The present invention relates to a hybrid street light, e.g., a hybrid street light in which electric power generated by a wind turbine power generation device and a solar photovoltaic power generation device are stored in a storage battery, and a lighting device is turned on with use of the power stored in the storage battery.
So-called hybrid street lights that each include a wind turbine power generation device and a solar photovoltaic power generation device and that each turn on a lighting device with use of powers obtained by these power generation devices, have been proposed (Patent Documents 1 and 2). As a wind turbine power generation device used in a hybrid street light, a vertical-axis wind turbine power generation device in which control regarding the wind direction is not needed and which is applied to a relatively small-sized wind turbine, is practically used.
[Patent Document 1] JP Laid-open Patent Publication No. 2011-40639
[Patent Document 2] JP Laid-open Patent Publication No. 2011-99330
A space at a lower area of the aforementioned hybrid street light is a space that is bright even at night and is convenient for use by people day and night. This space is a space where a wind turbine power generation device is installed, and thus the space is generally located in a place that provides, around the space, a clear area that is large to some extent, and examples of the place include an urban district, a park, a promenade, and an area within the site of a factory. However, a space having such an excellent environment is conventionally wastefully left as is, without being effectively used.
An object of the present invention is to provide a hybrid street light in which an effect of facilitating use, by people, of a space under illumination is obtained so that the space can be efficiently used.
A hybrid street light according to the present invention includes: a support column; a power generation device main unit including, at an upper portion of the support column, a wind turbine power generation device of a vertical-axis type and a solar photovoltaic power generation device; a lighting device installed on the support column and configured to be powered by means of either or both of the wind turbine power generation device and the solar photovoltaic power generation device; and a seat attached to the support column.
According to this configuration, the lighting device installed on the support column is powered by means of either or both of the wind turbine power generation device and the solar photovoltaic power generation device. In the daytime during which the sunlight is incident, electric power can be generated by the solar photovoltaic power generation device. The wind turbine power generation device can generate electric power by day and night as long as the wind turbine power generation device receives wind strong enough to rotate blades thereof. Since the wind turbine power generation device is of a vertical-axis type, control regarding the wind direction is not needed, whereby a control system can be made simpler than that of a horizontal-axis type. The vertical-axis wind turbine power generation device can generate electric power by receiving wind even if being relatively small-sized, and thus can be preferably installed in, for example, an urban district, a park, a promenade, or an area within the site of a factory. Therefore, the versatility of the hybrid street light can be improved. The seat is permanently provided to the support column of the hybrid street light, and thus people can sit on the seat by day and night so that it is possible to facilitate use such as taking breaks, chatting with each other, eating and drinking, and placing their belongings on the seat. Therefore, an effect of facilitating use, by people, of the space under illumination is obtained so that the space can be efficiently used.
The wind turbine power generation device may be provided at a portion, of the upper portion of the support column, that is located above the solar photovoltaic power generation device. In this case, the wind turbine power generation device more easily receives wind, whereby the efficiency of power generation by the wind turbine power generation device can be improved.
The lighting device may include a plurality of light-emitting diodes circumferentially arranged around the outer circumference of the support column. In this configuration, in a case where the plurality of light-emitting diodes having been circumferentially arranged illuminate the solar photovoltaic power generation device and the wind turbine power generation device, the position of the hybrid street light is easily recognized at night. In a case where the plurality of light-emitting diodes having been circumferentially arranged illuminate a lower part, the effect of facilitating use by people who sit on the seat is further improved. In a case where the sunlight in a sunshine duration is incident on a plurality of locations in a spotted manner, sunlight having filtered through foliage can be reproduced by means of the light having been incident in a spotted manner.
The seat may be annularly provided around the outer circumference of the support column. In this case, a plurality of persons can sit on the seat, whereby it is possible to facilitate use, by a plurality of persons, of the space under illumination. The lighting device and the seat may be detachably attached to the support column in a state of being combined with each other. In this case, after portions, of the hybrid street light, other than the lighting device and the seat are installed, the lighting device and the seat can be attached to the support column in accordance with, for example, the budget of a user. Since the lighting device and the seat are integrated with each other, operations of attachment and detachment thereof are easy. In addition, the form or the like of the lighting device or the seat can be easily changed in accordance with the preferences of the user who installs the hybrid street light.
In the present invention, the support column may accommodate therein: a storage battery configured to store electric power generated by the wind turbine power generation device and the solar photovoltaic power generation device and to supply the electric power to the lighting device; and a controller configured to control the storage and the supply of the electric power. With this configuration, the present invention becomes compact, and the appearance thereof is improved.
In the present invention, the support column may have: an opening portion through which the storage battery and the controller are inserted and removed; and a door configured to close and open the opening portion. With this configuration, the storage battery and the controller can be easily taken out from and into the support column if the door is opened, and the appearance of the present invention is improved if the door is closed.
In addition, in the present invention, the door may be disposed below the lighting device. With this configuration, the lighting device does not hinder opening and closing of the door.
Furthermore, in the present invention, a housing may be attached to an upper end portion of the support column, the housing being configured to accommodate: a bearing rotatably supporting a turbine rotor of the wind turbine power generation device; and a generator configured to be driven by rotation of the turbine rotor to generate electric power. With this configuration, the wind turbine power generation device becomes compact.
Any combination of at least two constructions, disclosed in the appended claims and/or the specification and/or the accompanying drawings should be construed as included within the scope of the present invention. In particular, any combination of two or more of the appended claims should be equally construed as included within the scope of the present invention.
In any event, the present invention will become more clearly understood from the following description of preferred embodiments thereof, when taken in conjunction with the accompanying drawings. However, the embodiments and the drawings are given only for the purpose of illustration and explanation, and are not to be taken as limiting the scope of the present invention in any way whatsoever, which scope is to be determined by the appended claims. In the accompanying drawings, like reference numerals are used to denote like parts throughout the several views, and:
A hybrid street light according to one embodiment of the present invention will be described with reference to
As shown in
A predetermined partition wall 5aa in the support column lower portion 5a supports the controller 26, the storage battery 27, and the inverter 28 which are described later. The inverter 28 may be omitted. In a case where, for example, a plurality of the storage batteries 27 are provided, these storage batteries 27 are supported by the partition walls 5aa that are different from one another. Therefore, the controllers 26, the storage batteries 27, and the inverters 28 in the support column lower portion 5a are disposed in respective spaces separated from one another by the partition walls 5aa that are different from one another. As shown in
<Regarding the Wind Turbine Power Generation Device 6>
The wind turbine power generation device 6 includes a turbine rotor 8, and a generator 9 which is driven by the turbine rotor 8. The turbine rotor 8 includes a support 10 and a plurality of blades 11. The support 10 is supported at an upper end portion of the support column 5 via a bearing 60 so as to be rotatable about a vertical axis. The support 10 is a member supporting the plurality (in this example, two) of blades 11, and is formed in an arm shape so as to extend in the radially outward direction from an upper portion of the support column 5.
One of the blades 11 is connected to one end of the support 10, and the other one of the blades 11 is connected to the other end of the support 10. A plurality (in this example, four) of reinforcement members 29 are provided so as to connect the support 10 and the blades 11. Each reinforcement member 29 diagonally extends so as to reach a portion near the upper or lower end of the blades 11 as the reinforcement member 29 extends in the radially outward direction from portions near the center of the support 10. The two blades 11, 11 respectively extend in the vertical direction, and are provided at positions between which the phase is different by 180 degrees, with the support column 5 being the center.
Each blade 11 extends in the vertical direction, and is configured to be rotated about an axis L1 of the support column 5 by receiving wind from various directions. The blade 11 includes: a straight portion 11a extending straight in the vertical direction; and blade tip portions 11b, 11b respectively extending from both ends, in the longitudinal direction, of the straight portion 11a. The straight portion 11a and each blade tip portion 11b are formed from the same material so as to be integrated with each other. It is noted that the following configuration may be employed: three or more supports 10 each formed in an arm shape extend radially in the radially outward direction from the upper portion of the support column 5, and the blades 11 are respectively provided to the supports 10.
Each blade tip portion 11b is in the form of a so-called winglet, by which a wing tip vortex generated from the corresponding blade tip is reduced. The blade tip portion 11b has a cross section, which is obtained by cutting the blade tip portion 11b along a plane including the axis L1, having a shape inclined so as to progressively approach the support column 5 side from the proximal end thereof toward the distal end thereof. The upper and lower blade tip portions 11b, 11b are formed in the same shape so as to be line-symmetric with respect to the center in the longitudinal direction of the straight portion 11a.
The generator 9 is accommodated, together with the bearing 60, inside a housing 30 attached to the upper end portion of the support column 5, and is driven by rotation of the blades 11 to generate electric power. A stationary ring which is an inner ring of the bearing is attached to the housing 30, and a rotating ring which is an outer ring of the bearing 60 is connected to the support 10. When the blades 11 are rotated, a rotor of the generator 9 is rotated, together with the rotating ring, inside the housing 30, thereby generating power. As the generator 9, an induction generator or a synchronous generator may be used, for example. <Regarding the Solar Photovoltaic Power Generation Device 7>
The solar photovoltaic power generation device 7 includes: a solar panel 12 which performs photoelectric conversion by receiving sunlight; and a mount 13 shown in
As clearly seen from
<Regarding the Lighting Device 2>
As shown in
The annular support member 18 is provided with a plurality (in this example, four) of connection members 19 radially extending from the annular support member 18 to the upper ends of the frame 16. Those connection members 19 are arranged at predetermined intervals in the circumferential direction. As shown in
As shown in
The some LEDs 15a for emitting light upward irradiate particularly the solar photovoltaic power generation device 7 and the wind turbine power generation device 6 over the entire circumferences, i.e., 360 degrees. Therefore, the position of the hybrid street light is easily recognized at night. Owing to the other LEDs 15a for emitting light downward, the effect of facilitating use by people who sit on the seat 3 is further improved.
<Regarding the Seat 3>
As shown in
The frame 16 has leg portions 31, annular base portions 21, 22 shown in
As shown in
The seat portion 20 having a shape of a circular sheet is provided on upper portions of the plurality of annular base portions 21, 22. The seat portion 20 has a shape of a circular sheet such that the upper surface thereof serves as a seat surface, and the seat portion 20 is provided around the outer circumference of the support column 5 concentrically with the support column 5. The seat portion 20 is configured such that a plurality of persons can sit thereon. Accordingly, use of the space below the lighting device 2 by a plurality of persons can be facilitated.
<Regarding the Control System>
As shown in
The solar panel 12 and the generator 9 of the wind turbine power generation device 6 are electrically connected to the controller 26. Electric power generated by the solar panel 12 and the generator 9 is stored in the storage battery 27 through the controller 26. The controller 26 causes the inverter 28 to convert DC power stored in the storage battery 27 into AC power, thereby supplying the AC power to the lighting device 2. Accordingly, each LED 15 (
According to the hybrid street light described above, the lighting device 2 installed on the column 5 in
The vertical-axis wind turbine power generation device 6 can generate power by receiving wind even if being relatively small-sized, and thus can be preferably installed in, for example, an urban district, a park, a promenade, or an area within the site of a factory. Therefore, the versatility of the hybrid street light can be improved. The seat 3 is permanently provided to the support column 5 of the hybrid street light, and thus people can sit on the seat portion 20 by day and night so that it is possible to facilitate use such as taking breaks, chatting with each other, eating and drinking, and placing their belongings on the seat portion 20. Therefore, an effect of facilitating use, by people, of the space under illumination is obtained so that the space can be efficiently used.
The wind turbine power generation device 6 is provided at a portion, of the upper portion of the support column 5, that is located above the solar photovoltaic power generation device 7. Therefore, the wind turbine power generation device 6 more easily receives wind, whereby the efficiency of power generation by the wind turbine power generation device 6 can be improved.
The integrally structured component 32 including the lighting device 2 and the seat 3 is detachably attached to the support column 5 in a state where the two division structures 32A, 32A are combined with each other. Therefore, after portions, of the hybrid street light, other than the lighting device 2 and the seat 3 are installed, the lighting device 2 and the seat 3 can be attached to the support column 5 in accordance with, for example, the budget of a user. Since the lighting device 2 and the seat 3 are integrated with each other, operations of attachment and detachment thereof are easy. In addition, the form or the like of the lighting device 2 or the seat 3 can be easily changed in accordance with the preferences of the user who installs the hybrid street light.
Although the embodiment has been described above with reference to the accompanying drawings, those skilled in the art will readily conceive numerous changes and modifications within the framework of obviousness upon the reading of the specification herein presented of the present invention. Accordingly, such changes and modifications are, unless they depart from the scope of the present invention as delivered from the claims annexed hereto, to be construed as included therein.
1 . . . Power generation device main unit
2 . . . Lighting device
3 . . . Seat
4 . . . Door
5 . . . Support column
5
ab . . . Opening portion
6 Wind turbine power generation device
7 . . . Solar photovoltaic power generation device
8 . . . Turbine rotor
15 . . . Light-emitting diode (LED)
26 . . . Controller
27 . . . Storage battery
30 . . . Housing
60 . . . Bearing
Number | Date | Country | Kind |
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2016-081645 | Apr 2016 | JP | national |
This application is a continuation application, under 35 U.S.C. § 111(a), of international application No. PCT/JP2017/014931, filed Apr. 12, 2017, which claims priority to Japanese patent application No. 2016-081645, filed Apr. 15, 2016, the disclosure of which are incorporated by reference in their entirety into this application.
Number | Date | Country | |
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Parent | PCT/JP2017/014931 | Apr 2017 | US |
Child | 16156390 | US |