FIELD OF THE INVENTION
[0001] The invention relates to a cooling device and a controlling method thereof for a
reefer container, more specifically, relates to a controlling circuit and a controlling
method of the cooling device.
BACKGROUND ART
[0002] A controlling circuit diagram of a conventional cooling device for a reefer container
is shown in FIG. 1. When the reefer container or carriage is operated in a cooling
mode, a compressor relay 1, a condenser fan relay 2 and an evaporator fan relay 3
of its cooling device are all in an ON state, and the compressor, the condenser fan
and the evaporator fan are all in the condition of operation. The operating states
of the compressor relay 1, the condenser fan relay 2 and the evaporator fan relay
3 are controlled by a controller 4.
[0003] During cooling process of the reefer container or carriage, a very high negative
pressure will be generated inside the container if the cooling device is still operated
in the cooling mode, after the door is closed. Side or top plates of the reefer container
may even be crushed in the case that the negative pressure is too high.
[0004] However, the conventional cooling device can not detect and control the air pressure
inside the container, and thus can not prevent the container body from being crushed
due to an excessive negative pressure inside the container.
SUMMARY OF THE INVENTION
[0005] The first object of the invention is to provide a cooling device for a reefer container
to detect the air pressure inside the container and stop operating if the air pressure
inside the container is too low so as to prevent the container body from being crushed
due to an excessive negative pressure inside the container.
[0006] The second object of the invention is to provide a method of controlling a cooling
device for a reefer container, which allows detecting and controlling of the air pressure
inside the container, so as to prevent the container body from being crushed due to
an excessive negative pressure inside the container.
[0007] In order to realize the first object mentioned above, the invention provides a cooling
device with a controlling circuit for a reefer container, the controlling circuit
comprising a compressor relay, a condenser fan relay and an evaporator fan relay which
are connected in parallel, as well as a controller for controlling operating states
of the compressor relay, the condenser fan relay and the evaporator fan relay. The
controlling circuit further comprises a pressure switch which is connected to the
compressor relay in series and a pressure sensing and controlling device which can
control the pressure switch to turn on or off. When the air pressure inside the container
drops to a preset pressure, the pressure sensing and controlling device controls the
pressure switch to turn off; and when the air pressure inside the container rises
higher than the preset pressure, the pressure sensing and controlling device controls
the pressure switch to turn on.
[0008] In the cooling device for a reefer container according to the invention, the pressure
switch and the compressor relay connected in series are connected to the condenser
fan relay and the evaporator fan relay in parallel.
[0009] In the cooling device for a reefer container according to the invention, the pressure
switch and the compressor relay connected in series are connected to the evaporator
fan relay in parallel, and the condenser fan relay is connected to the compressor
relay in parallel.
[0010] In the cooling device for a reefer container according to the invention, the compressor
relay, the condenser fan relay and the evaporator fan relay connected in parallel
are connected to the pressure switch in series.
[0011] In the cooling device for a reefer container according to the invention, the controlling
circuit further comprises a time delay relay which is controlled by the pressure sensing
and controlling device and can delay the pressure switch to turn on, the time delay
relay being connected in parallel to the pressure switch and the compressor relay
connected in series. When the air pressure inside the container drops to the preset
pressure, the pressure sensing and controlling device controls a contact of the time
delay relay to disconnect; and when the air pressure inside the container rises higher
than the preset pressure, the pressure sensing and controlling device controls the
contact of the time delay relay to connect, and the time delay relay delays the pressure
switch to turn on.
[0012] In the cooling device for a reefer container according to the invention, the pressure
sensing and controlling device is a vacuum pressure switch, and the vacuum pressure
switch is disposed inside the container.
[0013] In the cooling device for a reefer container according to the invention, the pressure
sensing and controlling device comprises a controlling device and a pressure sensor
which is disposed inside the container. The controlling device can acquire information
of the air pressure inside the container from the pressure sensor and transmit control
signals.
[0014] In order to realize the second object mentioned above, the invention provides a method
of controlling a cooling device with a controlling device for a reefer container,
the controlling circuit comprising a compressor relay, a condenser fan relay and an
evaporator fan relay which are connected in parallel, as well as a controller for
controlling operating states of the compressor relay, the condenser fan relay and
the evaporator fan relay. The controlling circuit further comprises a pressure switch
which is connected to the compressor relay in series and a pressure sensing and controlling
device which can control the pressure switch to turn on or off. The method comprising
the following steps:
- a). detecting the air pressure inside the container by the pressure sensing and controlling
device;
- b). when the air pressure inside the container drops to a preset pressure, controlling
the pressure switch to turn off by the pressure sensing and controlling device, and
when the air pressure inside the container rises higher than the preset pressure,
controlling the pressure switch to turn on by the pressure sensing and controlling
device.
[0015] In the method of controlling a cooling device for a reefer container according to
the invention, the controlling circuit further comprises a time delay relay which
is controlled by the pressure sensing and controlling device and can delay the pressure
switch to turn on, and which is connected in parallel to the pressure switch and the
compressor relay connected in series. At the step b), when the air pressure inside
the container drops to the preset pressure, a contact of the time delay relay is controlled
to disconnect by the pressure sensing and controlling device, and when the air pressure
inside the container rises higher than the preset pressure, the contact of the time
delay relay is controlled to connect by the pressure sensing and controlling device,
and the pressure switch is delayed to turn on by the time delay relay.
[0016] In the method of controlling a cooling device for a reefer container according to
the invention, the pressure sensing and controlling device comprises a controlling
device and a pressure sensor which is disposed inside the container. At the step a),
the air pressure inside the container is detected by the pressure sensor, and the
controlling device acquires information of the air pressure inside the container from
the pressure sensor and transmits control signals.
[0017] The cooling device and the controlling method thereof for a reefer container according
to the invention can achieve the following advantageous effects:
- 1. The invention can be implemented in a simple structure and at a low cost, since
only a few of electric elements are added to the conventional controlling circuit
for controlling the air pressure inside the container.
- 2. There is no modification to the structures of the container body and carriage,
so it is not necessary to change the processes for manufacturing the container and
carriage at present.
- 3. It is easy to apply the invention to old container and old lorry.
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] A further description of the invention will be given below in combination of drawings
and embodiments, where in the drawings:
FIG. 1 is a diagram schematically showing a controlling circuit of a conventional
cooling device for a reefer container or a refrigerated lorry.
FIG. 2 is a diagram schematically showing a controlling circuit of a cooling device
for a reefer container according to a first embodiment of the invention.
FIG. 3 is a diagram schematically showing a controlling circuit of a cooling device
for a reefer container according to a second embodiment of the invention.
FIG. 4 is a diagram schematically showing a controlling circuit of a cooling device
for a reefer container according to a third embodiment of the invention.
DETAILED DESCRIPTION OF THE INVENTION
First Embodiment:
[0019] In the following, the embodiments of the cooling device and the controlling method
thereof for a reefer container according to the invention are described referring
to FIGs. 2 to 4. In addition, the cooling device and the controlling method thereof
can be applied to refrigerated lorry, but here only the description for the reefer
container is given below by way of example.
[0020] The controlling circuit of the cooling device for the reefer container according
to the first embodiment of the invention is shown in FIG. 2. As shown in FIG. 2, the
controlling circuit of the cooling device comprises a compressor relay 1, a condenser
fan relay 2, an evaporator fan relay 3, a controller 4, a vacuum pressure switch 5
and a pressure switch 7. The controller 4 can control operating states of the compressor
relay 1, the condenser fan relay 2 and the evaporator fan relay 3. The vacuum pressure
switch 5 is disposed inside the container for controlling the pressure switch 7 to
turn on or off according to the air pressure inside the container. In this embodiment,
the pressure switch 7 and the compressor relay 1 connected in series, are then connected
to the condenser fan relay 2 and the evaporator fan relay 3 in parallel.
[0021] An action value for the vacuum pressure switch 5, e.g. 300mm - 400mm water column,
is preset according to the air pressure inside the container to be controlled (this
value will be referred as preset pressure below). When the air pressure inside the
container drops to the preset pressure, the vacuum pressure switch 5 controls the
pressure switch 7 to turn off. At this time, the compressor relay 1 is disconnected,
and the compressor is caused to stop operating. When the air pressure inside the container
rises higher than the preset pressure, the vacuum pressure switch 5 controls the pressure
switch 7 to turn on. At this time, the controller 4 controls the compressor relay
1 to turn on, and the compressor begins operation. Thereby it is ensured that the
air pressure inside the container is not lower than the preset pressure so as to ensure
safety of the container body.
[0022] To further control the air pressure inside the container, the controlling circuit
of the cooling device may be provided with a time delay relay 6 therein. The time
delay relay 6 is controlled by the vacuum pressure switch 5, and can delay the pressure
switch 7 to turn on. The time delay relay 6 is connected in parallel to the pressure
switch 7 and the compressor relay 1 connected in series.
[0023] When the air pressure inside the container drops to the preset pressure, the vacuum
pressure switch 5 controls a contact of the time delay relay 6 to disconnect. When
the air pressure inside the container rises higher than the preset pressure, the vacuum
pressure switch 5 controls the contact of the time delay relay 6 to connect so that
the time delay relay 6 is energized, and the time delay relay 6 delays the pressure
switch 7 to turn on, that is, makes the pressure switch 7 turn on after a period of
time has elapsed. Therefore, the cooling system will stop operating for a period of
time after the air pressure inside the container drops to the preset pressure. Thereby
such a risk is prevented that the container body is damaged due to the temperature
inside the container dropping and the air pressure inside the container rapidly dropping
in the case that the cooling system continuously operates.
[0024] Furthermore, in the case that a time delay relay is provided, the pressure switch
can be replaced by another contact of the time delay relay.
[0025] The vacuum pressure switch 5 can be replaced by a common pressure sensor in combination
with a controlling device. In operating state, the pressure sensor detects the air
pressure inside the container and transmits information of the air pressure inside
the container to the controlling device. When the air pressure inside the container
drops to the preset pressure or rises higher than it, the controlling device sends
control signals respectively to the pressure switch 7 and the time delay relay 6 for
controlling them.
Second Embodiment:
[0026] As shown in FIG. 3, the second embodiment is almost the same as the first embodiment
except that: the pressure switch 7 and the compressor relay 1 connected in series
are connected to the evaporator fan relay 3 in parallel, and the condenser fan relay
2 is connected to the compressor relay 1 in parallel.
[0027] In this way, when the air pressure inside the container drops to the preset pressure,
the vacuum pressure switch 5 controls the pressure switch 7 to turn off. At this time,
the compressor relay 1 and condenser fan relay 2 are disconnected, and the compressor
and the condenser fan are caused to stop operating. When the air pressure inside the
container rises higher than the preset pressure, the vacuum pressure switch 5 controls
the pressure switch 7 to turn on. At this time, the controller 4 controls the compressor
relay 1 and the condenser fan relay 2 to turn on, and the compressor and the condenser
fan begin operation. Thereby it is ensured that the air pressure inside the container
is not lower than the preset pressure, so as to ensure safety of the container body.
Third Embodiment:
[0028] As shown in FIG. 4, the third embodiment is almost the same as the first embodiment
except that: the compressor relay 1, the condenser fan relay 2 and the evaporator
fan relay 3 connected in parallel, are then connected to the pressure switch 7 in
series.
[0029] In this way, when the air pressure inside the container drops to the preset pressure,
the vacuum pressure switch 5 controls the pressure switch 7 to turn off. At this time,
the compressor relay 1, the condenser fan relay 2 and the evaporator fan relay 3 are
disconnected, and the compressor, the condenser fan and the evaporator fan are caused
to stop operating. When the air pressure inside the container rises higher than the
preset pressure, the vacuum pressure switch 5 controls the pressure switch 7 to turn
on. At this time, the controller 4 controls the compressor relay 1, the condenser
fan relay 2 and the evaporator fan relay 3 to turn on, and the compressor, the condenser
fan and the evaporator fan begin operation. Thereby it is ensured that the air pressure
inside the container is not lower than the preset pressure, so as to ensure safety
of the container body.
[0030] A method of controlling a cooling device for a reefer container according to the
invention will be described below. The controlling circuit of the cooling device comprises
a compressor relay, a condenser fan relay and an evaporator fan relay connected in
parallel as well as a controller for controlling operating states of the compressor
relay, the condenser fan relay and the evaporator fan relay. The controlling circuit
further comprises a pressure switch which is connected to the compressor relay in
series and a pressure sensing and controlling device which can control the pressure
switch to turn on or off. The controlling method comprises the following steps: measuring
the air pressure inside the container by the pressure sensing and controlling device;
when the air pressure inside the container drops to the preset pressure, controlling
the pressure switch to turn off by the pressure sensing and controlling device, when
the air pressure inside the container rises higher than the preset pressure, controlling
the pressure switch to turn on by the pressure sensing and controlling device. By
way of the above controlling method, the air pressure inside the container can be
ensured to be not lower than the preset pressure value, and so to ensure safety of
the container body.
[0031] The controlling circuit may be provided with the time delay relay 6 which is controlled
by the pressure sensing and controlling device and can delay the pressure switch 7
to turn on. The time delay relay 6 is connected in parallel to the pressure switch
7 and the compressor relay 1 connected in series. In this case, when the air pressure
inside the container drops to the preset pressure, the pressure sensing and controlling
device controls a contact of the time delay relay to disconnect; and when the air
pressure inside the container rises higher than the preset pressure, the pressure
sensing and controlling device controls the contact of the time delay relay to connect,
and the time delay relay 6 delays the pressure switch 7 to turn on. By way of the
above controlling method, the cooling system will stop operating for a period of time
after the air pressure inside the container drops to the preset pressure. Thereby
such a risk is prevented that the container is damaged due to the temperature inside
the container dropping and the air pressure rapidly dropping in the case that the
cooling system continuously operates.
[0032] The pressure sensing and controlling device comprises a controlling device and a
pressure sensor which is disposed inside the container. At this case, the air pressure
inside the container is detected by the pressure sensor, and the controlling device
acquires information of the air pressure inside the container from the pressure sensor
and transmits control signals. Furthermore, the pressure sensing and controlling device
can be a vacuum pressure switch.
1. A cooling device with a controlling circuit for a container, the controlling circuit
comprising a compressor relay, a condenser fan relay and an evaporator fan relay which
are connected in parallel, as well as a controller for controlling operating states
of the compressor relay, the condenser fan relay and the evaporator fan relay, the
controlling circuit further comprising:
a pressure switch which is connected to the compressor relay in series; and
a pressure sensing and controlling device which can control the pressure switch to
turn on or off,
wherein, when the air pressure inside the container drops to a preset pressure, the
pressure sensing and controlling device controls the pressure switch to turn off;
and when the air pressure inside the container rises higher than the preset pressure,
the pressure sensing and controlling device controls the pressure switch to turn on.
2. The cooling device for a reefer container according to claim 1, wherein the pressure
switch and the compressor relay connected in series are connected to the condenser
fan relay and the evaporator fan relay in parallel.
3. The cooling device for a reefer container according to claim 1, wherein the pressure
switch and the compressor relay connected in series are connected to the evaporator
fan relay in parallel, and the condenser fan relay is connected to the compressor
relay in parallel.
4. The cooling device for a reefer container according to claim 1, wherein the compressor
relay, the condenser fan relay and the evaporator fan relay connected in parallel
are connected to the pressure switch in series.
5. The cooling device for a reefer container according to one of claims 1-4, the controlling
circuit further comprises:
a time delay relay which is controlled by the pressure sensing and controlling device
and can delay the pressure switch to turn on, the time delay relay being connected
in parallel to the pressure switch and the compressor relay connected in series,
wherein, when the air pressure inside the container drops to the preset pressure,
the pressure sensing and controlling device controls a contact of the time delay relay
to disconnect; and when the air pressure inside the container rises higher than the
preset pressure, the pressure sensor controls the contact of the time delay relay
to connect, and the time delay relay delays the pressure switch to turn on.
6. The cooling device for a reefer container according to claim 5, wherein the pressure
sensing and controlling device is a vacuum pressure switch, and the vacuum pressure
switch is disposed inside the container.
7. The cooling device for a reefer container according to claim 5, wherein the pressure
sensing and controlling device comprising a controlling device and a pressure sensor
which is disposed inside the container, wherein the controlling device can acquire
information of the air pressure inside the container from the pressure sensor and
transmit control signals.
8. A method of controlling a cooling device with a controlling device for a reefer container,
the controlling circuit comprising a compressor relay, a condenser fan relay and an
evaporator fan relay which are connected in parallel, as well as a controller for
controlling operating states of the compressor relay, the condenser fan relay and
the evaporator fan relay, the controlling circuit further comprising a pressure switch
which is connected to the compressor relay in series and a pressure sensing and controlling
device which can control the pressure switch to turn on or off, the method comprising
the following steps:
a). detecting the air pressure inside the container by the pressure sensing and controlling
device;
b). when the air pressure inside the container drops to a preset pressure, controlling
the pressure switch to turn off by the pressure sensing and controlling device, and
when the air pressure inside the container rises higher than the preset pressure,
controlling the pressure switch to turn on by the pressure sensing and controlling
device.
9. The method of controlling a cooling device for a reefer container according to claim
8, wherein, the controlling circuit further comprises a time delay relay which is
controlled by the pressure sensing and controlling device and can delay the pressure
switch to turn on, and which is connected in parallel to the pressure switch and the
compressor relay connected in series,
wherein, at the step b), when the air pressure inside the container drops to the preset
pressure, controlling a contact of the time delay relay to disconnect by the pressure
sensing and controlling device, and when the air pressure inside the container rises
higher than the preset pressure, controlling the contact of the time delay relay to
connect by the pressure sensing and controlling device so that the time delay relay
6 is energized, and delaying the pressure switch to turn on by the time delay relay.
10. The method of controlling a cooling device for a reefer container according to claim
8, wherein the pressure sensing and controlling device comprises a controlling device
and a pressure sensor which is disposed inside the container,
wherein, at the step a), the air pressure inside the container is detected by the
pressure sensor, and the controlling device acquires information of the air pressure
inside the container from the pressure sensor and transmits control signals.