SYSTEM AND METHOD TO CREATE INDOOR THERMAL ENVIRONMENT BASED ON IJV AND DPV
20230213224 · 2023-07-06
Inventors
- BIN YANG (TIANJIN, CN)
- PENGJU LIU (TIANJIN, CN)
- YIHANG LIU (TIANJIN, CN)
- BINGAN PAN (TIANJIN, CN)
- PENGFEI YANG (TIANJIN, CN)
- DACHENG JIN (TIANJIN, CN)
Cpc classification
F24F13/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F7/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A system and a method are provided to create an indoor thermal environment based on impinging jet ventilation (IJV) and ductless personalized ventilation (DPV), the system includes an IJV duct installed on a wall of a room and a DPV device installed on a table. An air inlet of the IJV duct is connected to an air conditioning system and an air outlet of the IJV duct is close to ground. An upper duct and a lower duct of the DPV device are disposed on two opposite sides of a tabletop, the upper duct is provided with an air supply panel, the lower duct is provided with a duct fan with an air supply volume being adjustable, and the duct fan is configured to send air absorbed from a ground air lake to a user’s face area through the air supply panel of the upper duct.
Claims
1. A system to create an indoor thermal environment based on ductless personalized ventilation (DPV) and impinging jet ventilation (IJV), comprising: an IJV duct and a DPV device; wherein the IJV duct is installed on a wall of a room, an air inlet of the IJV duct is connected to an air supply duct of an air conditioning system, an air outlet of the IJV duct is close to ground, the DPV device is installed on a table, and the DPV device comprises: an upper duct and a lower duct, disposed on two opposite sides of a tabletop respectively; an air supply panel, disposed on an outlet of the upper duct; and a duct fan, disposed in the lower duct, wherein an air supply volume of the duct fan is adjustable, and the duct fan is configured to send air absorbed from a ground air lake to a user’s face area through the air supply panel of the upper duct.
2. The system to create the indoor thermal environment based on IJV and DPV according to claim 1, wherein the DPV device further comprises: a flexible duct, connected the air supply panel with the outlet of the upper duct, and configured to adjust an air supply angle of the air supply panel.
3. The system to create the indoor thermal environment based on IJV and DPV according to claim 1, wherein the air supply panel is a circular plate with a diameter in a range of 0.1 m to 0.15 m, and the air supply panel are evenly distributed with holes.
4. The system to create the indoor thermal environment based on IJV and DPV according to claim 1, wherein a lowest end of the lower duct is provided with an air suction inlet, the DPV device further comprises: a filter layer, and the filter layer and the duct fan are provided in the lower duct from top to bottom in sequential order.
5. The system to create the indoor thermal environment based on IJV and DPV according to claim 1, wherein an air volume of the duct fan is in a range of 80 m.sup.3/h to 120 m.sup.3/h.
6. The system to create the indoor thermal environment based on IJV and DPV according to claim 4, wherein the tabletop is provided with a switch, the switch is electrically connected to the duct fan and configured to control an air supply volume of the air supply panel.
7. The system to create the indoor thermal environment based on IJV and DPV according to claim 1, wherein outer walls of the upper duct and the lower duct are wrapped with heat preservation cotton respectively.
8. The system to create the indoor thermal environment based on IJV and DPV according to claim 1, wherein each of lengths of the upper duct and the lower duct is adjustable, and a distance between a bottom end of the lower duct and a bottom surface is in a range of 0.1 m to 0.2 m.
9. The system to create the indoor thermal environment based on IJV and DPV according to claim 1, wherein a length of the upper duct is 0.4 m, and a length of the lower duct is 0.6 m.
10. A method for using the system to create the indoor thermal environment based on IJV and DPV according to claim 1, comprising: sending the air from the air supply duct of the air conditioning system out from the air outlet of the IJV duct, and the air diffusing on the ground after touching the ground; adjusting the air supply volume of the duct fan disposed in the lower duct of the DPV device; and starting the duct fan to make the air near the ground enter the upper duct through the lower duct and to the user’s face area.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
DESCRIPTION OF REFERENCE NUMERALS
[0031] 1-IJVduct, 2-air supply panel, 3-flexible duct, 4-upper duct, 5-heat preservation cotton, 6-lower duct, 7-filter layer, 8-duct fan, 9-air suction inlet, 10-switch, 11-tabletop.
DETAILED DESCRIPTION OF EMBODIMENTS
[0032] The disclosure is further described in detail below in combination with the attached drawings and embodiments.
[0033] As shown in
[0034] The system of the disclosure includes an IJV duct 1 and a DPV device, the DPV device is fixed on a table, the IJV duct 1 is installed on a wall of a room, common installation methods of the IJV duct include the IJV duct being installed on a center of a wall or a corner of a wall, an upper air inlet of the IJV duct 1 is connected to an air supply duct of an air conditioning, a lower part of the IJV duct is an air outlet, a diameter of the IJV duct 1 is 0.25 m, and a distance between the air outlet and ground is in a range of 0.3 m to 1 m, in an embodiment, the distance is 0.4 m.
[0035] The DPV device includes an air supply panel 2, a flexible duct 3, an upper duct 4, heat preservation cotton 5, a lower duct 6, a filter layer 7, a duct fan 8 and an air suction inlet 9, there is a mounting hole on a tabletop 11, the mounting hole is disposed on the table far away from a seat for a user, some details of the DPV device are shown in
[0036] In an illustrated embodiment, as shown in
[0037] In an illustrated embodiment, a length of the lower duct 6 can be adjusted with a height of the tabletop 11, which is to keep a distance between a bottom of the lower duct 6 and ground be in a range of 0.1 m to 0.2 m. The disclosure is designed based on a height of a regular table, and in an embodiment, the length of the lower duct 6 here can be 0.6 m.
[0038] In an illustrated embodiment, the filter layer 7 includes activated carbon, which is configured to absorb odors of air passing through the duct.
[0039] In an illustrated embodiment, as shown in
[0040] In an illustrated embodiment, the tabletop 11 is provided with a switch 10, the switch 10 is electrically connected to the duct fan 8 to adjust an air suction volume of the duct fan 8, and thereby adjust an air supply volume of the air supply panel 2. The switch 10 has three gears. The Air volume of gear I is 5 L/s, the air volume of gear II is 10 L/s, and the air volume of gear III is 15 L/s.
[0041] In an illustrated embodiment, as shown in
[0042] The DPV device can also be used in winter. However, a difference from summer, a temperature distribution of a stratified air conditioner is hot at a bottom and cold at a top. In order to ensure the work efficiency of a user, the heat demand of the user is usually hot at a bottom and slightly cool at a head. Therefore, an effect of using the device in summer is more obvious.
[0043] In an illustrated embodiment, in a typical office which length × width × height is 5 m × 3 m × 3 m. Setting parameters of an IJV air conditioner are set that an air supply temperature is 22° C. and an air supply speed is 1.5 m/s. An air supply parameter for specific applications can be determined according to indoor load. A typical table is connected to the DPV device, the typical table has a size which length × width × height is 1.2 m × 0.6 m × 0.75 m. Some arrows in
[0044]
[0045]
[0046] The disclosure provides a method for using the system to create an indoor thermal environment based on IJV and DPV, including: [0047] 1. turning on an IJV background air conditioner in a typical manned office, sending cold air from the air outlet of the IJV duct 1, and the cold air diffusing on the ground after touching the ground; [0048] 2. a user who at a station can adjust the air suction volume of the duct fan 8 to a required gear by adjusting the switch 10 according to his own thermal state; [0049] 3. starting the duct fan 8, and the cold air near the ground is sucked into the lower duct 6 of the DPV device through the air suction inlet 9; [0050] 4. when the cold air passes through the filter layer 7, odors of the air are adsorbed by activated carbon in the filter layer, and the pollutants are also removed by the filter layer, thereby obtaining cleaner cold air; and [0051] 5. the clean cold air enters the upper duct 4 and is sent to the user’s breathing area through the holes of the air supply panel 2. At the same time, the user can adjust the air supply direction of the air supply panel 2 to a suitable direction through the flexible duct 3 according to their own needs. The cold air sent to the user’s breathing area can reduce a head temperature of the user and improve his thermal comfort.