IP Library › Granted Patent US 11,554,630
Granted Patent B2
US 11,554,630 · App. 16/837,934 · Granted Jan 17, 2023

Vehicular air conditioner having heating heat exchanger disposed downstream of blower fan

Inventor: Kenichiro Maeda (Kariya, JP)
Assignee: DENSO CORPORATION
B60H1/00564B60H1/00021B60H1/00064B60H1/00285B60H1/00321B60H1/00521B60H1/00828B60H2001/00092B60H2001/00107B60H2001/00135
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Quick Facts
Patent No.
US 11,554,630
App. No.
16/837,934
Granted
Jan 17, 2023
Kind
B2
Abstract

A vehicular air conditioner includes a casing, a blower fan, and a heating heat exchanger that is disposed in the casing. The heating heat exchanger is disposed downstream of the blower fan. The blower fan is disposed to extend over a first outside air space, a second outside air space, a first inside air space, and a second inside air space. The rotational direction of the blower fan is set so that each of the plurality of blades of the blower fan passes through the first inside air space, the first outside air space, the second outside air space, and the second inside air space in this order when the plurality of blade are rotating.

Claims (34)

1. A vehicular air conditioner that conditions air in a vehicle cabin, the conditioner comprising:

a casing that defines an air passage through which air flows;

a blower fan that includes a plurality of blades arranged in a circumferential direction about a fan axis, the blower fan configured to generate an airflow in the air passage to be supplied to the vehicle cabin by rotating the plurality of blades about the fan axis in a rotational direction; and

a heating heat exchanger that is disposed in the casing to heat the air flowing through the air passage, wherein

the air passage is divided into an outside air passage through which outside air from outside of the vehicle cabin flows and an inside air passage through which inside air in the vehicle cabin circulates,

the heating heat exchanger is disposed downstream of the blower fan in the casing,

the outside air passage includes a first outside air space through which the outside air is guided to a driver seat in the vehicle cabin and a second outside air space through which the outside air is guided to a passenger seat in the vehicle cabin,

the inside air passage includes a first inside air space through which the inside air is guided to the driver seat in the vehicle cabin and a second inside air space through which the inside air is guided to the passenger seat in the vehicle cabin,

the blower fan is disposed to extend over the first outside air space, the second outside air space, the first inside air space, and the second inside air space, and

the rotational direction of the blower fan is set so that each of the plurality of blades of the blower fan passes through the first inside air space, the first outside air space, the second outside air space, and the second inside air space in this order when the plurality of blades are rotating.

2. The vehicular air conditioner according to claim 1 , further comprising

an airflow adjuster that is disposed downstream of the blower fan in the casing, wherein

the airflow adjuster is configured to adjust a flow of the air blown from the blower fan so that a velocity component of the air in the rotational direction of the blower fan is reduced.

3. The vehicular air conditioner according to claim 2 , wherein

the outside air passage includes, at a position downstream of the blower fan, an outside air heating passage through which the air blown from the blower fan flows toward the heating heat exchanger and an outside air bypass passage through which the air blown from the blower fan bypasses the heating heat exchanger,

the inside air passage includes, at a position downstream of the blower fan, an inside air heating passage through which the air blown from the blower fan flows toward the heating heat exchanger and an inside air bypass passage through which the air blown from the blower fan bypasses the heating heat exchanger, and

the airflow adjuster is configured to adjust at least a flow of air flowing through the outside air bypass passage and a flow of air flowing through the inside air bypass passage.

4. The vehicular air conditioner according to claim 2 , wherein

the airflow adjuster is disposed between the blower fan and the heating heat exchanger.

5. The vehicular air conditioner according to claim 1 , wherein

the heating heat exchanger includes a heating medium circulation portion through which a heating medium for heating the air flows and a heat transfer promoting portion that promotes heat exchange between the air and the heating medium,

the heating medium circulation portion and the heat transfer promoting portion define a plurality of heat exchange channels between the heating medium circulation portion and the heat transfer promoting portion, and

the vehicular air conditioner is operable such that the flow of the air blown from the blower fan is adjusted when the air flows through the plurality of heat exchange channels so that a velocity component of the air in the rotational direction of the blower fan is reduced.

6. The vehicular air conditioner according to claim 1 , further comprising:

an inlet-side partition that is disposed upstream of the blower fan in the casing and that separates the outside air passage from the inside air passage; and

an outlet-side partition that is disposed downstream of the blower fan in the casing and that separates the outside air passage from the inside air passage, wherein

the outlet-side partition includes an outlet-side inner/outer partition portion that separates the first inside air space from the first outside air space,

the inlet-side partition includes an inlet-side inner/outer partition portion that separates the first inside air space from the first outside air space, and

the outlet-side inner/outer partition portion is located at an advancing position in the rotational direction of the blower fan relative to the inlet-side inner/outer partition portion.

7. The vehicular air conditioner according to claim 6 , wherein

the outlet-side partition includes an outlet-side outer/inner partition portion that separates the second outside air space from the second inside air space,

the inlet-side partition includes an inlet-side outer/inner partition portion that separates the second outside air space from the first inside air space,

the outlet-side outer/inner partition portion is located at an advancing position in the rotational direction of the blower fan relative to the inlet-side outer/inner partition portion, and

the outlet-side outer/inner partition portion and the inlet-side outer/inner partition portion form a relative angle in the rotational direction of the blower fan that is smaller than a relative angle in the rotational direction of the blower fan formed between the outlet-side inner/outer partition portion and the inlet-side inner/outer partition portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2020
From: MAEDA, KENICHIRO
To: DENSO CORPORATION
Reel/Frame 052290/0289 →
Priority Claims (1)
JP JP2017-203685 · Oct 20, 2017 · national
Continuity (2)
Continuation PCTJP2018035983 · Sep 27, 2018
Related Publication 20200223282A1 · Jul 16, 2020
Cited By (1)
US 12,697,853