature?


The temperature above which there are no distinct liquid and gaseous phases
The temperature at which a substance changes from a gaseous to a solid state
The temperature at which, for certain substances, electrical resistance is zero
The temperature at which the vapour pressure of a liquid is equal to the ambient pressure surrounding the liquid

41

Ťažká

In a supercritical system, under supercritical conditions, the working fluid in the gas cooler


it loses heat as its temperature drops
it loses heat when its pressure drops
loses heat at constant temperature and pressure
loses heat during a phase change