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Solar wall

A technology of solar energy and walls, applied in the field of solar walls, can solve the problems of lack of correlation and integration of room temperature adjustment systems, lack of overall consideration and technical integration, and achieve the effect of reducing cooling and heating energy consumption and increasing indoor temperature

Inactive Publication Date: 2015-12-16
SHANGHAI ONA BUILDING DESIGN CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] 1) The above solutions lack overall consideration and technical integration for the demand for shading in summer and heating in winter;
[0008] 2) The improvement object of the existing building energy-saving scheme is concentrated on the window part, and does not involve the window sill wall (the wall between the lower window top and the upper window sill), and the window sill wall is an important part of the building exterior wall ( Its area accounts for about 1 / 3 of the total area of ​​the outer wall), which can play a key role in building energy consumption;
[0009] 3) There is a lack of correlation and integration between the energy-saving technology of the wall or curtain wall and the room temperature adjustment system in the building

Method used

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Experimental program
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Effect test

no. 1 approach

[0057] Refer below Figure 1-8 and 12 describe a first embodiment of the solar wall of the present invention.

[0058] refer to figure 1 , The solar wall body of the present invention includes an outer wall main body 1 and a window sill wall 2 located between the lower window top and the upper window sill. Such as Figure 7 As shown, the window sill wall 2 includes a first part 10 embedded and connected to the main body 1 of the outer wall and a second part 20 protruding from the main body 1 of the outer wall. The underlying structural support 30 is fixedly connected. The first part 10, the second part 20 and the structural support 30 can be produced in a factory and installed on site, which is conducive to popularization.

[0059] Typically, the structural support 30 has an inwardly and downwardly sloping sloped surface. Preferably, enclosure panels are attached to the structural support 30 . In this embodiment, the structural support 30 is a stiffener to which an enclo...

no. 2 approach

[0080] Refer below Figure 9 A second embodiment of the solar wall of the present invention will be described. In the description of this embodiment, the same content as in the previous embodiment will be briefly described, and the different content will be mainly described.

[0081] In this embodiment, only the heat absorbing layer 24 is provided inside the inclined portion 21 of the second part 20 , and the photoelectric layer 25 is not provided. The function and effect of the heat absorbing layer 24 are the same as those described in the first embodiment. The rest of the structure and function are also the same as those of the first embodiment.

[0082] The solar wall in this embodiment is especially suitable for buildings located in frigid regions, that is, regions where it is not too hot in summer and does not need to turn on the air conditioner, but it is cold in winter and requires heating of the indoor temperature.

no. 3 approach

[0084] Refer below Figure 10 A third embodiment of the solar wall of the present invention will be described. In the description of this embodiment, the same content as in the previous embodiment will be briefly described, and the different content will be mainly described.

[0085] In this embodiment, only the photoelectric layer 25 is provided inside the inclined portion 21 of the second part 20 , and the heat absorbing layer 24 is not provided. The function and effect of the photoelectric layer 25 are the same as those described in the first embodiment. The rest of the structure and function are also the same as those of the first embodiment.

[0086] Since only the photoelectric layer 25 does not have the heat absorbing layer 24, therefore, in this embodiment, the photoelectric layer 25 can be a plate-like structure made of solar photovoltaic materials, that is, it does not need to be designed as a plurality of heat-absorbing layers as in the first embodiment. Rotating...

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Abstract

The invention relates to a solar wall, comprising an exterior wall body and a sill wall located from a lower window top to an upper sill. The sill wall comprises a first part connected to the exterior wall body in an inset manner and a second part protruding from the exterior wall body. The second part comprises an inclined portion and a connecting portion for fixedly connecting the inclined portion to the first part. The inclined part inclines out down with respect to the exterior wall body. An outer surface of the inclined portion is made of light-permeable material. The inside of the second part is provided with a chamber enclosed by outer and inner surfaces of the second part and two lateral faces of the second part. The first part is provided with an air vent communicated with both indoor air and the chamber. The solar wall is capable of effectively screening sunlight from entering indoors in summer so as to avoid the rise of the indoor temperature and also capable of converting solar energy into electric energy, is capable of admitting more sunlight irradiating the indoor and a heat-absorbing material in the sill wall in winter, thereby facilitating the rise of the indoor temperature and effectively decreasing energy consumption of a building.

Description

technical field [0001] The invention relates to the field of construction, in particular to a solar wall. Background technique [0002] As an important part of the building envelope structure, the glass curtain wall not only realizes the integration of walls, doors and windows in the building envelope structure, but also subtly integrates the use function and decoration function of the building envelope structure. , making the building more modern and decorative. However, while the large-area glass curtain wall provides good lighting, it brings about the problem of high energy consumption for heating and cooling, which has become a key link in building energy consumption. [0003] For the problem of large energy consumption of building curtain walls, the current solutions are: [0004] 1) Set double-layer curtain wall or wall to achieve better heat insulation effect of the wall. Its disadvantage is that the space between the double-layer curtain wall or the wall occupies ...

Claims

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Application Information

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IPC IPC(8): E04B2/88E04D13/18H02S20/26
CPCY02B10/10Y02E10/50
Inventor 刘世英
Owner SHANGHAI ONA BUILDING DESIGN CO LTD
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