FIELD OF THE INVENTION
[0001] The present invention relates to an air conditioner, particularly relates to a movable
air conditioner that is capable of discharging condensed water without manual operation.
[0002] The present invention still relates to a control method for discharging condensed
water from a movable air conditioner.
BACKGROUND OF THE INVENTION
[0003] During the cooling operation of a movable air conditioner, if the temperature of
the evaporator surface is lower than the room temperature, humidity will be condensed
out of the evaporator. There are two major methods used for discharging condensed
water from a movable air conditioner in the market: one is directly collecting the
condensed water into a water tank. Due to a limited volume, frequently, the water
tank has to be emptied manually when it is full so that the water tank can be used
again; typically, it takes one to two hours to fill up the water tank in a water condensing
condition, it is very inconvenient during night time. Another method is to install
a disposal for condensed water, which is generated from the evaporator and directed
to the water tank after flowing over the condenser through a spray; the condensed
water can then be extracted to the spray by a pump and circulate the spray all over
again, some of the condensed water is evaporated on the evaporator and discharged
to outdoor by an exhaust pipe. This operation extends the fill up time of a water
tank, however, the condensed water is generated faster than the exhaustion rate during
water condensing condition, the water tank will eventually be full and require manual
operation to empty it; the typical fill up time is two to four hours.
SUMMARY
[0004] It is an object of the present invention to provide a movable air conditioner capable
of discharging condensed water without manual operation by adjusting the air flow
over condenser. It is to adjust the condensing temperature based on the water volume
of the water tank to change the circulating air of the air conditioner condenser;
therefore, the condensed water discharge rate is controlled, and the water tank will
not be full, manual operation is not necessary.
[0005] It is another object of the present invention to provide a control method for discharging
condensed water from the movable air conditioner.
[0006] The air conditioner of the present invention includes a cooling system, a spray system,
and a fan system, wherein the cooling system includes a compressor, an evaporator,
throttle member, and a condenser that all connected together in a certain order, the
spray system includes a water tank, a pump pumping water from the water tank to the
condenser and a water level regulator that controls the operation of the pump, the
fan system includes a fan, a motor for adjusting the speed of the fan and a exhaust
pipe connected to the condenser; the present invention also employs an electronic
control system that controls the blast of the condenser and the operation of the pump.
[0007] When the condensed water of the evaporator flows to the condenser, the cooling efficiency
of the condenser is enhanced. Due to high blast temperature of the compressor and
the high cooling temperature of the condenser, some of the condensed water is evaporated
and discharged outdoors by the exhaust pipe, and the rest will flow into the water
tank.
[0008] The control method of discharging condensed water from a movable air conditioner
of the present invention includes the followings.
[0009] When the water tank reaches the predetermined water level for spraying, the water
level regulator activates the pump to pump water from the water tank to the condenser
for circulation.
[0010] When the water tank reaches the predetermined water level for draining, or the water
level continues to be higher than the level for spraying for a predetermined amount
of time, the water level regulator will signal the electronic control system, which
will get into a stage of strong draining mode. That is the electronic control system
activating the pump for spray circulation, and lowering the air intake of the condenser,
raising the condensing temperature of the cooling system, and therefore raising the
evaporation and exhaustion speed of the condensed water.
[0011] Typically, the air intake of the condenser under strong draining mode is about 40%
to 80% of the air intake of the normal operation, and the condensing temperature is
5 to 20°C higher than normal operation.
[0012] Usually, it is unable to reach sufficient discharging speed for the condensed water
if the increase of condensing temperature is too small, and it will burden the system
and wear out the protection and plastic members of the system if the increase of condensing
temperature is too big. When the discharging speed of the condensed water is higher
than the producing rate, the condensed water will be continuously evaporated and drained
outdoor by the exhaust pipe, the water level of the water tank will decrease. When
the water level of the water tank is lower than the water level of the spray, the
system turns into a normal operation mode. Hence, the water tank of the present invention
will not be full, manual operation is not required.
[0013] When the condenser and evaporator use a fan and motor, and a exhaust valve by the
electronic control system is set up at the air intake channel of the condenser and
the air intake channel of the evaporator, the indoor air after being extracted into
the movable air conditioner is divided into two directions, one enters evaporator
wind channel and later discharged indoor for cooling after exchanging heat with the
evaporator, another enters condenser wind channel and later discharged outdoor after
exchanging heat with the condenser. Based on the above described condensed water discharging
method, the electronic control system controls the exhaust valve to decrease the air
intake of the condenser and increase the air intake of the evaporator, and thereby
controls the discharge speed of the condensed water. When the movable air conditioner
employs a dual shaft motor to drive two independent condenser fan and evaporator fan,
the wind channel systems of the condenser and evaporator are independent as well,
the electronic control system controls the exhaust valve to decrease the air intake
of the condenser and increase the air intake of the evaporator, and thereby controls
the discharge speed of the condensed water.
[0014] When the condenser and evaporator use independent fan motor respectively, the condenser
fan motor is controlled by the electronic control system, based on the above described
condensed water discharging method, the electronic control system raises the condensing
temperature by lowering the turning speed of the condenser fan motor so as to control
the discharging speed of the condensed water. Typically, the turning speed of the
condenser fan motor at the strong drainage mode is 40% ~ 80% of the turning speed
at the normal operation mode.
[0015] The condenser is provided under the evaporator; condensed water generated by the
evaporator will flow downward to the condenser, and the heat exchange efficiency of
the condenser can be improved.
[0016] There is a spray container between the evaporator and the condenser; after the condensed
water generated by the evaporator flowing into the spray container, the condensed
water is distributed evenly by the spray container, then flows to the condenser. When
the pump activates the spraying, the water in the water tank is pumped into the spray
container first for even distribution before flowing into the condenser.
[0017] The advantages of the present invention:
- 1. The movable air conditioner will never have a water full problem due to the control
of the discharge speed of the condensed water; no need for manual operation to clear
the condensed water.
- 2. By utilizing the condensed water spray system, the heat exchange efficiency is
increased and the operation power is decreased.
DESCRIPTION OF THE DRAWINGS
[0018] The present invention can be further described in details by combining the following
attached drawings with the preferred embodiments:
Figure 1 illustrates the structural diagram of the preferred embodiment 1;
Figure 2 illustrates the structural diagram showing the condensed water discharge
system of the present invention;
Figure 3 illustrates the structural diagram showing the condensed water discharge
system of the present invention;
Figure 4 illustrates a schematic diagram showing the control principle of the preferred
embodiment 1;
Figure 5 illustrates a structural diagram of the preferred embodiment 2; and
Figure 6 illustrates a schematic diagram showing the control principle of the preferred
embodiment 2.
DETAILED DESCRIPTION OF THE INVENTION
Preferred embodiment 1
[0019] As shown in Figure 1, the present invention is related to a duo wind pipe movable
air conditioner with foot wheels 113; a condenser 105 and an evaporator 111 of the
movable air conditioner respectively employ an independent fan motor, which is controlled
by an electronic control system 112. A compressor 114, the condenser 105, a throttle
member 103, and the evaporator 111 connected in order make up the cooling system of
the movable air conditioner, supplying chilled air for the system. An electronic control
system 112 is an electrical system, which provides safe, efficient, and economical
control. A spray container 109, a middle separation board 110, a water tank 102, a
pump 101 that pumps water to the condenser 105, a water level regulator 114, and an
drainage pipe 108 make up the condensed water spray system.
[0020] The movable air conditioner extracts outdoor air into the condenser 105 by a blast
pipe 116, the air is then discharged outdoor by an exhaust pipe 115. As shown in Figures
2-3, condensed water generated by the evaporator 111 flows into the spray container
109 through the middle separation board 110, and flows onto the condenser 105 for
evaporation, the evaporated condensed water will be discharged outdoor as air discharged
from the condenser 105 by the exhaust pipe 115, the rest of the condensed water will
flow downward from the condenser to the water tank 102.
[0021] According to the control method depicted in Figure 4, when the water tank 102 reaches
the predetermined water level for spraying, the water level regulator 114 activates
the pump 101 to pump condensed water from the water tank 102 to the spray container
109 by the drainage pipe 108 and to the condenser 105 for evaporating circulation,
and later discharged outdoor as air discharged from the condenser 105 by the exhaust
pipe 115. If the water level of the water tank 102 continues to remain higher than
the predetermined water level for spraying (about 10 ~ 20 minutes), the system enters
into a strong drainage mode operation. The electronic control system 112 will lower
the resolution of the motor 107 to about 60% of the normal operation in order to raise
the condensing temperature approximate 10°C while activating the pump device 101 for
spraying, thereby accelerate the evaporating and draining speed. The water level of
the water tank 102 decreases little by little, when the water level is lower than
the predetermined spray water level, the system exits the strong drainage mode and
enters into a normal operation mode; the motor 107 will recover to normal operation.
Preferred embodiment 2:
[0022] As shown in Figure 5, the cooling circulation mechanism is comprised of a compressor
202, a condenser 208, a throttle member 201, and an evaporator 214 to provide cooling
for the system, the electronic control system 206 is an electrical system, which operates
safely, efficiently, and economically for the movable air conditioner.
[0023] The movable air conditioner condenser 208 and evaporator 214 share a common motor
and fan 207, the indoor air after being extracted into the movable air conditioner
will be distributed by the exhaust valve 209 and respectively enters a condenser duct
210 and an evaporator duct 212 separated by a partition 218; the indoor air entering
into the evaporator duct 212 exchanges heat with the evaporator 214 and is discharged
indoor by an exhaust outlet 215 for cooling afterwards, the indoor air entering into
the condenser duct 210 exchanges heat with the condenser 208 and is discharged outdoor
by the exhaust pipe 213 afterwards.
[0024] The condensed water spray system is comprised of a spray container 211, a water tank
216, a pump device 203, drainage pipe 205, a water level regulator 204 and a water
plate 217. The condensed water generated by the evaporator 214 will flow downward
to the condenser 208 and evaporate during the flow; the evaporated condensed water
will be discharged outdoor as air discharged from the condenser 208 by the exhaust
pipe 213. The rest of the condensed water will flow downward from the condenser and
be collected by the water plate 217 first then into the water tank 216.
[0025] Referring to the control scheme shown in Figure 6, when the water level of the spray
reaches the predetermined water level, the water level regulator 204 will activate
the pump device 203 to pump the condensed water of the water tank 216 from the drainage
pipe 205 to the spray container 211, and spray the water onto the condenser 208 to
circulate for evaporating, and later discharged to the outdoor as air from the condenser
208 by the exhaust pipe 213.
[0026] When the water level of the water tank 216 reaches the predetermined draining water
level, the water level regulator 204 will signal the electronic control system 206,
and enter the strong drainage mode, the electronic control system 206 will decrease
the air intake of the condenser and increase the air intake of the evaporator while
activating the pump 203 for circulation spray by controlling the exhaust valve 209,
the condenser air intake decrease is about 60% of the normal operation, thereby the
condensing temperature of the condenser 208 increases about 10°C, and the evaporation
and discharge speed of the condensed water increase. After the water level of the
water tank 216 is under the normal water level, the water level regulator 204 will
signal the electronic control system 206, cease the strong drainage mode and enter
into a normal operation mode. The water level of the water tank 216 decreases gradually;
the system will exist the strong drainage mode and get into the normal operation mode
when the water level is lower than the predetermined spray water level, the exhaust
valve 209 return to normal open.
1. A movable air conditioner comprises a cooling system, a spray system, a fan system,
the cooling system including a compressor, an evaporator, a throttle member and a
condenser organized in a certain order; the spray system including a water tank, a
pump that pumps water from the water tank to the condenser, and a water level regulator
that controls the pump operation; and the fan system including a fan, a motor, and
an exhaust pipe connected to the condenser; the movable air conditioner is characterized in that an electronic control system is set up for controlling the air intake of the condenser
and the pump activation.
2. The movable air conditioner as claimed in claim 1 is characterized in that the condenser and the evaporator share a fan motor, and an exhaust valve controlled
by the electronic control system is provided at the air intake opening of the condenser
wind channel and the air intake opening of the evaporator wind channel.
3. The movable air conditioner as claimed in claim 1 is characterized in that the condenser and the evaporator respectively employ independent fan motors, and
the condenser fan motor speed is controlled by the electronic control system.
4. The movable air conditioner as claimed in claim 1 or claim 2 or claim 3 is characterized in that the condenser is under the evaporator.
5. The movable air conditioner as claimed in claim 4 is characterized in that a spray container provided between the condenser and the evaporator.
6. The movable air conditioner as claimed in claim 1, wherein the condensed water discharging
method characterizes including
--- when the water level of the water tank reaches the predetermined spray level the,
the water level regulator activates the pump to pump water from the water tank to
the condenser for circulation;
--- when the water level of the water tank reaches the predetermined drainage level,
or the water level remains higher than the predetermined spray level for a predetermined
amount of time, the water level regulator signals the electronic control system, accordingly
the air conditioner enters into a strong drainage mode, the electronic control system
activates the pump for spraying circulation, and decreases the air intake of the condenser
to evaporate or discharge the condensed water.
7. The movable air conditioner as claimed in claim 6, wherein the condensed water discharging
method is characterized in that under the strong drainage mode, the air intake of the condenser is 40% ~ 80% of the
air intake under normal operation, and the condensing temperature is 5 - 20°C higher
than normal operation.