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Abstract
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Projected expiry passed 12 July 2004, 22.2 years ago.
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1 claim: 1 independent, 0 dependent
- 1[The scope of a claim for utility model registration] 【実用新案登録請求の範囲】 Two or more segment reflective mirrors which reflect sunrays in the direction of Collector are arranged by two or more rows, and the solar-heat heat collector whose rotation of the reflective mirror was enabled is allocated in two or more set series, While providing the drive, the drive controlling device, sensor, and linkage mechanism which are changed with the installation angle of each above-mentioned reflective mirror at position change of the sun in one set of the solar-heat heat collector, The reflective mirror installation angle regulation mechanism of the solar-heat heat collector characterized by the thing which connect the rotation axis of each reflective mirror of other solar-heat heat collectors with the rotation axis of the reflective mirror of each sequence in which the one above-mentioned set of a solar-heat heat collector corresponds, and which was made like. 太陽光線を集熱器の方向へ反射する複数枚のセグメント反射ミラーを複数列で配置し且つ該反射ミラーを回動自在とした太陽熱集熱装置を複数台直列に配設し、一台の該太陽熱集熱装置に上記各反射ミラーの設置角を太陽の位置変化に伴い変更する駆動装置、駆動制御装置、センサ、リンク機構を設けると共に、他の太陽熱集熱装置の各反射ミラーの回動軸を上記一台の太陽熱集熱装置の対応する各列の反射ミラーの回動軸に連結する、ようにしたことを特徴とする太陽熱集熱装置の反射ミラー設置角調節機構。
4 paragraphs, as filed
[Detailed explanation of the device]
(Technical field) This design is related with the reflective mirror installation angle regulation mechanism in the case of having arranged the segment mirror type solar-heat heat collector in series. (Conventional technology) These mobilization people proposed the segment mirror type solar-heat heat collector in Japanese Patent Application No. No. 209931 [ 57 to ] previously. On a bottom pedestal, this solar-heat heat collector allocates two or more strip-of-paper-like segment mirrors for reflection so that two or more rows may be accomplished in parallel, And one collection A heater of long types is arranged in parallel with the segment mirror to the pedestal cross direction middle position of the method of L, the sunrays reflected by each of the segment mirror are brought together in Collector, and heat is absorbed from sunrays. this solar-heat heat collector is small-scale -- it is a device which is constituted by fL One light weight and can be cheaply manufactured in mirror. By the way, the account solar-heat heat collector of one is equipped with the solar tailing mechanism in which change the installation angle of each reflective mirror with movement of the sun, and it always centralizes the reflected ray on Collector. Generally the installation angle regulation mechanism in which the reflective mirror for this solar tailing is rotated is equipped for one set of every solar-heat heat collector, and it is constituted so that more than a reflective mirrors may be rotated simultaneously. However, preparing the installation angle regulation machine mechanism of a reflective mirror for the case where it uses the solar-heat heat collector of two or more fortune-telling - for a metaphor arranging in series at each device will increase the complexity of a tailing control regulation mechanism that it is easy to carry out raw [ of the variation in tailing control ]. As shown in Drawing 4, it sets to the conventional (two sets of for example, solar heat) heat collector (401), and (402), each device (4Ql) and the reflective mirror (403) of (402) -- as opposed to ... and (404) ... a linkage mechanism (405), passing a connecting member (ao8), a linkage mechanism (405), and (40B) with the drive (407) of the segment which provided (406) and was provided in the device (401) -- To -- the reflective mirror (403) of The ... and the solar tailing mechanism in which (404) ... is made to rotate are also proposed. However, even if it is this You composition, a linkage mechanism (405) and (40B) must be provided in a solar-heat heat collector (4G+) and each of (402), and it becomes the increase in the parts which require Sparrow adjustment. a reflective mirror (403) ... and a reflective mirror (ao4) ... originating in the difference in load between each regulation angle -- an angle or some -- light -- there is a case and, as a result, it produces condensing accuracy or non-The other party of falling. This design is accomplished that the Cow above-mentioned problem should be effectively solved in the mechanism in which the segment mirror for solar tailing is made to rotate, when Use(ing) a segment mirror type solar-heat heat collector to In parallel to two or more set series. (The object of a device) In the case where this design Use two or more sets of segment mirror type solar-heat heat collectors to the average in series, Rotate each reflective mirror of each solar-heat heat collector by the drive of a segment, a linkage mechanism, etc., and perform solar tailing, the simplification of structure and improvement in reliability are planned, and it aims at aiming at improvement in the condensing accuracy in Collector about a total reflection mirror. (Composition of a device) This design arranges the solar-heat heat collector which has arranged two or more segment reflective mirrors which reflect sunrays in the direction of Collector by two or more rows, and enabled rotation of one of the reflective mirrors to two or more set series, While providing the drive, the drive controlling device, sensor, and linkage mechanism which are changed with the installation angle of the reflective mirror at position change of the sun in one in these solar-heat heat collectors, It makes into the Anxiety to have constituted so that the rotation axis of each reflective mirror of other solar-heat heat collectors might be connected with the rotation axis of the reflective mirror of each sequence in which the one above-mentioned set of a solar-heat heat collector corresponds on the other hand. (EXAMPLE) an accompanying drawing is easy for below in suitable 1 example of this design -- it explains. The outline of the segment mirror type solar-heat heat collector with which this design is applied is explained based on Drawing 2 and Drawing 3. Drawing 2 is a side view of a solar-heat heat collector, and Drawing 3 is a top view. in Drawing 2 and Drawing 3 -- (1) ... is a reflective mirror -- a reflective mirror (+) ... constitutes strip-of-paper-like rectangle shape, and is put in order and allocated on a pedestal (2). In the example of illustration, 2 sets is allocated crosswise [ of a pedestal (2) ] bordering on the linkage mechanism (3) of ten sheets and the central part at right and left. Each reflective mirror(]) ... is supported pivotally by bearing part (4) and (4) in the axial part of the both ends, enabling free rotation. Reflective mirror (1) ... increases a mirror surface to 1-side, and curvature is provided in H mirror surface crosswise [ the ]. The buck object (5) of reverse V type is constructed between both-sides neighborhoods in at least 2 Tubular place of the longitudinal direction of a pedestal (2), and Collector (6) is hung in the top part of this buck object (5). It is allocated in this Collector (6) in the Heat collection mirror (8) which makes the heat carrier which transmits the solar heat absorbed with the heat collecting plate (7) with which it is irradiated with sunrays, and this heat collecting plate (7) to a heat storage room etc. circulate. In the above-mentioned composition, a solar-heat heat collector turns the longitudinal direction in the direction of north and south, and is arranged. Each reflective mirror (1) ... For example, it is a rectangle whose long side is 2.51++ and whose shorter side is about 0.2m, therefore a solar-heat heat collector is formed in the size whose long side, or about 5 m and a shorter side are an abbreviation 2++ grade. Each reflective mirror (1 A, ... reflects the sunrays from the sun which carries out sky Si Existence, and it is arranged by an inclination posture on a necessary installation square (O) so that the above-mentioned heat collecting plate (7) may be made to irradiate.) This installation angle (0) changes with each reflective mirrors (1). There is the above-mentioned installation angle (0) in Concern changed little by little according to a solar position, in order that the sun may change the position in the daytime. Such a reflective mirror (1) Mechanism of solar tailing in ..., The driving shaft and each reflective mirror (1) of the control device (10) which controls the drive (9) formed in the long side flank of the pedestal (2), and operation of this drive (9), and also a drive (9) ... It comprises a linkage mechanism (3) which connects an axial part. the reflective mirror (1) which is on a suitable installation angle for example beforehand as an actual operation -- in ... if the sun moves -- a reflective mirror (1) -- detecting by the photosensor etc. this [ whose ] is not illustrated, sending a signal to a control device (10), and operating a drive (9) based on this information, since the reflected ray by ... will separate from a heat collecting plate (7) -- Each reflective mirror (1) ... an installation angle is changed. and a reflective mirror (1) -- a condition [ irradiate / suitably / the reflected ray by ... / with a heat collecting plate (7) / come ] -- A reflective mirror (1) ... regulation of an installation angle is stopped. The operation of such solar tailing is repeatedly performed for every predetermined time with movement of the sun. Let the solar-heat heat collector provided with the drive (9) like the above, the control device (10), the linkage mechanism (3), and the photosensor be the main unit. In the solar-heat heat collector concerning this design, as shown in Drawing 1, at least two sets of solar-heat heat collectors, i.e., two or more sets, are used for direct Tha 1, allocating them in it in the shape of a line. In this case, it constitutes so that one set (A) of the solar-heat heat collector in it may constitute as a main unit like the above-mentioned and a drive original about other solar-heat heat collectors (B), a drive controlling device, a linkage mechanism, and a sensor may not be formed. in this solar-heat heat collector (B) -- each Tari of a longitudinal direction -- The reflective mirror (1) of things ... each rotation axis is connected and it forms in 1 this letter. And the rotation axis of the reflective mirror of each sequence of (B) is connected with a solar-heat heat collector (A). Thus, the mechanism in which a reflective mirror is made to rotate for solar tailing, regulation of the installation angle of a reflective mirror [ in / while making a heat collector (A) into the main unit, a heat collector (B) is constituted as a Follow unit, and / a heat collector (B) ] -- regulation of the installation angle of the reflective mirror of a heat collector (A) -- interlocking Do it -- it constitutes like. According to the above-mentioned composition, with the main unit and a Follow unit, the installation angle of the reflective mirror for every sequence becomes equal, a difference does not produce it at a regulation angle, and it becomes [ preventing the variation fall of condensing accuracy by this, or ] possible. Since the leg of the drive for solar tailing, 1 set of control device, etc. will be carried out if it provides about the main unit, it becomes possible to aim at a mirror fall. About Nao and a Follow unit, the number can be suitably attached in consideration of the capability of a drive (9) provided in the main unit. (Effect of a device) With, there is no difference of the backlash between linkage mechanisms with raw sweet red bean soup with mochi like the case where it writes with the one number of linkage mechanisms clearly by explanation of -F according to this design, and there are multiple linkage mechanisms, Since the simplification of structure and improvement in reliability can be attained and the load based on each reflective mirror does not concentrate on one point, condensing accuracy improves, and since what is necessary is for JQ to kick a drive, a control device, and a linkage mechanism only to the main unit, they demonstrate a manufacture mirror or the effect of decreasing.
[Brief Description of the Drawings]
Drawing 1 is an outline top view showing the reflective mirror installation angle regulation mechanism of the solar-heat heat collector concerning this design, The side view of the solar-heat heat collector with which Drawing 2 accomplishes the main unit, and Drawing 3 are top views of the solar-heat heat collector, It is a solar-heat heat collector with which one accomplishes a reflective mirror among - drawing which are Drawing 1 which requires Drawing 4 for the conventional solar-heat heat collector, and the same figure, 2 accomplishes a pedestal and the solar-heat heat collector with which Collector and 9 accomplish a drive, 10 accomplishes a control device, and, as for 3, a linkage mechanism and 6 accomplish the main unit, as for A, and B accomplishes a Follow unit.
Every citation, both ways
| Document | Relation | Office | Cited during |
|---|---|---|---|
| US9182146B2 | Cited by | United States of America | Applicant |
| WO2012042888A1 | Cited by | World Intellectual Property Organization (WIPO) | International search |
| JP2013539000A | Cited by | Japan | Examiner |
| CN103140723A | Cited by | China | Search report |
| JPS5127347A | Cites | Japan | Search report |
| JPS59100349A | Cites | Japan | Search report |
Numbers
- Publication
- 61/022016
- Application
- 10630384
Titles2
- Japanese
- 【考案の名称】太陽熱集熱装置の反射ミラ-設置角調節機構
- English
- [Title of the device] The reflective mirror installation angle regulation mechanism of a solar-heat heat collector
Classification
- CPC, 4
- F24S23/77
- F24S30/425
- F24S2023/872
- Y02E10/47
- IPC, 3
- F24S50 20
- G02B7 18
- G02B7 182