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    • 41. 发明专利
    • Heat collector
    • 热收集器
    • JP2008185300A
    • 2008-08-14
    • JP2007020826
    • 2007-01-31
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • YOTSUYA NORIOTOMITA HIDEOKONAKAWA KATSUZO
    • F24S23/71F24S50/20
    • F24J2/14F24J2/07Y02B10/20Y02E10/41Y02E10/45
    • PROBLEM TO BE SOLVED: To uniformly keep the temperature of a heat medium at high temperatures by receiving solar light toward a focal point of a parabolic reflector by heat collecting tubes.
      SOLUTION: This heat collector 25 is composed of the parabolic reflector 1 for collecting solar light, the plurality of heat collecting tubes 5 disposed around the focal point 2 of the parabolic reflector 1 for circulating the heat medium 6, a heat collecting portion 4 constituted by spirally winding the plurality of heat collecting tubes 5 around the focal point 2, and an exterior 22 receiving the parabolic reflector 1 and the heat collecting portion 4, so that the solar light toward the focal point 2 of the parabolic reflector 1 is uniformly collected by the plurality of heat collecting tubes 5, and the heat medium 6 circulated in the heat collecting portion 4 can be uniformly heated to high temperatures. Further the radiation from the heat collecting portion 4 is prevented, thus the heat for heating the heat medium 6 to the high temperature can be efficiently collected.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过通过集热管朝向抛物面反射器的焦点接收太阳光来均匀地将热介质的温度保持在高温。 解决方案:该集热器25由用于收集太阳光的抛物面反射器1,多个集热管5设置在抛物面反射器1的焦点2周围,用于循环热介质6,集热部分 4通过将多个集热管5螺旋地卷绕在焦点2周围,以及接收抛物面反射体1和集热部4的外部22,使得朝向抛物面反射体1的焦点2的太阳光为 由多个集热管5均匀地收集,并且在集热部4中循环的热介质6能够均匀地加热到高温。 此外,能够防止来自集热部4的辐射,从而能够有效地收集用于将热介质6加热到高温的热。 版权所有(C)2008,JPO&INPIT
    • 42. 发明专利
    • Heat collector
    • 热收集器
    • JP2008185299A
    • 2008-08-14
    • JP2007020824
    • 2007-01-31
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • YOTSUYA NORIOTOMITA HIDEOKONAKAWA KATSUZO
    • F24S23/71F24S50/20
    • F24J2/07F24J2/14F24J2/541Y02E10/41Y02E10/45Y02E10/47
    • PROBLEM TO BE SOLVED: To keep a temperature of a heat medium at high temperatures by receiving solar light toward a focal point of a parabolic reflector by heat collecting tubes. SOLUTION: This heat collector 25 is composed of the parabolic reflector 1 for collecting solar light, the plurality of heat collecting tubes 5 disposed around the focal point 2 of the parabolic reflector 1 for circulating the heat medium 6, a heat collecting portion 4 constituted by connecting the plurality of heat collecting tubes 5 into one passage, and an exterior 22 receiving the parabolic reflector 1 and the heat collecting portion 4, so that the solar light toward the focal point 2 of the parabolic reflector 1 is collected by the plurality of heat collecting tubes 5, and the heat medium 6 distributed in the heat collecting portion 4 can be heated to high temperatures. Further as the heat collecting portion 4 is constituted by disposing the plurality of heat collecting tubes 5 around the focal point 2 of the parabolic reflector 1, the solar light is collected in the plurality of heat collecting tubes 5 at all times, the radiation from the heat collecting portion 4 is reduced, and heat collecting efficiency can be improved. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过采集通过集热管朝向抛物面反射器的焦点接收太阳光来将热介质的温度保持在高温。 解决方案:该集热器25由用于收集太阳光的抛物面反射器1,多个集热管5设置在抛物面反射器1的焦点2周围,用于循环热介质6,集热部分 通过将多个集热管5连接成一个通道而构成,以及接收抛物面反射体1和集热部4的外部22,使得朝向抛物面反射体1的焦点2的太阳光被 多个集热管5和分布在集热部4中的热介质6可以被加热到高温。 此外,通过将多个集热管5设置在抛物面反射体1的焦点2周围而构成集热部4,太阳光总是被收集在多个集热管5中,来自 集热部4减少,能够提高集热效率。 版权所有(C)2008,JPO&INPIT
    • 43. 发明专利
    • Modular inflatable multi-function outdoor stretched possible type device and a method for manufacturing
    • 空值
    • JP2007513318A
    • 2007-05-24
    • JP2006542779
    • 2004-12-06
    • エッシグ ジェイムス ミッシェルESSIG,James Michaelエッシグ ジョン レイモンド ジュニアESSIG,John Raymond,Jr
    • ジェイムス ミッシェル エッシグジョン レイモンド ジュニア エッシグ
    • F24S23/00B01D61/06C02F1/14C02F1/44F24S23/71G10K11/28H01Q15/16
    • B01D61/06A01K61/60C02F1/14C02F1/441F24J2/125F24J2/5271G10K11/28H01Q15/163Y02A20/212Y02A40/826Y02E10/42Y02E10/47Y02P60/64Y02W10/33Y02W10/37
    • 【課題】膨張可能装置は完全に折りたためることで携帯性が向上するモジュール式膨張可能多機能野外展張可能型装置と製造方法を提供する。
      【解決手段】モジュール式、膨張可能、多機能、野外展張可能型装置モジュール式、膨張可能、多機能、野外展張可能型装置600であって、その好ましい実施態様で、膨張可能な反射装置610を有し、反射装置は(1)加熱および調理、(2)電力発電、(3)無線信号の送受信の強化、(4)低照度環境での視界の増強や(5)光学信号または映像の投射のための太陽エネルギーを含む紫外線(UV)放射を通しての無線周波数放射線(RF)からの電磁エネルギーを集束するために、膨張可能リングの加圧変形性反射カバーから作られる少なくとも1つの製造放物面鏡を具備するものである装置。 装置はまた、例えば水の収集と保管、流体流エネルギーの利用および/または波エネルギーの利用といった非電磁的な使用法を有する。 膨張可能反射装置610の第一の主な実施態様は通常2枚の加圧変形性膜を利用するもので、そのうちの少なくとも1つは反射性能を有する。 第2の主な実施態様では、反射膜と透明膜を利用する。 モジュール式の装置600は、反射器装置610に加えて、用途を広くし、使用を容易に、および/または、安全性を高めるため通常モジュール式の組立部品例えば、モジュール式の支持と正位置配置用組立部品612、別の支持リング614、安全シールドまたはケージ616、焦点支持組立部品618、安全カバー620、安全ネットまたは安全網622、安定組立部品624などを更に含む。
      【選択図】 図1A
    • 一种多功能可现场部署的资源利用装置,在其实施例中具有可充气反射器装置,该装置包括至少一个制造的抛物面反射镜,其由可充气环的压力可变形反射覆盖物制成,用于聚焦来自射频辐射的RF )通过包括太阳能的紫外线(UV)辐射。 可膨胀反射器装置的第一主要实施例通常使用两个压力可变形膜,其中至少一个是反射性的。 第二主要实施例使用反射膜和透明膜。 除了反射器装置之外,模块化装置通常还包括模块化组件以增加便于使用的多功能性和/或增强安全性,例如模块化支撑和定向组件,单独的支撑环,安全屏蔽或保持架, 焦点支撑组件,安全盖,安全网或网,以及稳定组件。 通过充气装置的完全塌缩来增强便携性。
    • 45. 发明专利
    • Solar heat collection and heat radiation apparatus
    • 太阳能热收集和热辐射装置
    • JP2005326140A
    • 2005-11-24
    • JP2005114182
    • 2005-04-12
    • Showa Denko Kk昭和電工株式会社
    • TAKE KOICHIROHIRANO TOMOYATAMURA SHINOBU
    • F24S10/70F24S23/71F24J2/24F24J2/12
    • F24J2/10F24J2/24F24J2002/1019F24J2002/108F24J2002/241Y02E10/44
    • PROBLEM TO BE SOLVED: To provide a solar heat collection and heat radiation apparatus easy to assemble and mass-producible.
      SOLUTION: The solar heat collection apparatus 1 comprises a hollow box-shaped casing 2; a plurality of cup-like reflectors 3 arranged within the casing 2, each reflector having a reflecting surface 3a on the inside surface and opened at the upper end; a holding member 4 holding the reflectors 3 in the casing 2; and a fluid distribution pipe 5 arranged under the reflectors 3 within the casing 2. Each reflector 3 has an outer shape gradually extended upward. A plurality of reflector fitting holes 13 smaller than the outer shape of the upper end of the reflectors 3 are formed through in the holding member 4. The reflectors 3 are held by the holding member 4 by being fitted to the reflector fitting holes 13.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供易于组装和大规模生产的太阳能热收集和热辐射装置。 太阳能热收集装置1包括中空的箱形壳体2; 布置在壳体2内的多个杯形反射器3,每个反射器在内表面上具有反射面3a,在上端开口; 保持构件4,其将反射体3保持在壳体2中; 以及布置在壳体2内的反射器3下方的流体分配管5.每个反射器3具有向上逐渐延伸的外形。 多个反射器装配孔13比反射器3的上端的外形小,形成在保持部件4的内部。反射器3通过装配到反射器装配孔13而被保持部件4保持。 P>版权所有(C)2006,JPO&NCIPI
    • 46. 发明专利
    • Installation structure of compound parabolic concentrator type reflection plate, solar heat collector, operation method for solar heat collector, radiation cooler and operation method for radiation cooler
    • 复合抛物面浓缩器类型反射板,太阳能热收集器,太阳能热收集器的操作方法,辐射冷却器和辐射冷却器的操作方法的安装结构
    • JP2005114342A
    • 2005-04-28
    • JP2004271991
    • 2004-09-17
    • Showa Denko Kk昭和電工株式会社
    • TAMURA SHINOBU
    • F24S23/71F24S10/70F24S90/00F24J2/12F24J2/24F24J2/42
    • F24J2/1047F24J2/24F24J2002/1042Y02E10/44
    • PROBLEM TO BE SOLVED: To provide an installation structure of a CPC type reflection plate capable of easily installing the CPC type reflection plate to a holding frame at a low cost. SOLUTION: By arranging a plurality of CPC type reflection plates 2 side by side and integrating them, a reflection plate unit 5 is formed. The CPC type reflection plates 2 in both the ends of the reflection plate unit 5 are each provided with one leg part 6. A holding member 17 is fixed to the holding frame 4. The holding member 17 is formed with two cutouts 18 allowing fitting-in of both the leg parts 6 at an interval of an interval between both the leg parts 6 or below in the longitudinal direction. Each the leg part 6 is formed with a projecting engagement part 7 such that the projecting engagement part 7 projects to the other leg part 6 side. Each side edge of both the cutouts 18 is formed with a recessed engagement part 19 allowing fitting-in of the projecting engagement part 7 of the leg part 6. The leg part 6 of the CPC type reflection plate 2 of the reflection plate unit 5 is fitted into the cutout 18 of the holding member 17, and the engagement parts 7, 19 are engaged with each other. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够以低成本容易地将CPC型反射板安装到保持框架的CPC型反射板的安装结构。 解决方案:通过并排设置多个CPC型反射板2并将其集成,形成反射板单元5。 反射板单元5的两端的CPC型反射板2均设置有一个脚部6.保持构件17固定在保持框架4上。保持构件17形成有两个切口18, 在两个腿部6之间以两个腿部6之间的间隔的间隔在纵向方向上。 每个腿部6形成有突出接合部7,使得突出接合部7突出到另一个腿部6侧。 两个切口18的每个侧边缘都形成有可嵌入脚部6的突出接合部分7的凹入接合部分19.反射板单元5的CPC型反射板2的腿部6是 装配到保持构件17的切口18中,并且接合部7,19彼此接合。 版权所有(C)2005,JPO&NCIPI
    • 48. 发明专利
    • Solar beam concentrator
    • 太阳能光束集中器
    • JP2003074988A
    • 2003-03-12
    • JP2001269588
    • 2001-09-05
    • Seishiro Munehira聖士郎 宗平
    • MUNEHIRA SEISHIRO
    • F24S23/71H01L31/052H01Q15/16F24J2/12
    • F24J2/125Y02E10/42Y02E10/52
    • PROBLEM TO BE SOLVED: To make a light concentrator for concentrating beams of solar light or receiving radio waves at a low cost, to reduce the weight of the concentrator and materialize easy transportation and installation, in relation to utilization of solar energy and reception of radio waves. SOLUTION: The light concentrator has an airtight gas-film structure made by combining a permeable film having a high transmission of light or radio wave and a reflective film having a high reflectivity of light or radio wave. The reflective film 2 having a high reflectivity when being filled with a gas is formed in a parabolic face or a similar shape capable of replacing the parabolic shape. A light concentrating system comprises a plurality of the light concentrators arranged with wires 13 and simultaneously controlled so as to pursue a direction. Thus, a light-weighted, high precision parabola reflection mirror and a parabola antenna are produced at a low cost.
    • 要解决的问题:为了使用于集中太阳光束或者以低成本接收无线电波的聚光器,为了减少聚光器的重量并实现易于运输和安装,关于太阳能的利用和无线电的接收 波浪。 解决方案:集光器具有通过组合具有高透光率或无线电波的透光膜和具有高反射率的光或无线电波的反射膜而形成的气密膜结构。 当填充有气体时具有高反射率的反射膜2形成为能够替代抛物线形状的抛物线面或类似形状。 集光系统包括多个聚光器,其布置有电线13并同时被控制以便追求方向。 因此,以低成本生产轻量级,高精度抛物线反射镜和抛物面天线。
    • 49. 发明专利
    • REFLECTION SURFACE MEMBER FOR SOLAR HEAT COLLECTING DEVICE AND ITS MANUFACTURING METHOD
    • JP2002228271A
    • 2002-08-14
    • JP2001027742
    • 2001-02-05
    • EXEDY CORP
    • FUKUTAKE HEIJIYANO HITOSHISAEGUSA KENJI
    • F24S10/70F24S23/70F24S23/71F24S23/74F24J2/24F24J2/12
    • PROBLEM TO BE SOLVED: To provide a reflection surface member for a solar heat collecting device to facilitate manufacture and enable high efficient reflection of solar light to a solar heat collector without damaging light collection (heat collection) efficiency. SOLUTION: A reflection member for a solar heat collecting device where one or a plurality of heat collection units 2 each provided with a tubular heat collecting body provided at an internal part with a fluid passage and a reflection surface member 4 to partially surround the heat collecting body are situated is provided with a frame part 41 formed by molding a resin material and having a gutter-form groove and a heat insulation layer to cover the back of the groove, and a reflection plate 42 fitted in the gutter-form groove of the frame part, and this constitution enables the manufacture of the high precise reflection surface member having high heat insulation property at a low cost. Especially by partially forming a gap between the frame part 41 and the back of the reflection plate 42, it is functioned as an escape during fitting-in and even when a resin and a metal different in a thermal expansion coefficient are combined together, it is functioned as an escape for thermal deformation during use. Thus, breakage due to a thermal stress can be prevented from occurring, shape stability is improved, and in its turn, the reliability of the heat collecting device is improved.
    • 50. 发明专利
    • SOLAR HEAT COLLECTING DEVICE
    • JP2001221514A
    • 2001-08-17
    • JP2000033390
    • 2000-02-10
    • EXEDY CORPSAITO TAKEO
    • FUKUTAKE HEIJIYANO HITOSHISAITO TAKEO
    • F24S23/74F24S23/71F24J2/14F24J2/12
    • PROBLEM TO BE SOLVED: To provide a solar heat collecting device the light (heat) collecting efficiency of which is not deteriorated and which can be manufactured easily. SOLUTION: This solar heat collecting device has a tubular solar heat collecting body and a reflecting plate which is extended along the collecting body in a surrounding state so as to reflect sunlight toward the collecting body. The reflecting plate is formed in such a combined shape that its side face section is formed in a composite paraboloid and bottom face section is formed in a flat or planar surface. Consequently, the shape of the reflecting plate becomes simple and the manufacture of the plate becomes easy. In addition, the light (heat) collecting efficiency of the plate becomes almost equal to that of a perfect composite parabololid. Particularly, when the paired bottommost sections of the composite paraboloid of the reflecting plate are formed in planer shapes, the shape of the plate is more simplified and the manufacture of the plate becomes easier. Alternatively, when the bottommost sections are formed in a combination of planes closely resembling composite paraboloids, the light collecting rate of the reflecting plate is not deteriorated and both higher light (heat) collecting efficiency and easier manufacture can be realized at higher levels.