Compartment air-conditioning apparatus, refrigeration apparatus, and transport container
An inside air control apparatus includes a composition adjuster. Outside air flowing in a first inflow path and inside air flowing in a second inflow path flow into the composition adjuster as the air to be treated. The composition adjuster separates the air to be treated into first air and second air. The first air flows into a first outflow path. The second air flows into a second outflow path. An outlet switching mechanism changes the destinations of the first air and the second air.
1 . An inside air control apparatus for adjusting a composition of inside air in a storage, comprising:
a composition adjuster configured to separate inflow air to be treated into first air and second air having different compositions;
a first inflow path in which outside air outside the storage flows toward the composition adjuster;
a second inflow path in which the inside air flows toward the composition adjuster;
a first outflow path in which the first air having flowed out from the composition adjuster flows;
a second outflow path in which the second air having flowed out from the composition adjuster flows; and
an outlet switching valve mechanism configured to switch between a state where the first outflow path communicates with an inside of the storage and the second outflow path communicates with an outside of the storage and a state where the second outflow path communicates with the inside of the storage and the first outflow path communicates with the outside of the storage, wherein
the composition adjuster separates the air to be treated into the first air having a nitrogen concentration higher than that of the air to be treated and an oxygen concentration lower than that of the air to be treated and the second air having a nitrogen concentration lower than that of the air to be treated and an oxygen concentration higher than that of the air to be treated.
2 . The inside air control apparatus of claim 1 , further comprising:
an air supply configured to send, to the composition adjuster, air sucked in from the first inflow path and the second inflow path.
3 . The inside air control apparatus of claim 1 , further comprising:
a first valve provided on the first inflow path; and
a second valve provided on the second inflow path.
4 . The inside air control apparatus of claim 3 , further comprising:
a controller configured to control the first valve and the second valve to switch among a state where the first valve is in an open state and the second valve is in a closed state, a state where the first valve is a closed state and the second valve is in an open state, and a state where the first valve and the second valve are in an open state.
5 . The inside air control apparatus of claim 3 , wherein
each of the first valve and the second valve is a control valve having a variable opening degree.
6 . The inside air control apparatus of claim 1 , further comprising:
an inlet switching valve mechanism configured to switch among a state where the composition adjuster communicates with the first inflow path and is disconnected from the second inflow path, a state where the composition adjuster communicates with the second inflow path and is disconnected from the first inflow path, and a state where the composition adjuster communicates with the first inflow path and the second inflow path.
7 . The inside air control apparatus of claim 1 , further comprising:
a switching mechanism configured to switch between a state where the inside air is sent to the second inflow path and a state where the inside air is discharged to the outside of the storage.
8 . The inside air control apparatus of claim 7 , further comprising:
an inside air flow path having ends, one of which communicates with the inside of the storage; and
an exhaust flow path having ends, one of which communicates with the outside of the storage,
wherein
the switching mechanism is a three-way valve connected to the second inflow path, the inside air flow path, and the exhaust flow path, and switching between a state where the inside air flow path communicates with the second inflow path and a state where the inside air flow path communicates with the exhaust flow path.
9 . A refrigeration apparatus comprising:
the inside air control apparatus of claim 1 ; and
a refrigerant circuit configured to perform a refrigeration cycle to adjust an internal temperature of the storage.
10 . A transport container comprising:
the refrigeration apparatus of claim 9 ; and
a container body provided with the refrigeration apparatus and serving as the storage.