2015-2022 Volkswagen Touran 4 Door Technical data -> 6.4.2 Comfort User Manual
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Technical data -> 6.4.2 Comfort for Your Volkswagen Touran 4 Door Second Generation (2015-2022)

Arteon 2018 ➤ , Atlas 2017 ➤ , CC 2012 ➤ , Caddy 2016 ➤ , Crafter 201 ...  
Air conditioning systems with refrigerant R1234yf - General information - Edition 07.2017  
♦ The hot refrigerant flows with its heat content to the condenser.  
Here, the refrigerant dissipates its heat to the surrounding air  
via the condenser due to the temperature gradient between  
the refrigerant and the surrounding air.  
♦ The refrigerant thus acts as a heat transfer medium. As it is to  
be re-used, the refrigerant is returned to the evaporator.  
♦ For this reason all air conditioning systems are based on the  
refrigerant circulation principle. There are however differences  
in the composition of the units  
⇒ “1.1 System overview - refrigerant circuit”, page 30 .  
6.4.2  
Comfort  
lk  
♦ A basic requirement for concentration and safe driving is a  
feeling of comfort in the passenger compartment. This comfort  
is only reached by using an air conditioning system, particu‐  
larly when it is hot and humid. Of course, open windows, an  
open sunroof or increased air ventilation can contribute to  
comfort, but they all have certain disadvantages within the ve‐  
hicle interior, such as additional noise, draughts, exhaust  
gases, unhindered entry of pollen (unpleasant for allergy suf‐  
ferers).  
♦ A well regulated air conditioning system in conjunction with a  
well thought-out heating and ventilation system can create a  
feeling of well-being and comfort by regulating the interior  
temperature, humidity and rate of air change, regardless of the  
external conditions. This must be available whether the vehi‐  
cle is moving or not.  
Other important advantages of air conditioning are:  
♦ Drying of the air in the passenger compartment (humidity in  
the air condenses on the cold evaporator and is drained away  
as condensate, the air is heated up again on the heat ex‐  
changer for heater to a preset temperature, which reduces the  
water content in the air and the absolute and relative humidity  
is reduced).  
♦ Additional cleansing of the air directed into the passenger  
compartment (dust and pollen that have made their way  
passed the dust and pollen filter, for example, are washed out  
by the moist fins of the evaporator and carried off with the  
condensation water.)  
♦ Temperatures in a mid-range car (for example, after a short  
period of driving, ambient temperature 30°C in the shade and  
the vehicle in direct sunlight).  
With air conditioning Without air condi‐  
tioning  
Head height  
Chest  
Footwell  
23 °C  
24 °C  
30 °C  
42 °C  
40 °C  
35 °C  
6.4.3  
Environmental aspects  
♦ Until about 1992, air conditioning systems were equipped with  
refrigerant R12. Due to its chlorine atoms, this CFC had a high  
potential for destroying ozone and, in addition, a very high po‐  
tential for increasing the greenhouse effect.  
♦ From 1992, the air conditioning systems of newly manufac‐  
tured cars have been successively changed from R12 refrig‐  
erant to R134a refrigerant. This refrigerant contains no  
chlorine and therefore does no damage to the ozone layer.  
Due to the high global warming potential of approx. 1400  
(GWP), it may no longer be used in vehicles that are newly  
type approved from 2011. The cut-off date for bringing vehi‐  
6. Basic technical and physical properties  
27  
GETth  

Related Topics

1 Safety information 1.1 Safety precautions when working on air conditioning systems 1.2 Safety precautions when handling refrigerants 1.3 Safety measures when working on vehicles with a start/stop system 1.4 Safety measures when using air conditioner service stations 1.5 Safety measures for working on vehicles with high-voltage system 1.6 Safety precautions when working in the vicinity of high-voltage components 1.7 Safety measures when working on pressurised tanks/containers 2 Legal texts and regulations 2.1 Provisions and directives 2.2 Charging refrigerant circuit with different refrigerants 2.3 Workplace safety 3 Repair notes 3.1 Rules for cleanliness 3.2 Refrigerant circuit seals 3.3 Refrigerant and refrigerant oil 3.3.1 Important repair instructions for refrigerant and refrigerant oil 3.3.2 Refrigerant oil 3.4 Handling pressurised tanks/containers 3.5 Handling refrigerants 4 Identification 4.1 Notice for refrigerant circuit 5 Technical data 5.1 Refrigerant capacity 5.2 Refrigerant oil capacities 5.3 Safety data sheets 6 Basic technical and physical properties 6.1 Basics of air conditioning technology 6.1.1 Physical properties of air conditioning system 6.1.2 Pressure and boiling point of refrigerant 6.1.3 Vapour pressure table for refrigerant 6.2 Physical properties 6.2.1 R1234yf refrigerant 6.2.2 Potential risks with R1234yf refrigerant 6.2.3 Physical and chemical properties of R1234yf refrigerant 6.2.4 Critical point 6.2.5 Environmental aspects of refrigerant R1234yf 6.2.6 Trade names and designations of R1234yf refrigerant 6.2.7 Colour and odour of R1234yf refrigerant 6.2.8 Vapour pressure of R1234yf refrigerant 6.2.9 Physical properties of R1234yf refrigerant 6.2.10 How R1234yf refrigerant reacts to metals and plastics 6.2.11 Critical temperature / critical pressure of R1234yf refrigerant 6.2.12 Water content of R1234yf refrigerant 6.2.13 Flammability / decomposition of R1234yf refrigerant 6.2.14 Charge factor of refrigerant R1234yf 6.2.15 Evidence of leaks in a refrigerant circuit with R1234yf refrigerant 6.2.16 Analysis of refrigerant R1234yf 6.2.17 Returning contaminated R1234yf refrigerant for analysis, processing or disposal 6.3 Product characteristics 6.4 Function and role of air conditioning system 6.4.1 Principle of operation 6.4.3 Environmental aspects 6.5 Other reference material

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