Kitchen bay window capable of installing cooking bench and kitchen cooking bench installation system

By increasing the distance between cantilevered units and setting up an operating platform in the kitchen bay window, the space of the kitchen bay window is utilized efficiently, the countertop area is increased, and the problem of low kitchen utilization efficiency in high-rise residential buildings is solved.

CN224186911UActive Publication Date: 2026-05-01SHANGHAI YOUAN ARCHITECTURAL DESIGN OFFICE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI YOUAN ARCHITECTURAL DESIGN OFFICE CO LTD
Filing Date
2025-04-28
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The utilization efficiency of existing kitchen bay windows is low, especially in high-rise residential buildings, where the bay window space is not fully utilized, resulting in insufficient kitchen countertop length and inconvenience.

Method used

Design a kitchen bay window system that can accommodate a stovetop. By increasing the distance between the first cantilever unit and the opening unit, an active smoke exhaust device can be installed between the opening unit and the enclosure unit. An operating platform is set above the second cantilever unit to increase the countertop space by utilizing the bay window space.

Benefits of technology

It effectively utilizes the space of the kitchen bay window, increases the countertop area, solves the problem of low utilization efficiency of existing kitchen bay windows, and improves the efficiency of kitchen use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a kitchen bay window capable of installing a cooking bench and a kitchen cooking bench installation system. The kitchen bay window comprises a hole unit, a first overhanging unit, a second overhanging unit, an enclosure unit, a window unit and a gas emission unit. The hole unit is arranged on a building exterior wall; the first cantilever unit is arranged above the hole unit; the second cantilever unit is arranged at the bottom of the hole unit, and the outer end of the second cantilever unit and the outer end of the first cantilever unit are coplanar; the enclosure unit is arranged between the first cantilever unit and the second cantilever unit and located on the outer side of the hole unit. The window unit is arranged in the enclosure unit; and the gas discharge unit is arranged at the side part of the hole unit. The kitchen bay window has the advantages that by increasing the distance between the first overhanging unit and the hole unit, the active smoke exhaust device can be installed between the hole unit and the enclosure unit, and the problems that an existing kitchen bay window is low in use efficiency and the like are solved.
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Description

A kitchen bay window with a stove installed and a kitchen stove installation system Technical Field

[0001] This utility model relates to the field of residential building design technology, and in particular to a kitchen bay window with a stove that can be installed and a kitchen stove installation system. Background Technology

[0002] In residential buildings, bay windows can increase the usable indoor area without increasing the floor space. They are typically installed in living spaces such as bedrooms and living rooms.

[0003] In order to increase the usable area of ​​the living room, most high-rise apartment buildings have small kitchens, and the sink and stove are often set up separately, which reduces the length of the kitchen countertop and makes it inconvenient for residents to use.

[0004] Some high-rise residential buildings now also have bay windows in their kitchens to increase the usable indoor area. However, since the height of the bay window is lower than the height of the indoor ceiling, the space in the bay window is only used as storage space or a sink is installed on the bay window, which is not very efficient.

[0005] Currently, no effective solutions have been proposed to address the issues of low utilization efficiency of existing kitchen bay windows in related technologies. Summary of the Invention

[0006] The purpose of this utility model is to address the shortcomings of existing technologies by providing a kitchen bay window with a stove and a kitchen stove installation system, thereby solving problems such as the low utilization efficiency of existing kitchen bay windows.

[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0008] Firstly, a kitchen bay window with a stovetop can be installed is provided, including:

[0009] An opening unit, wherein the opening unit is disposed on the exterior wall of the building;

[0010] The first cantilever unit is located above the opening unit and is connected to the building's exterior wall;

[0011] The second cantilever unit is located at the bottom of the opening unit and connected to the building's exterior wall. The top surface of the second cantilever unit is coplanar with the bottom surface of the opening unit, and the outer end of the second cantilever unit is coplanar with the outer end of the first cantilever unit.

[0012] The enclosure unit is disposed between the first cantilever unit and the second cantilever unit, and is located outside the opening unit. The outer surface of the enclosure unit is coplanar with the outer end of the first cantilever unit and the outer end of the second cantilever unit.

[0013] A window unit is disposed inside the enclosure unit, the top surface of the window unit is coplanar with the top surface of the opening unit, and the bottom surface of the window unit is higher than the bottom surface of the opening unit;

[0014] A gas emission unit is provided on the outside of the building's exterior wall and is connected to the end of the first cantilever unit, the end of the second cantilever unit, and the end of the enclosure unit, respectively. The outer surface of the gas emission unit is coplanar with the outer end of the first cantilever unit and is used for smoke exhaust.

[0015] In some embodiments, the opening unit includes:

[0016] The first opening element is disposed on the exterior wall of the building. The top surface of the first opening element is coplanar with the top surface of the window unit, and the bottom surface of the first opening element is lower than the bottom surface of the window unit.

[0017] In some embodiments, the first cantilever unit includes:

[0018] The first cantilever element is disposed above the opening unit and connected to the building exterior wall. The outer end of the first cantilever element is connected to the top of the enclosure unit. The outer end of the first cantilever element is coplanar with the outer end of the second cantilever unit.

[0019] A drainage element is disposed on top of the first cantilever element for draining water.

[0020] In some embodiments, the second cantilever unit includes:

[0021] The second cantilever element is disposed at the bottom of the opening unit and connected to the building exterior wall. The top surface of the second cantilever element is coplanar with the bottom surface of the opening unit, and the outer end of the second cantilever element is coplanar with the outer end of the first cantilever unit.

[0022] A waterproof element is disposed on the lower side of the outer end of the second cantilever element to prevent liquid from flowing towards the building's exterior wall.

[0023] In some embodiments, the enclosure unit includes:

[0024] The enclosure element is disposed between the first cantilever unit and the second cantilever unit and is located outside the opening unit. The end of the enclosure element is connected to the gas emission unit, and the outer surface of the enclosure element is coplanar with the outer end of the first cantilever unit and the outer end of the second cantilever unit.

[0025] The second opening element is disposed on the enclosure element. The top surface of the second opening element is coplanar with the top surface of the opening unit. The bottom surface of the second opening element is higher than the top surface of the opening unit. The window unit is disposed inside the second opening element.

[0026] In some embodiments, the gas emission unit includes:

[0027] A gas emission element is disposed on the outside of the building's exterior wall and connected to the end of the first cantilever unit, the end of the second cantilever unit, and the end of the enclosure unit, respectively. The outer surface of the gas emission element is coplanar with the outer end of the first cantilever unit and is used for smoke exhaust.

[0028] A connecting element is disposed on the side of the gas emission element and communicates with the active smoke exhaust device. The bottom end of the connecting element is set higher than the top surface of the opening unit.

[0029] In some of these embodiments, it also includes:

[0030] A shielding unit is disposed between the first cantilever unit and another second cantilever unit for decorative shielding.

[0031] Secondly, a kitchen stove installation system is provided, including:

[0032] As mentioned in the first aspect, the kitchen bay window;

[0033] An operating platform is provided above the second cantilever unit of the kitchen bay window and connected to the inner side of the enclosure unit of the kitchen bay window. The top surface of the operating platform is lower than the bottom surface of the window unit of the kitchen bay window.

[0034] An active smoke exhaust device is installed above the operating platform and below the first cantilever unit of the kitchen bay window, and is connected to the gas emission unit of the kitchen bay window to remove cooking fumes.

[0035] In some embodiments, the operating platform includes:

[0036] A platform unit is disposed above the second cantilever unit and connected to the inner side of the enclosure unit. The top surface of the platform unit is lower than the bottom surface of the window unit.

[0037] The stove unit is located on the platform unit, and the active smoke exhaust device is located above the stove unit.

[0038] In some of these embodiments, it also includes:

[0039] A decorative structure is disposed below the first cantilever unit and connected to the enclosure unit, for concealing the active smoke exhaust device.

[0040] The present invention adopts the above technical solution and has the following technical effects compared with the prior art:

[0041] This utility model discloses a kitchen bay window and kitchen stove installation system that can install a stove. By increasing the distance between the first cantilever unit and the opening unit, the active smoke exhaust device can be installed between the opening unit and the enclosure unit. At the same time, an operating platform can be set above the second cantilever unit, thereby effectively utilizing the bay window space of the kitchen, increasing the kitchen countertop area, and solving the problem of low utilization efficiency of existing kitchen bay windows. Attached Figure Description

[0042] Figure 1 is a schematic diagram (a) of a kitchen bay window according to an embodiment of the present utility model;

[0043] Figure 2 is a schematic diagram of the opening unit according to an embodiment of the present utility model;

[0044] Figure 3 is a schematic diagram of the first cantilever unit according to an embodiment of the present utility model;

[0045] Figure 4 is a schematic diagram of the second cantilever unit according to an embodiment of the present utility model;

[0046] Figure 5 is a schematic diagram of the enclosure unit according to an embodiment of the present utility model;

[0047] Figure 6 is a schematic diagram of a gas emission unit according to an embodiment of the present invention;

[0048] Figure 7 is a schematic diagram (II) of a kitchen bay window according to an embodiment of the present utility model;

[0049] Figure 8 is a schematic diagram of a kitchen stove installation system according to an embodiment of the present utility model.

[0050] The attached diagram is labeled as: 100, kitchen bay window;

[0051] 110. Opening unit; 111. First opening element;

[0052] 120. First cantilever unit; 121. First cantilever element; 122. Drainage element;

[0053] 130. Second cantilever unit; 131. Second cantilever element; 132. Waterproof element;

[0054] 140. Enclosure unit; 141. Enclosure element; 142. Second opening element;

[0055] 150. Window unit;

[0056] 160. Gas emission unit; 161. Gas emission element; 162. Connecting element;

[0057] 170. Obstruction unit;

[0058] 200. Active smoke extraction device;

[0059] 300. Operating platform. Detailed Implementation

[0060] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0061] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0062] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention.

[0063] Example 1

[0064] This embodiment relates to the kitchen bay window of this utility model.

[0065] As shown in Figure 1, a schematic embodiment of this utility model is a kitchen bay window 100 for installing a stove, comprising an opening unit 110, a first cantilever unit 120, a second cantilever unit 130, an enclosure unit 140, a window unit 150, and a gas exhaust unit 160. The opening unit 110 is located on the exterior wall of the building; the first cantilever unit 120 is located above the opening unit 110 and connected to the exterior wall; the second cantilever unit 130 is located at the bottom of the opening unit 110 and connected to the exterior wall, with its top surface coplanar with the bottom surface of the opening unit 110, and its outer end coplanar with the outer end of the first cantilever unit 120; the enclosure unit 140 is located between the first cantilever unit 120 and the second cantilever unit 130, and is situated outside the opening unit 110. The outer ends of the first cantilever unit 120 and the second cantilever unit 130 are coplanar; the window unit 150 is disposed inside the enclosure unit 140, the top surface of the window unit 150 is coplanar with the top surface of the opening unit 110, and the bottom surface of the window unit 150 is higher than the bottom surface of the opening unit 110; the gas emission unit 160 is disposed on the outer side of the building exterior wall and is connected to the ends of the first cantilever unit 120, the second cantilever unit 130, and the enclosure unit 140 respectively, the outer side of the gas emission unit 160 is coplanar with the outer end of the first cantilever unit 120, and is used for smoke exhaust.

[0066] In some of these embodiments, the window unit 150 has a rectangular cross-section.

[0067] Preferably, the height of the window unit 150 is 1.5m.

[0068] In some of these embodiments, the window unit 150 includes, but is not limited to, a metal profile casement window.

[0069] As shown in Figure 2, the opening unit 110 includes a first opening element 111. The first opening element 111 is disposed on the exterior wall of the building, the top surface of the first opening element 111 is coplanar with the top surface of the window unit 150, and the bottom surface of the first opening element 111 is lower than the bottom surface of the window unit 150.

[0070] The first opening element 111 is installed through the exterior wall of the building.

[0071] Preferably, the bottom surface of the first opening element 111 is 0.6m above the floor surface.

[0072] In some of these embodiments, the first opening element 111 has a rectangular cross-section.

[0073] The dimensions of the first opening element 111 are matched with the dimensions of the window unit 150. Generally, the height of the first opening element 111 is greater than the height of the window unit 150.

[0074] Preferably, the height of the first opening element 111 is 1.9m.

[0075] In some of these embodiments, the first opening element 111 is a window opening.

[0076] As shown in Figure 3, the first cantilever unit 120 includes a first cantilever element 121 and a drainage element 122. The first cantilever element 121 is disposed above the opening unit 110 and connected to the building's exterior wall. The outer end of the first cantilever element 121 is connected to the top of the enclosure unit 140, and the outer end of the first cantilever element 121 is coplanar with the outer end of the second cantilever unit 130. The drainage element 122 is disposed on top of the first cantilever element 121 and is used for drainage.

[0077] Specifically, the first cantilever element 121 is positioned above the first opening element 111.

[0078] Preferably, the distance between the top surface of the first cantilever element 121 and the top surface of the first opening element 111 is 0.35m.

[0079] In some of the embodiments, the connection method between the first cantilever element 121 and the building exterior wall includes, but is not limited to, cast-in-place connection and prefabricated connection.

[0080] The dimensions of the first cantilever element 121 are matched with the dimensions of the first opening element 111. Generally, the axial dimension (e.g., length) of the first cantilever element 121 is equal to the width of the first opening element 111.

[0081] In some of these embodiments, the first cantilever element 121 has a rectangular cross-section.

[0082] Preferably, the width of the first cantilever element 121 is 0.6m and the thickness is 0.15m.

[0083] In some of these embodiments, the first cantilever element 121 includes, but is not limited to, prefabricated concrete cantilever slabs and cast-in-place concrete cantilever slabs.

[0084] In some of these embodiments, the drainage element 122 is cast-in-place with the first cantilever element 121.

[0085] The dimensions of the drainage element 122 are matched with the dimensions of the first cantilever element 121. Generally, the axial dimension (e.g., length) of the drainage element 122 is equal to the axial dimension (e.g., length) of the first cantilever element 121, and the radial dimension (e.g., width) of the drainage element 122 is equal to the radial dimension (e.g., width) of the first cantilever element 121.

[0086] In some embodiments, the drainage element 122 has a right-angled triangle cross-section. Specifically, the right-angled sides of the drainage element 122 are arranged parallel to the first cantilever element 121 and the building exterior wall, respectively, and the hypotenuse of the drainage element 122 is inclined to the outside of the first cantilever element 121.

[0087] In some of these embodiments, the drainage element 122 is a drainage slope.

[0088] As shown in Figure 4, the second cantilever unit 130 includes a second cantilever element 131 and a waterproof element 132. The second cantilever element 131 is disposed at the bottom of the opening unit 110 and connected to the building's exterior wall. The top surface of the second cantilever element 131 is coplanar with the bottom surface of the opening unit 110, and the outer end of the second cantilever element 131 is coplanar with the outer end of the first cantilever unit 120. The waterproof element 132 is disposed on the lower side of the outer end of the second cantilever element 131 to prevent liquid from flowing towards the building's exterior wall.

[0089] Specifically, the second cantilever element 131 is disposed at the bottom of the first opening element 111, the top surface of the second cantilever element 131 is coplanar with the bottom surface of the first opening element 111, and the outer end of the second cantilever element 131 is coplanar with the outer end of the first cantilever element 121.

[0090] In some of the embodiments, the connection method between the second cantilever element 131 and the building exterior wall includes, but is not limited to, cast-in-place connection and prefabricated connection.

[0091] The dimensions of the second cantilever element 131 are matched with the dimensions of the first cantilever element 121. Generally, the axial dimension (e.g., length) of the second cantilever element 131 is equal to the axial dimension (e.g., length) of the first cantilever element 121, and the radial dimension (e.g., width) of the second cantilever element 131 is equal to the radial dimension (e.g., width) of the first cantilever element 121.

[0092] In some of these embodiments, the second cantilever element 131 has a rectangular cross-section.

[0093] Preferably, the second cantilever element 131 has a width of 0.6m and a thickness of 0.15m.

[0094] In some of these embodiments, the second cantilever element 131 includes, but is not limited to, prefabricated concrete cantilever slabs and cast-in-place concrete cantilever slabs.

[0095] In some embodiments, the connection between the waterproof element 132 and the second cantilever element 131 includes, but is not limited to, integral molding and screw connection.

[0096] The dimensions of the waterproof element 132 are matched with the dimensions of the second cantilever element 131. Generally, the axial dimension (e.g., length) of the waterproof element 132 is equal to the axial dimension (e.g., length) of the second cantilever element 131.

[0097] In some embodiments, the waterproof element 132 has a triangular cross-section. Specifically, the base of the waterproof element 132 coincides with the second cantilever element 131.

[0098] In some of these embodiments, the waterproof element 132 includes, but is not limited to, a metal droplet.

[0099] As shown in Figure 5, the enclosure unit 140 includes an enclosure element 141 and a second opening element 142. The enclosure element 141 is disposed between the first cantilever unit 120 and the second cantilever unit 130, and is located outside the opening unit 110. The end of the enclosure element 141 is connected to the gas emission unit 160, and the outer surface of the enclosure element 141 is coplanar with the outer ends of the first cantilever unit 120 and the second cantilever unit 130. The second opening element 142 is disposed on the enclosure element 141, and a window unit 150 is disposed inside the second opening element 142.

[0100] Specifically, the enclosure element 141 is disposed between the first cantilever element 121 and the second cantilever element 131, and is located outside the first opening element 111.

[0101] In some of the embodiments, the connection methods between the enclosure element 141 and the first cantilever element 121 and the second cantilever element 131 include, but are not limited to, cast-in-place and assembled connections.

[0102] The dimensions of the enclosure element 141 are matched with the dimensions of the first cantilever element 121 (or the second cantilever element 131). Generally, the axial dimension (e.g., length) of the enclosure element 141 is equal to the axial dimension of the first cantilever element 121 (or the second cantilever element 131), and the height of the enclosure element 141 is equal to the distance from the bottom surface of the first cantilever element 121 to the top surface of the second cantilever element 131.

[0103] The dimensions of the enclosure element 141 are matched with the dimensions of the window unit 150. Generally, the axial dimension of the enclosure element 141 is larger than the axial dimension of the window unit 150, and the height of the enclosure element 141 is greater than the height of the window unit 150.

[0104] In some embodiments, the enclosure element 141 has an L-shaped cross-section. Specifically, the enclosure element 141 includes a first wall panel and a second wall panel. The first wall panel is disposed between the first cantilever element 121 and the second cantilever element 131. The first end of the first wall panel is connected to the gas emission unit 160, and the outer surface of the first wall panel is coplanar with the outer ends of the first cantilever element 121 and the second cantilever element 131. The second end of the first wall panel is provided with a second opening element 142. The second wall panel is disposed at the second end of the first wall panel. The outer surface of the second wall panel is coplanar with the ends of the first cantilever element 121 and the second cantilever element 131. The second wall panel is provided with the second opening element 142.

[0105] In some of these embodiments, the enclosure element 141 is an exterior wall.

[0106] The second opening element 142 is installed through the enclosure element 141.

[0107] The dimensions of the second opening element 142 are matched with the dimensions of the window unit 150. Generally, the radial dimensions (such as height and width) of the second opening element 142 are equal to the radial dimensions (such as height and width) of the window unit 150.

[0108] Preferably, the height of the second opening element 142 is 1.5m.

[0109] In some embodiments, the second opening element 142 has an L-shaped cross-section. Specifically, the second opening element 142 includes a first opening and a second opening. The first opening is located at the second end of the first wall panel; the second opening is located in the second wall panel.

[0110] The dimensions of the first opening are matched with the dimensions of the enclosure element 141. Generally, the axial dimension (e.g., length) of the first opening is smaller than the axial dimension (e.g., length) of the first wall panel.

[0111] The dimensions of the second opening are matched with the dimensions of the enclosure element 141. Generally, the axial dimension (e.g., length) of the second opening is equal to the axial dimension (e.g., length) of the second wall panel.

[0112] In some of these embodiments, the second opening element 142 is a window opening.

[0113] As shown in Figure 6, the gas emission unit 160 includes a gas emission element 161 and a connecting element 162. The gas emission element 161 is disposed on the outer side of the building's exterior wall and is connected to the ends of the first cantilever unit 120, the second cantilever unit 130, and the enclosure unit 140, respectively. The outer surface of the gas emission unit 160 is coplanar with the outer end of the first cantilever unit 120 and is used for smoke exhaust. The connecting element 162 is disposed on the side of the gas emission element 161 and is connected to the active smoke exhaust device. The bottom end of the connecting element 162 is set higher than the top surface of the opening unit 110.

[0114] Specifically, the gas emission element 161 is connected to the end of the first cantilever element 121, the end of the second cantilever element 131, and the end of the enclosure element 141, respectively. The outer side of the gas emission element 161 is coplanar with the outer end of the first cantilever element 121. The bottom end of the connecting element 162 is set higher than the top surface of the first opening element 111.

[0115] More specifically, the gas emission element 161 is connected to the first wall panel.

[0116] In some of these embodiments, the connection methods between the gas emission element 161 and the building exterior wall, the first cantilever element 121, the second cantilever element 131, and the enclosure element 141 include, but are not limited to, cast-in-place and assembled connections.

[0117] The dimensions of the gas emission element 161 are matched with the dimensions of the first cantilever element 121 (or the second cantilever element 131). Generally, the thickness of the gas emission element 161 is equal to the radial dimension (e.g., width) of the first cantilever element 121 (or the second cantilever element 131), and the height of the gas emission element 161 is equal to the distance from the first cantilever element 121 to the other first cantilever element 121.

[0118] In some embodiments, the gas emission element 161 has a U-shaped cross-section. Specifically, the open end of the gas emission element 161 is connected to the exterior wall of the building, and the closed end of the gas emission element 161 is coplanar with the outer ends of the first cantilever element 121 and the second cantilever element 131.

[0119] In some of these embodiments, the gas emission element 161 is a concrete flue.

[0120] The connecting element 162 is disposed through the side wall of the gas emission element 161.

[0121] In some embodiments, the cross-section of the connecting element 162 includes, but is not limited to, a circle or a rectangle.

[0122] In some of these embodiments, the connecting element 162 is a connecting opening.

[0123] The advantage of this utility model is that by increasing the distance between the first cantilever unit and the opening unit, the active smoke exhaust device can be installed between the opening unit and the enclosure unit. At the same time, an operating platform can be set above the second cantilever unit, thereby effectively utilizing the bay window space of the kitchen, increasing the kitchen countertop area, and solving the problem of low utilization efficiency of existing kitchen bay windows.

[0124] Example 2

[0125] This embodiment is a supplementary embodiment to Embodiment 1.

[0126] As shown in Figure 7, the kitchen bay window 100 also includes a covering unit 170. The covering unit 170 is disposed between the first cantilever unit 120 and another second cantilever unit 130, and is used for decorative covering.

[0127] Specifically, the shielding unit 170 is disposed between the first cantilever element 121 and another second cantilever element 131, and is located at the outer end of the first cantilever element 121, for decorative shielding.

[0128] In some of these embodiments, the shielding unit 170 is connected to the first cantilever element 121 and the second cantilever element 131 via metal embedded parts.

[0129] The dimensions of the shielding unit 170 are matched with the dimensions of the first cantilever element 121 (second cantilever element 131). Generally, the axial dimension (e.g., length) of the shielding unit 170 is equal to the axial dimension (e.g., length) of the first cantilever element 121 (second cantilever element 131).

[0130] In some embodiments, the shielding unit 170 includes, but is not limited to, decorative louvers.

[0131] The advantage of this embodiment is that by setting a shielding unit between the first cantilever unit and the other second cantilever unit, rainwater can be prevented from entering the cavity between the first cantilever unit and the other second cantilever unit, thereby improving the waterproof performance of the kitchen bay window.

[0132] Example 3

[0133] This embodiment relates to the kitchen of this utility model.

[0134] As shown in Figure 8, a kitchen includes a kitchen bay window 100, an operating platform 300, and an active smoke exhaust device 200 as described in Embodiments 1 and 2. The operating platform 300 is positioned above the second cantilever unit 130 of the kitchen bay window 100 and connected to the inner side of the enclosure unit 140 of the kitchen bay window 100. The top surface of the operating platform 300 is lower than the bottom surface of the window unit 150 of the kitchen bay window 100. The active smoke exhaust device 200 is positioned above the operating platform 300 and below the first cantilever unit 120 of the kitchen bay window 100, and is connected to the gas emission unit 160 of the kitchen bay window 100 for removing cooking fumes.

[0135] Specifically, the operating platform 300 is located above the second cantilever element 131 and connected to the inner side of the enclosure element 141; the active smoke exhaust device 200 is located below the first cantilever element 121 and connected to the gas exhaust element 161.

[0136] In some of these embodiments, the active smoke extraction device 200 is a top-mounted range hood.

[0137] The operating platform 300 includes a platform unit and a stove unit. The platform unit is located above the second cantilever unit 130 and connected to the inside of the enclosure unit 140. The top surface of the platform unit is lower than the bottom surface of the window unit 150. The stove unit is located on the platform unit, and an active smoke exhaust device 200 is installed above the stove unit.

[0138] Specifically, the platform unit is positioned above the second cantilever element 131 and connected to the inner side of the enclosure element 141.

[0139] The dimensions of the platform unit are matched with the dimensions of the second cantilever element 131. Generally, the axial dimension (e.g., length) of the platform unit is equal to the axial dimension (e.g., length) of the second cantilever element 131, and the radial dimension (e.g., width) of the platform unit is greater than the radial dimension (e.g., width) of the second cantilever element 131.

[0140] Preferably, the width of the platform unit is 0.7m.

[0141] Preferably, the height of the platform unit is 0.85m.

[0142] In some of these embodiments, the platform unit is a kitchen worktable.

[0143] In some of these embodiments, the cooktop unit is a gas stove.

[0144] Furthermore, the operating platform 300 also includes a water tank unit. The water tank unit is disposed within the platform unit and located inside the window unit 150.

[0145] In some of these embodiments, the sink unit is a kitchen sink.

[0146] The advantages of this utility model are basically the same as those of Embodiment 1 and Embodiment 2, and will not be repeated here.

[0147] Example 4

[0148] This embodiment is a supplementary embodiment to embodiment 3.

[0149] The kitchen also includes a decorative structure. This decorative structure is located below the first cantilever unit 120 and connected to the enclosure unit 140, and is used to conceal the active smoke exhaust device 200.

[0150] Specifically, the decorative structure is located below the first cantilever element 121 and connected to the enclosure element 141, and the decorative structure is positioned above the window unit 150.

[0151] In some of these embodiments, the decorative structure is connected to the enclosure element 141 by screws.

[0152] The dimensions of the decorative structure are matched with the dimensions of the first cantilever element 121. Generally, the radial dimension (e.g., width) of the decorative structure is equal to the radial dimension (e.g., width) of the first cantilever element 121.

[0153] In some of these embodiments, the decorative structure has a rectangular cross-section.

[0154] In some embodiments, the decorative structure includes, but is not limited to, waterproof decorative panels.

[0155] The advantage of this embodiment is that the active smoke exhaust device can be protected by setting a decorative structure below the first cantilever unit.

[0156] The above description is only a preferred embodiment of the present utility model and does not limit the implementation method and protection scope of the present utility model. Those skilled in the art should realize that all solutions obtained by equivalent substitutions and obvious changes made based on the description and illustrations of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A kitchen bay window on which a stove can be installed, characterized in that, include: An opening unit is provided on the exterior wall of the building; a first cantilever unit is provided above the opening unit and connected to the exterior wall of the building; A second cantilever unit is located at the bottom of the opening unit and connected to the building's exterior wall. The top surface of the second cantilever unit is coplanar with the bottom surface of the opening unit, and the outer end of the second cantilever unit is coplanar with the outer end of the first cantilever unit. An enclosure unit is located between the first and second cantilever units and on the outside of the opening unit. The outer surface of the enclosure unit is coplanar with the outer ends of both the first and second cantilever units. A window unit is located inside the enclosure unit. The top surface of the window unit is coplanar with the top surface of the opening unit, and the bottom surface of the window unit is higher than the bottom surface of the opening unit. A gas exhaust unit is located on the outside of the building's exterior wall and connected to the ends of the first, second, and enclosure units. The outer surface of the gas exhaust unit is coplanar with the outer end of the first cantilever unit and is used for smoke exhaust.

2. The kitchen bay window according to claim 1, characterized in that, The opening unit includes: a first opening element, which is disposed on the exterior wall of the building, the top surface of the first opening element is coplanar with the top surface of the window unit, and the bottom surface of the first opening element is lower than the bottom surface of the window unit.

3. The kitchen bay window according to claim 1, characterized in that, The first cantilever unit includes: a first cantilever element, which is disposed above the opening unit and connected to the building's exterior wall, with its outer end connected to the top of the enclosure unit, and the outer end of the first cantilever element being coplanar with the outer end of the second cantilever unit; and a drainage element, which is disposed at the top of the first cantilever element and is used for drainage.

4. The kitchen bay window according to claim 1, characterized in that, The second cantilever unit includes: a second cantilever element, which is disposed at the bottom of the opening unit and connected to the building exterior wall, the top surface of the second cantilever element being coplanar with the bottom surface of the opening unit, and the outer end of the second cantilever element being coplanar with the outer end of the first cantilever unit; and a waterproof element, which is disposed on the lower side of the outer end of the second cantilever element to prevent liquid from flowing to the building exterior wall.

5. The kitchen bay window according to claim 1, characterized in that, The enclosure unit includes: an enclosure element disposed between the first cantilever unit and the second cantilever unit, and located outside the opening unit; the end of the enclosure element is connected to the gas emission unit; the outer surface of the enclosure element is coplanar with the outer ends of the first cantilever unit and the second cantilever unit; and a second opening element disposed on the enclosure element; the top surface of the second opening element is coplanar with the top surface of the opening unit; the bottom surface of the second opening element is higher than the top surface of the opening unit; and the window unit is disposed inside the second opening element.

6. The kitchen bay window according to claim 1, characterized in that, The gas emission unit includes: a gas emission element disposed on the outer side of the building exterior wall and connected to the end of the first cantilever unit, the end of the second cantilever unit, and the end of the enclosure unit, respectively. The outer side of the gas emission element is coplanar with the outer end of the first cantilever unit and is used for smoke exhaust; and a connecting element disposed on the side of the gas emission element and connected to an active smoke exhaust device. The bottom end of the connecting element is higher than the top surface of the opening unit.

7. The kitchen bay window according to any one of claims 1 to 6, characterized in that, It also includes a shielding unit, which is disposed between the first cantilever unit and another second cantilever unit, for decorative shielding.

8. A kitchen stove installation system, characterized in that, include: Kitchen bay window as described in any one of claims 1 to 7; An operating platform is provided above the second cantilever unit of the kitchen bay window and connected to the inner side of the enclosure unit of the kitchen bay window. The top surface of the operating platform is lower than the bottom surface of the window unit of the kitchen bay window. An active smoke exhaust device is provided above the operating platform and below the first cantilever unit of the kitchen bay window, and is connected to the gas emission unit of the kitchen bay window for removing oil fumes.

9. The kitchen stove installation system according to claim 8, characterized in that, The operating platform includes: a platform unit, which is disposed above the second cantilever unit and connected to the inner side of the enclosure unit, with the top surface of the platform unit being lower than the bottom surface of the window unit; and a stove unit, which is disposed on the platform unit, with the active smoke exhaust device disposed above the stove unit.

10. The kitchen stove installation system according to any one of claims 8 to 9, characterized in that, Also includes: A decorative structure is disposed below the first cantilever unit and connected to the enclosure unit, for concealing the active smoke exhaust device.