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公开(公告)号:JP5616362B2
公开(公告)日:2014-10-29
申请号:JP2011546795
申请日:2010-01-22
Inventor: ダニエル・ケルシュゲンス , ノルベルト・ズストル , カール・アルブレヒト・ヴァルトシュタイン−ヴァルテンベルク , フランツ・グラプラー−フリッツ
CPC classification number: C02F1/14 , B01D1/0023 , B01D1/221 , B01D5/0039 , B01D5/006 , B01D5/0087 , C02F1/18 , C02F2103/08 , C02F2201/003 , C02F2201/009 , C02F2209/02 , C02F2209/40 , C02F2209/42 , C02F2301/046 , F24J2/0015 , Y02A20/128 , Y02A20/129 , Y02A20/142 , Y02A20/212 , Y02B30/52 , Y02E10/40 , Y02W10/37
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公开(公告)号:JP5579924B2
公开(公告)日:2014-08-27
申请号:JP2013506458
申请日:2011-02-24
Applicant: 大千 陳
Inventor: 大千 陳
CPC classification number: F03B13/262 , B01D3/06 , B01D3/103 , C02F1/04 , C02F1/14 , C02F2103/08 , C02F2201/009 , C02F2301/063 , F03D9/008 , F05B2220/62 , F05B2220/702 , F05B2260/42 , Y02A20/128 , Y02A20/129 , Y02A20/141 , Y02A20/142 , Y02A20/144 , Y02A20/212 , Y02E10/28 , Y02E10/38 , Y02E10/72 , Y02P70/34 , Y02P80/22 , Y02W10/33 , Y02W10/37
Abstract: A tidal energy seawater desalination system wherein a seawater evaporation tower is configured with a vacuum pump which connects with a tidal energy power device, and connects a seawater evaporation tower via pipelines, an output end of the pump connects a steam condensation tower via pipelines; alternatively the evaporation tower comprises a floating barrel and a stationary barrel, the floating barrel connects with the power device, the top of the stationary barrel connecting the steam condensation tower via pipelines; the pipeline introducing the steam into the condensation tower first connects a steam pressure tank, a steam turbine connects the tank via pipelines, the power output shaft of the turbine connects generator sets, and in turn, the turbine connecting the condensation tower via pipelines, such that the system is also a power generation system; on the offshore of which is provided with solar water heater and wind driven generator.
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公开(公告)号:JP5460877B2
公开(公告)日:2014-04-02
申请号:JP2012532722
申请日:2010-09-06
Applicant: 株式会社日立製作所
CPC classification number: F01D15/08 , B01D61/025 , B01D61/06 , B01D61/10 , B01D61/12 , B01D65/02 , B01D2311/04 , B01D2311/103 , B01D2313/246 , B01D2313/365 , B01D2321/04 , B01D2321/14 , C02F1/001 , C02F1/441 , C02F1/52 , C02F2103/08 , C02F2201/009 , C02F2303/10 , C02F2303/16 , F01D15/10 , F02C7/143 , F05B2220/62 , F24J2/42 , Y02A20/131 , Y02A20/142 , Y02A20/212 , Y02B10/20 , Y02B30/52 , Y02E10/40 , Y02P80/24 , Y02W10/30
Abstract: A gas turbine power generation system capable of efficiently and continuously supplying both electric power and service water is provided. A gas turbine power generation system is provided with a gas turbine (1) for driving a power generator, a service water production facility (30) for producing service water by desalinating raw water, a solar heat collection device (21), an absorption heat pump (22) for producing warm water and cold water by solar heat obtained by the heat collection device, an intake air cooling device (8) for cooling intake air of the gas turbine by the cold water produced by the absorption heat pump, and a raw water heater (13) for increasing the temperature of the raw water to be desalinated by the service water production facility by the warm water produced by the absorption heat pump.
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公开(公告)号:JP5420905B2
公开(公告)日:2014-02-19
申请号:JP2008538503
申请日:2006-10-05
Applicant: 株式会社日省エンジニアリング , 健三 平久井
Inventor: 健三 平久井
CPC classification number: C01B13/11 , C02F1/006 , C02F1/481 , C02F1/78 , C02F2201/009 , C02F2201/782 , C02F2201/784 , C02F2301/024 , C02F2301/026 , C02F2303/04 , C02F2307/06 , Y02A20/212 , Y10S261/42
Abstract: An apparatus for producing water having dissolved ozone therein of the type direct-connectable to a pressurized-water supply faucet (26) includes a nozzle (5) for directing a flow of pressurized water from the supply faucet (26) to a turbine (1) to effect rotation thereof, the turbine (1) having magnets (13) attached thereto magnetically coupled to corresponding magnets (13) attached to a disc (14) of a power generator (3). Rotation of the turbine (1) is magnetically coupled to the power generator (3) to generate electrical power for supply to an ozone generator to generate ozone for combination with the so-supplied water to produce ozonated water.
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公开(公告)号:JP5410675B2
公开(公告)日:2014-02-05
申请号:JP2007516080
申请日:2005-05-16
Applicant: アクセス ビジネス グループ インターナショナル リミテッド ライアビリティ カンパニー
Inventor: ダブリュ. バールマン,デイビッド
CPC classification number: C02F1/325 , B01J19/123 , B01J2219/0877 , C02F1/001 , C02F1/283 , C02F2201/008 , C02F2201/009 , C02F2201/326 , Y02A20/212 , Y02W10/37
Abstract: A water treatment system has a battery rechargeable by a manual generator, thus eliminating the need for an external power source. The water treatment system uses the rechargeable battery to power a pump and a UV lamp. After the water passes through a filter, the UV lamp treats the water being pumped through the apparatus. The system optionally includes a flashlight, also powered by the rechargeable battery.
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公开(公告)号:JP5377761B2
公开(公告)日:2013-12-25
申请号:JP2012513890
申请日:2010-08-09
Applicant: エココ カンパニー リミテッド
IPC: C02F3/20 , B01F1/00 , B01F3/04 , B01F5/00 , B01F5/06 , B01F7/16 , B01F7/22 , C02F3/22 , C02F7/00
CPC classification number: C02F7/00 , C02F1/74 , C02F2201/009 , Y02A20/212 , Y02W10/15 , Y02W10/37
Abstract: Provided is a water circulation device. The water circulation device comprises: a corrugated draft tube including a main body which has a hollow cylindrical shape, and which is arranged in a water area, a main inlet port which is formed in a lower end of the main body to enable water stagnating in a lower layer of the water area to be fed therethrough, a plurality of sub-inlet ports which are formed at a side wall of the main body to enable water adjacent to the side wall to be fed therethrough; and a diffusion portion formed on the top of the main body to discharge the fed water to an upper layer of the water area adjacent to the top of the main body. Water fed into the draft tube is discharged to the upper layer of the adjacent water area via the diffusion portion by an impeller which rotates in a predetermined direction by means of a driving motor. Thus, water in the water area circulates in an efficient manner, and the formation of a dead zone is prevented.
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公开(公告)号:JP2013240487A
公开(公告)日:2013-12-05
申请号:JP2012115880
申请日:2012-05-21
Inventor: NIKAMOTO HIROYUKI
CPC classification number: C02F1/325 , A61L2/10 , A61L9/20 , C02F2201/009 , C02F2201/3221 , C02F2201/3222 , C02F2201/3228 , Y02A20/212
Abstract: PROBLEM TO BE SOLVED: To provide a sterilizer for improving sterilization efficiency while being reduced in size.SOLUTION: In a sterilization device 100 including a housing 110 that has a flow channel R for a fluid to be sterilized, and an LED element 122 that is provided in the housing 110 and applies ultraviolet rays into the flow channel R, the inner wall surface of the flow channel R has a pair of reflecting surfaces (first reflecting surface 111, second reflecting surface 112) that cause the ultraviolet rays applied from the LED element 122 to be reflected multiple times while directing them from one end of the flow channel R to the other, and the first reflecting surface 111 side is provided with a return surface 111a, which is configured from a surface perpendicular to the optical axis of light after being reflected multiple times from one end to the other and which returns the light toward the original direction.
Abstract translation: 要解决的问题:提供一种在减小尺寸的同时提高灭菌效率的灭菌器。解决方案:在包括具有用于待灭菌流体的流路R的壳体110的灭菌装置100中,以及LED元件122 设置在壳体110内并向流路R施加紫外线,流路R的内壁面具有使从LED发出的紫外线的一对反射面(第一反射面111,第二反射面112) 元件122多次反射,同时将它们从流动通道R的一端引导到另一端,并且第一反射面111侧设置有从垂直于光的光轴的表面构成的返回面111a 在从一端到另一端多次反射并且将光朝向原始方向返回。
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公开(公告)号:JPWO2012032557A1
公开(公告)日:2013-10-31
申请号:JP2012532722
申请日:2010-09-06
Applicant: 株式会社日立製作所
CPC classification number: F01D15/08 , B01D61/025 , B01D61/06 , B01D61/10 , B01D61/12 , B01D65/02 , B01D2311/04 , B01D2311/103 , B01D2313/246 , B01D2313/365 , B01D2321/04 , B01D2321/14 , C02F1/001 , C02F1/441 , C02F1/52 , C02F2103/08 , C02F2201/009 , C02F2303/10 , C02F2303/16 , F01D15/10 , F02C7/143 , F05B2220/62 , F24J2/42 , Y02A20/131 , Y02A20/142 , Y02A20/212 , Y02B10/20 , Y02B30/52 , Y02E10/40 , Y02P80/24 , Y02W10/30
Abstract: 電力と用水の双方を効率的かつ継続的に供給可能なガスタービン発電システムを提供する。発電機を駆動するガスタービン(1)と、原水を淡水化して用水を製造する用水製造設備(30)と、太陽熱集熱装置(21)と、該集熱装置で得られた太陽熱により温水と冷水を生成する吸収式ヒートポンプ(22)と、該吸収式ヒートポンプで生成された冷水により前記ガスタービンの吸気を冷却する吸気冷却装置(8)と、前記吸収式ヒートポンプで生成された温水により、前記用水製造設備で淡水化する原水を昇温させる原水加熱器(13)を備える。
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公开(公告)号:JP2013525101A
公开(公告)日:2013-06-20
申请号:JP2013506458
申请日:2011-02-24
Applicant: 大千 陳
Inventor: 大千 陳
CPC classification number: F03B13/262 , B01D3/06 , B01D3/103 , C02F1/04 , C02F1/14 , C02F2103/08 , C02F2201/009 , C02F2301/063 , F03D9/008 , F05B2220/62 , F05B2220/702 , F05B2260/42 , Y02A20/128 , Y02A20/129 , Y02A20/141 , Y02A20/142 , Y02A20/144 , Y02A20/212 , Y02E10/28 , Y02E10/38 , Y02E10/72 , Y02P70/34 , Y02P80/22 , Y02W10/33 , Y02W10/37
Abstract: 潮汐エネルギー海水脱塩システム(200,300)は、潮汐エネルギー発電装置と、海水蒸発塔(30,40)と、蒸気凝縮塔(31)とを備える。 上記海水蒸発塔(30)は、潮汐エネルギー発電装置と接続する真空ポンプ(32)を有し、パイプラインを介して海水蒸発塔(40)に接続され、この真空ポンプ(32)の出力端が、パイプラインを介して海水蒸発塔に接続される。 あるいは、上記海水蒸発塔(40)は、浮動樽(41a)と固定樽(41b)とを有する。 この浮動樽は、潮汐エネルギー発電装置と接続している。 固定樽の底部は海水を受けるために用いられ、一方、固定樽の上部はパイプラインを介して蒸気凝縮塔に接続される。 この蒸気凝縮塔(31)は、パイプラインを介して真水レシーバーに接続される。 蒸気を蒸気凝縮塔に導くパイプラインは、最初に、蒸気圧力タンク(98)に接続され、この蒸気圧力タンク(98)は蒸気を受け取り貯蔵する。 この蒸気圧力タンク(98)には、パイプラインを介して蒸気タービンが接続されている。 蒸気タービン(99)の出力シャフトが発電装置セットに接続される一方、蒸気タービン(99)がパイプラインを介して蒸気凝縮塔(31)に接続されて、海水脱塩システムが発電システムでもあるようにする。 海上に、太陽光温水ヒータと風力発電装置とが設けられ、一体利用システムを形成し、潮汐エネルギーの産業上の利用を実現する。
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公开(公告)号:JP5166542B2
公开(公告)日:2013-03-21
申请号:JP2010531247
申请日:2008-10-23
Applicant: アクセス ビジネス グループ インターナショナル リミテッド ライアビリティ カンパニー
Inventor: デイビッド ダブリュー. バーマン, , ピエール ベッカー, , マーク マーシャル,
CPC classification number: F03B1/00 , C02F1/283 , C02F1/32 , C02F2201/009 , F03B3/04 , F03B3/186 , F03B13/00 , F03B13/10 , F05B2220/20 , F05B2220/602 , F05B2220/604 , F05B2240/133 , F05B2240/2411 , F05B2250/82 , H02K7/1823 , Y02A20/212 , Y02B10/50 , Y02E10/22 , Y02E10/223 , Y02E10/28
Abstract: A miniature hydro-power generation system includes an outer housing and an inner housing. The outer housing may receive a flow of liquid flowing in a first direction at a predetermined range of pressure. The flow of liquid may be decreased by a predetermined amount of pressure and increased by a predetermined amount of velocity and channeled to a hydro-generator included in the inner housing with an inlet nozzle. The flow of liquid may be channeled with the inlet nozzle to flow in a second direction that is substantially perpendicular to the first direction. Upon transfer of kinetic energy in the flow of liquid to the hydro-generator, the inner housing may rotate in the second direction. The flow of liquid may then be channeled back to the first direction and out of the housing with an outlet nozzle. The outlet nozzle configured to increase the pressure and decrease the velocity of the flow of liquid to minimized non-laminar flow characteristics.
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