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    • 1. 发明授权
    • Exhaust heat recovery system
    • 废热回收系统
    • US07021056B2
    • 2006-04-04
    • US10467027
    • 2002-11-29
    • Kenji WatanabeTomonari Ito
    • Kenji WatanabeTomonari Ito
    • F02G1/00
    • F02G5/02F24D11/005F24D2200/26F24H2240/06F28D20/0034F28D21/0003F28D2020/0095Y02T10/166
    • The present invention relates to an exhaust heat recovery system that recovers exhaust heat that is generated by an electrical power generator for use in supplying hot water and air conditioning, and has as an object of providing an exhaust heat recovery system that realizes reduced costs and has a high energy efficiency. The exhaust heat recovery system provides a heat exchanger HEX1 for exhaust heat recovery that heats heating medium by heat exchange between exhaust gas generated at the power generator and heating medium that is circulated and used in a predetermined facility. In addition, the exhaust heat recovery system comprises a tank 13 that temporarily stores the heating medium, and an open-air pipe 41 that releases the contents of the tank 13.
    • 本发明涉及一种回收由用于供应热水和空调的发电机产生的排热的排气热回收系统,其目的在于提供实现降低成本的废热回收系统,并具有 能源效率高。 废热回收系统提供一种用于废热回收的热交换器HEX 1,其通过在发电机产生的排气与在预定设施中循环使用的加热介质之间的热交换来加热加热介质。 此外,废热回收系统包括临时存储加热介质的罐13和释放罐13的内容物的露天管41。
    • 2. 发明申请
    • Heat pump using gas hydrate, and heat utilizing apparatus
    • 使用天然气水合物的热泵和热利用设备
    • US20050155355A1
    • 2005-07-21
    • US10510394
    • 2003-12-10
    • Kenji WatanabeTomonari ItoTomohiro Ogawa
    • Kenji WatanabeTomonari ItoTomohiro Ogawa
    • F25B23/00F25B30/00F25D5/00F25B1/00F25B13/00
    • F25B30/00F25B23/00F25B2315/003
    • The object of the present invention is to provide a heat pump having a high coefficient of performance (COP), and a heat utilizing apparatus that allows the obtaining of high energy efficiency by using that heat pump. The heat pump, comprising a refrigerant circuit 13 that contains a decomposer 20 in which a gas hydrate decomposition process is carried out and a former 25 in which a gas hydrate formation process is carried out. This refrigerant circuit 13 imparts heat to a high-temperature object in the gas hydrate formation process by taking up heat from a low-temperature object in the gas hydrate decomposition process. In addition, the heat pump comprises at least an excess water separator 40 that separates excess water from the gas hydrate formed in former 25, or a compression system that sends gas and liquid which are decomposition products of the gas hydrate decomposed in decomposer 20 to former 25 after compressing and mixing.
    • 本发明的目的是提供一种具有高性能系数(COP)的热泵以及允许通过使用该热泵获得高能量效率的热利用装置。 该热泵包括制造回路13,该制冷剂回路13包含进行气体水合物分解处理的分解器20和进行气体水合物形成处理的前者25。 该制冷剂回路13通过在气体水合物分解处理中从低温物体吸收热量而在气体水合物形成工序中向高温物体施加热量。 此外,热泵至少包括多余的水分离器40,其将多余的水与前者25中形成的气体水合物分离,或将作为分解器20中分解的气体水合物的分解产物的气体和液体的压缩系统分配给前者 25压缩混合后。
    • 3. 发明授权
    • Heat pump using gas hydrate, and heat utilizing apparatus
    • 使用天然气水合物的热泵和热利用设备
    • US07260940B2
    • 2007-08-28
    • US10510394
    • 2003-12-10
    • Kenji WatanabeTomonari ItoTomohiro Ogawa
    • Kenji WatanabeTomonari ItoTomohiro Ogawa
    • F25D5/00F25B23/00
    • F25B30/00F25B23/00F25B2315/003
    • The object of the present invention is to provide a heat pump having a high coefficient of performance (COP), and a heat utilizing apparatus that allows the obtaining of high energy efficiency by using that heat pump.The heat pump, comprising a refrigerant circuit 13 that contains a decomposer 20 in which a gas hydrate decomposition process is carried out and a former 25 in which a gas hydrate formation process is carried out. This refrigerant circuit 13 imparts heat to a high-temperature object in the gas hydrate formation process by taking up heat from a low-temperature object in the gas hydrate decomposition process. In addition, the heat pump comprises at least an excess water separator 40 that separates excess water from the gas hydrate formed in former 25, or a compression system that sends gas and liquid which are decomposition products of the gas hydrate decomposed in decomposer 20 to former 25 after compressing and mixing.
    • 本发明的目的是提供一种具有高性能系数(COP)的热泵以及允许通过使用该热泵获得高能量效率的热利用装置。 该热泵包括制造回路13,该制冷剂回路13包含进行气体水合物分解处理的分解器20和进行气体水合物形成处理的前者25。 该制冷剂回路13通过在气体水合物分解处理中从低温物体吸收热量而在气体水合物形成工序中向高温物体施加热量。 此外,热泵至少包括多余的水分离器40,其将多余的水与前者25中形成的气体水合物分离,或将作为分解器20中分解的气体水合物的分解产物的气体和液体的压缩系统分配给前者 25压缩混合后。
    • 4. 发明授权
    • Exhaust heat recovery system
    • 废热回收系统
    • US06938417B2
    • 2005-09-06
    • US10467025
    • 2002-11-29
    • Kenji WatanabeTomonari Ito
    • Kenji WatanabeTomonari Ito
    • F02C6/18F02G5/02F02G5/04F24D11/00F02G1/00
    • F02G5/02F02C6/18F02G5/04F24D11/005F24D2200/26F24H2240/06F28D20/0034F28D21/0003F28D2020/0095Y02T10/166
    • The present invention relates to an exhaust heat recovery system that recovers exhaust that is generated by an electrical power generator for use in supplying hot water and air conditioning, and has an object providing an exhaust heat recovery system that realizes reduced costs and has a high energy efficiency. The exhaust heat recovery system provides a heat exchanger HEX1 for exhaust heat recovery that uses the heat of the exhaust gas generated by an electrical power generator to heat a heating medium that is circulated and used in a predetermined facility, and heats the heating medium by carrying out heat exchange between the exhaust gas and the heating medium, a temperature detecting device TC2 that detects the temperature of the heating medium heated by the heat exchanger HEX1 for exhaust heat recovery, and a control valve V1 that controls the amount of exhaust gas fed to the heat exchanger HEX1 for exhaust heat recovery based on the detected results of the temperature detecting device TC2.
    • 本发明涉及一种废热回收系统,其回收由用于供应热水和空调的发电机产生的排气,并且具有提供实现降低成本并具有高能量的废热回收系统的物体 效率。 废热回收系统提供一种用于废热回收的热交换器HEX 1,其利用由发电机产生的排气的热量来加热在预定设施中循环使用的加热介质,并且通过 在排气和加热介质之间进行热交换,检测由用于排气热回收的热交换器HEX 1加热的加热介质的温度的温度检测装置TC2以及控制阀 基于温度检测装置TC2的检测结果将废气送入热交换器HEX1,进行废热回收。
    • 6. 发明授权
    • Induction heat cooking device capable of preheating object using an output value of an infrared sensor
    • 感应加热烹调器能够使用红外线传感器的输出值对物体进行预热
    • US08796599B2
    • 2014-08-05
    • US12918268
    • 2009-02-19
    • Kuniaki SakakibaraShintaro NoguchiYoshiaki IshioHiroshi TominagaKenji Watanabe
    • Kuniaki SakakibaraShintaro NoguchiYoshiaki IshioHiroshi TominagaKenji Watanabe
    • H05B6/12
    • H05B6/1209H05B6/062H05B2213/04H05B2213/07
    • An induction heat cooking device is provided that finishes preheating in a short time and maintains the temperature obtained at the finish of the preheating. When a preheating heating mode is selected as an operation mode, a control unit (8) arranged in the induction heat cooking device starts operation in a preheating mode in which a cooking container is heated with a first heating output. When an increment of an output value of an infrared sensor exceeds a first predetermined increment since the heating starts with the first heating output, the control unit causes a notification unit to notify a user that the preheating is finished, and the operation mode is changed to a waiting mode for performing heating with a second heating output that is lower than the first heating output. Further, when the user sets a heating power by means of a heating power setting unit in the preheating mode, the control unit prohibits changing to the heating power set by the user. When the user sets a heating power by means of a heating power setting unit in the waiting mode, the control unit permits changing to the heating power set by the user, and the operation mode is changed to a heating mode for performing heating with a third heating output corresponding to the heating power set by the user.
    • 提供一种在短时间内完成预热并保持在预热结束时获得的温度的感应加热烹饪装置。 当选择预热加热模式作为操作模式时,设置在感应加热烹饪装置中的控制单元(8)在以第一加热输出加热烹饪容器的预热模式下开始操作。 当从第一加热输出开始加热红外线传感器的输出值的增量超过第一预定增量时,控制单元使通知单元通知用户预热结束,并且将操作模式改变为 用于以比第一加热输出低的第二加热输出进行加热的等待模式。 此外,当用户在预热模式下通过加热功率设定单元设定加热功率时,控制单元禁止改变为由用户设定的加热功率。 当用户在等待模式下通过加热功率设定单元设置加热功率时,控制单元允许改变为用户设定的加热功率,并且将操作模式改变为用第三个加热模式进行加热的加热模式 加热输出对应于用户设定的加热功率。
    • 8. 发明申请
    • ADVERTISEMENT DISTRIBUTION SYSTEM
    • 广告分发系统
    • US20130232015A1
    • 2013-09-05
    • US13885111
    • 2011-10-03
    • Kenji WatanabeAkira Tojima
    • Kenji WatanabeAkira Tojima
    • G06Q30/02
    • G06Q30/0277G06Q30/0251
    • A terminal communicating with a server includes an output unit for outputting information received through a communication line, an information accepting unit for accepting information related to the terminal, and an advertisement request unit for transmitting an advertisement request including the information related to the terminal to the server. The server includes an advertisement storage unit for storing beforehand advertisement information and information corresponding to each advertisement information that is related to a terminal as a distribution target of the advertisement information. The information related to the terminal indicates market information that designates a sales channel of the terminal. The server reads out the advertisement information corresponding to the information related to the terminal in the received advertisement request from the advertisement storage unit and transmits the read advertisement information to the terminal.
    • 与服务器通信的终端包括用于输出通过通信线路接收的信息的输出单元,用于接受与终端相关的信息的信息接收单元,以及广告请求单元,用于将包括与终端有关的信息的广告请求发送到 服务器。 服务器包括广告存储单元,用于预先存储广告信息和与终端相关的每个广告信息对应的信息作为广告信息的分发目标。 与终端相关的信息表示指定终端的销售信道的市场信息。 服务器从广告存储单元中读出与接收到的广告请求中的与终端相关的信息相对应的广告信息,并向终端发送读取的广告信息。
    • 10. 发明申请
    • HETEROLOGOUS EXPRESSION OF FUNGAL POLYKETIDE SYNTHETIC GENE IN YEAST
    • 真菌多聚核苷酸合成基因的异位表达
    • US20130171698A1
    • 2013-07-04
    • US13816826
    • 2011-08-11
    • Kenji WatanabeHisao Moriya
    • Kenji WatanabeHisao Moriya
    • C12P19/34
    • C12P19/34C12N15/52C12N15/80C12N15/815C12P17/06C12P21/02
    • The present invention relates to a method of removing an intron contained in a gene from a eukaryotic gene, and linking only the exon sequences to prepare an expression vector comprising the linked sequences. Specifically, the invention relates to a method of preparing an expression vector containing linked exon sequences comprising amplifying exon sequences by PCR as one or more fragments from a giant fungal gene containing an intron, and linking the fragments together with a restriction enzyme-treated vector using the gap repair cloning method; a method of preparing an expression vector containing a full-length cDNA sequence by synthesizing and linking cDNA fragments from a fungal giant gene; a transformant having introduced therein an expression vector prepared by the method; a protein produced by the transformant; and a method of preparing a compound produced by the protein using the expression vector.
    • 本发明涉及从真核基因中除去包含在基因中的内含子的方法,并且仅连接外显子序列以制备包含连接序列的表达载体。 具体地,本发明涉及一种制备含有连锁外显子序列的表达载体的方法,其包括通过PCR扩增外显子序列作为来自含有内含子的巨型真菌基因的一个或多个片段,并将所述片段与限制酶处理的载体连接,使用 间隙修复克隆方法; 通过合成和连接来自真菌巨基因的cDNA片段制备含有全长cDNA序列的表达载体的方法; 在其中引入了通过该方法制备的表达载体的转化体; 由转化体产生的蛋白质; 以及使用表达载体制备由蛋白质产生的化合物的方法。