PASSENGER TRANSPORT VEHICLE
20230121571 ยท 2023-04-20
Inventors
Cpc classification
B60H1/00828
PERFORMING OPERATIONS; TRANSPORTING
B61D27/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A passenger transport vehicle contains an air conditioner which has a refrigerant circuit operated using a refrigerant. The refrigerant circuit has a condenser with a fan for conveying cooling air and an evaporator for controlling the temperature of supply air conveyed by a supply fan into a passenger compartment. Flow ducts for the cooling air and for the supply air are fluidically separated from one another inside the air conditioner by a partition wall. The partition wall has a degassing device being switched between a closed state for normal operation of the air conditioner and an open state for emergency operation of the air conditioner, in which emergency operation the degassing device fluidically connects the flow duct for the cooling air and the flow duct for the supply air to one another. A refrigerant detector is provided and when it detects the refrigerant, it triggers actuation of the degassing device.
Claims
1-8. (canceled)
9. A passenger transport vehicle, comprising: a passenger compartment; an air conditioner containing a refrigeration circuit operated using a refrigerant, said refrigeration circuit having a condenser with an associated condenser fan for conveying cooling air, and an evaporator, belonging to an air treatment part of said air conditioner, for controlling a temperature of supply air being conveyed by means of a supply air fan into said passenger compartment of the passenger transport vehicle, said air conditioner having a common partition wall and a flow channel for the cooling air and a flow channel for the supply air being fluidically separated from one another by said common partition wall, said common partition wall having a closable degassing device being switched between a closed state for normal operation of said air conditioner and an open state for emergency operation of said air conditioner, in which said closable degassing device fluidically connects said flow channel for the cooling air and said flow channel for the supply air directly together; and a detector of the refrigerating disposed in a region of the passenger transport vehicle to which the supply air is admitted, said detector connected via signals to said closable degassing device such that, when said detector detects the refrigerant, said detector initiates actuation of said closable degassing device so that said closable degassing device assumes the open state.
10. The vehicle according to claim 9, wherein said detector is connected via the signals to said supply air fan such that, when said detector detects the refrigerant, said detector initiates a shutdown of said supply air fan.
11. The vehicle according to claim 9, wherein said detector is disposed downstream, based on a direction of flow of the supply air, of said evaporator of said refrigeration circuit.
12. The vehicle according to claim 9, wherein said detector is disposed in said passenger compartment.
13. The vehicle according to claim 9, wherein said closable degassing device is disposed downstream, based on a direction of flow of the supply air, of said evaporator of said refrigeration circuit, in said common partition wall.
14. The vehicle according to claim 9, wherein said closable degassing device is a degassing flap.
15. The vehicle according to claim 9, wherein the refrigerant is propane.
16. The vehicle according to claim 9, further comprising a controller connected via the signals to said detector and/or to said supply air fan and said controller, on detection of the refrigerant by said detector, actuates said closable degassing device.
Description
[0017] An exemplary embodiment of the invention will be explained in greater detail hereinbelow with reference to the drawing, in which:
[0018]
[0019]
[0020]
[0021] As is apparent from
[0022] The air treatment part 8 comprises, in addition to the evaporator 6, also an air filter 9 and an after-heater 10. A supply air fan 11 conveys air to be conditioned through the air filter 9, along the evaporator 6 and through the after-heater 10, so that supply air with desired conditioning for a passenger compartment of the vehicle is present downstream of the after-heater 10.
[0023] In
[0024] In the present exemplary embodiment, the refrigeration circuit 1 is operated with propane, which involves increased health risks for people inside the passenger compartment in the event of a leak in the refrigeration circuit 1. For detecting a leak in the refrigeration circuit 1, in particular in the region of the air treatment part 8, a detector 24 for propane is provided downstream, based on the supply air, of the evaporator 6. In the exemplary embodiment shown, this detector 24 is connected to a vehicle control device 12 via signals, namely via a signal line 13. The detector 24 signals to the control device 12 the detection of propane in the supply air provided for introduction into the passenger compartment. The control device 12 evaluates this signal and actuates both the supply air fan 6 and a degassing flap 14, namely via signal lines 15, 16.
[0025] In normal operation of the air conditioning unit, the degassing flap 14, which is likewise arranged downstream of the evaporator, is closed, while in emergency operation of the air conditioning unit, in which the detector 24 has detected a leak in the refrigeration circuit 1, it is opened.
[0026] In the open state, the degassing flap 14 creates a passage in a partition wall 17 which separates a flow channel 18 for the cooling air from a flow channel 19 for the supply air. The flow channels 18, 19 for the cooling air and the supply air are completed by further walls 20 (cooling air) and 21 (supply air). The partition wall 17 thus forms with the wall 20 the flow channel 18 for the cooling air, while the wall 21 together with the partition wall 17 defines the flow channel 19 for the supply air and carries the detector 24.
[0027] In emergency operation of the air conditioning unit, the control device 12 controls the supply air fan 6 such that it is throttled sufficiently or is closed completely, while the degassing flap 14 is brought into its open position. In this respect, there is now a passage in the partition wall 17 for supply air, which is contaminated with refrigerant which has escaped due to the leak. In this operating state, the condenser fan 4, which can be operated at its maximum power in emergency operation, conveys not only the cooling air but also, by utilizing the Bernoulli effect, the supply air loaded with refrigerant from the flow channel 19. This supply air is guided past the condenser 3 and discharged to the environment by means of the condenser fan 4. In this respect, it is possible to empty the flow channel 19, and thus all the adjacent flow channels carrying supply air, by means of the condenser fan 4. In this manner, safe discharge of the supply air loaded with refrigerant to the environment is made possible, so that a risk to people inside the passenger compartment can effectively be reduced.
[0028] With regard to the supply of fresh air to the passenger compartment, it is possible to supply fresh air to the passenger compartment via a vehicle leak that is present due to the construction, for example doors, bellows, etc.
[0029]