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    • 1. 发明授权
    • Adsorption refrigeration system
    • 吸附制冷系统
    • US4881376A
    • 1989-11-21
    • US158294
    • 1988-02-19
    • Yasuo YonezawaMasao MatsushitaKenzo OkuHiroki NakanoShin-ichi OkumuraMotoshi YoshiharaAkiyoshi SakaiAtsushi Morikawa
    • Yasuo YonezawaMasao MatsushitaKenzo OkuHiroki NakanoShin-ichi OkumuraMotoshi YoshiharaAkiyoshi SakaiAtsushi Morikawa
    • F25B17/08F25B39/02F25B49/04
    • F25B17/083F25B39/026F25B49/046Y02B30/62Y02B30/64
    • An adsorption refrigeration system comprising adsorption columns housing a solid adsorbent and heat transfer tubes and sealed with a refrigerant, an evaporator, a condenser, and pipe lines connecting them together so that the refrigerant may be circulated, the pipe lines being equipped with valves, preferably, butterfly valves, capable of opening or closing by means of internal pressure difference between the evaporator side and condenser side and driving force of eccentric valve shafts. The system is operated by alternatively changing over adsorption and desorption stages between the one adsorption column(s) and the other column(s) so that both columns may be at mutually reverse stages; shortly before change-over, transferring whole amount of heat remained in the one column(s) immediately before shifting from desorption to adsorption stage to the other column(s) immediately before shifting from adsorption to desorption stage where the preheat the adsorbent and then reversing the stages. The evaporator preferably comprises heat transfer tubes for passage of a heating medium on a utilization side arranged in multi-stage, evaporating plates holding the refrigerant liquid in which each stage of the tubes are partly immersed, and overflow members for adjusting the liquid level, whereby evaporating ebullition occurs briskly.
    • 一种吸附式制冷系统,其特征在于,包括吸附柱,该吸附塔容纳固体吸附剂和传热管,并用制冷剂,蒸发器,冷凝器和将它们连接在一起的管线进行密封,使得制冷剂可循环,管线配备阀门 蝶阀,能够通过蒸发器侧和冷凝器侧之间的内部压力差以及偏心阀轴的驱动力来打开或关闭。 该系统通过交替地改变一个吸附塔和另一个塔之间的吸附和解吸阶段来操作,使得两个柱可以处于相互反向的阶段; 在转换之前不久,在从吸附转移到吸附阶段之前立即在从吸附到吸附阶段转移到另一个柱之前,将一定量的热量保留在一个柱中,其中预吸附剂然后反转 阶段 蒸发器优选包括传热管,用于通过设置在多级蒸发板上的利用侧的加热介质,所述蒸发板保持其中各级部分浸没的制冷剂液体,以​​及用于调节液面的溢流部件,由此 蒸发沸腾快速发生。
    • 2. 发明授权
    • Method of operating adsorption refrigerator
    • 操作吸附式冰箱的方法
    • US5024064A
    • 1991-06-18
    • US479942
    • 1990-02-14
    • Yasuo YonezawaToshiya OhnishiShin-ichi OkumuraAkiyoshi SakaiHiroki NakanoMasao MatsushitaAtsushi MorikawaMotoshi Yoshihara
    • Yasuo YonezawaToshiya OhnishiShin-ichi OkumuraAkiyoshi SakaiHiroki NakanoMasao MatsushitaAtsushi MorikawaMotoshi Yoshihara
    • F25B17/08
    • F25B17/083Y02B30/62Y02B30/64
    • A method of operating an adsorption refrigerator comprising two adsorption columns each housing therein a solid adsorbent and heat transfer tubes and sealed with a refrigerant, a condenser, an evaporator, paths for refrigerant connnecting the adsorption columns to the condenser and evaporator so that the refrigerant may be circulated through the columns, and a pipeline equipped with a valve connecting directly the adsorption columns, which method comprises changing over the adsorption columns periodically alternately between adsorption and desorption phases in manner that the one and the other adsorption columns are at opposite phases and that a heat transfer medium on a heat source side and a coolant are routed through alternately in response to desorption and adsorption phases, respectively. Shortly before one cycle of adsorption and desorption phases is terminated, the paths for refrigerant are shut off and the valve is opened, the adsorption and desorption phases are further advanced between the columns while continuing to supply the heat transfer medium and coolant, thereby to finish the cycle, and subesquently, the valve is closed to change over to a next cycle of just opposite phases. Thus refrigeration efficiency is increased.
    • 一种操作吸附式制冷机的方法,所述吸附式制冷机包括两个吸附塔,每个吸附塔内装有固体吸附剂和传热管,并用制冷剂,冷凝器,蒸发器,冷凝器和蒸发器密封,用于使吸附塔连接到冷凝器和蒸发器的制冷剂路径, 循环通过柱,以及配备有直接连接吸附塔的阀的管道,该方法包括在吸附和解吸阶段之间周期性地交替排列吸附塔,使得一个和另一个吸附塔处于相反的阶段,并且 热源侧的传热介质和冷却剂分别响应于解吸和吸附相交替地布置。 在吸附和解吸阶段的一个周期结束之前不久,关闭制冷剂的路径并打开阀门,吸附和解吸阶段在柱之间进一步前进,同时继续供应传热介质和冷却剂,从而完成 循环,并且在次要的情况下,阀门关闭以转换到正好相反阶段的下一个循环。 因此,制冷效率提高。
    • 3. 发明授权
    • Adsorption thermal storage apparatus and adsorption thermal storage
system including the same
    • 吸附式蓄热装置和吸附式蓄热系统包括相同的
    • US5005371A
    • 1991-04-09
    • US525745
    • 1990-05-18
    • Yasuo YonezawaToshiya OhnishiShin'ichi OkumuraAkiyoshi SakaiHiroki NakanoMasao MatsushitaAtsushi MorikawaMotoshi Yoshihara
    • Yasuo YonezawaToshiya OhnishiShin'ichi OkumuraAkiyoshi SakaiHiroki NakanoMasao MatsushitaAtsushi MorikawaMotoshi Yoshihara
    • F24D11/02F25B17/08F25B25/02F25B29/00F28D20/00
    • F25B29/00F24D11/02F25B17/08F25B25/02F28D20/003Y02B30/126Y02B30/62Y02B30/64Y02E60/142
    • An adsorption thermal storage apparatus formed of an evacuated vessel comprising therein a refrigerant, and an adsorbent heating or cooling section and a refrigerant condensing or evaporating section located in communication with each other, the former section including an adsorbent and finned heat transfer tubes, the latter section including heat transfer tubes placed in dishes. An adsorption thermal storage system comprising the aforesaid apparatus; a heat source (e.g. a condenser of a compression refrigerator) for adsorbent heating; a cold source (e.g. an evaporator) for refrigerant condensation; an exothermic heat source (e.g. cooling tower); an endothermic heat source (e.g. air cooling coil); and a utilization equipment (e.g. air conditioner), the foregoing elements being connected so that during thermal storage period, the adsorbent heating or cooling section and the refrigerant condensing or evaporating section communicate with the heat source and the cold source, respectively, whereas during utilization period, the adsorbent section communicates with the exothermic heat source or heat utilization equipment and the refrigerant section communicates with cold utilization equipment or the endothermic heat source. By the desorption, the refrigerant is condensed and thermal energy is stored whereas cold is generated by latent heat of evaporation of the refrigerant liquid and heat, by adsorption heat of the refrigerant vapor, whereby heat and cold may be utilized singly or simultaneously.
    • 由其中包括制冷剂的真空容器和吸附剂加热或冷却部分和彼此连通的制冷剂冷凝或蒸发部分组成的吸附热存储装置,前部分包括吸附剂和翅片传热管,后者 部分包括放置在盘中的换热管。 一种包含上述装置的吸附热存储系统; 用于吸附剂加热的热源(例如压缩式冷冻机的冷凝器); 用于制冷剂冷凝的冷源(例如蒸发器); 放热热源(如冷却塔); 吸热热源(例如空气冷却盘管); 和使用设备(例如空调),上述元件连接,使得在热存储期间,吸附剂加热或冷却部分和制冷剂冷凝或蒸发部分别与热源和冷源连通,而在利用期间 期间,吸附部与放热热源或热利用设备连通,制冷剂部与冷热设备或吸热热源连通。 通过解吸,制冷剂被冷凝,并且通过制冷剂蒸气的吸附热量储存冷热,制冷剂液体的蒸发潜热和热量产生冷,从而可以单独或同时使用热和冷。
    • 4. 发明授权
    • Adsorption refrigerating apparatus
    • 吸附式制冷装置
    • US4709558A
    • 1987-12-01
    • US907201
    • 1986-09-12
    • Masao MatsushitaKenzo OkuHiroki NakanoShin-ichi Okumura
    • Masao MatsushitaKenzo OkuHiroki NakanoShin-ichi Okumura
    • F25B17/08F25B29/00F25B35/04
    • F25B17/08F25B29/006F25B35/04Y02B30/62Y02B30/64
    • An adsorption refrigerator includes a vacuum vessel within which a required amount of refrigerant is hermetically filled, and there are housed a first finned tube for routing therethrough a heating medium on the heat source side, which tube has an adsorbent packed and held in fin interstices, and a second finned tube for routing therethrough a heating medium on the utilization side, which tube serves as a vaporizer and condenser. The refrigerator further may be provided, at the bottom portion of the vessel, with refrigerant heating means for heating and vaporizing the refrigerant during desorption. Otherwise, where the amount of refrigerant is adjusted, the refrigerator may be provided with refrigerant heating and cooling means for heating to vaporize the refrigerant during desorption and for cooling to condense refrigerant vapors, at the bottom portion of the vessel, and with a refrigerant reservoir for reception of the adjusted amount of refrigerant, which reservoir is connected through a line and valve to the bottom of the vessel, below the bottom of the vessel. The first finned tube preferably has a fin pitch of 1 to 10 mm and a fin height of 5 to 20 mm. With the refrigerator, even low-temperature fluid of less than 80.degree. C. may be utilized for the heat source-side heating medium.
    • 一种吸附式制冷机,其特征在于,在真空容器中密闭所需量的制冷剂,在该热交换器上容纳有用于使热源侧的加热介质通过的第一翅片管,该管具有填充并保持在翅片间隙中的吸附剂, 以及用于通过利用侧的加热介质路由的第二翅片管,该管用作蒸发器和冷凝器。 冰箱还可以在容器的底部设置有用于在解吸期间加热和蒸发制冷剂的制冷剂加热装置。 否则,在调节制冷剂量的情况下,制冷剂可以设置有制冷剂加热和冷却装置,用于在解吸期间进行加热以使制冷剂蒸发并冷却以在制冷剂蒸汽的底部,容器的底部冷凝,并具有制冷剂储存器 用于接收调节量的制冷剂,该储存器通过管线和阀连接到容器的底部,低于容器的底部。 优选地,第一翅片管的翅片间距为1〜10mm,翅片高度为5〜20mm。 对于冰箱,即使低于80℃的低温流体也可以用于热源侧加热介质。
    • 5. 发明授权
    • Visual inspection system
    • 目视检查系统
    • US08379963B2
    • 2013-02-19
    • US12057942
    • 2008-03-28
    • Moon J. KimYumi MoriHiroki NakanoMasakuni Okada
    • Moon J. KimYumi MoriHiroki NakanoMasakuni Okada
    • G06K9/00
    • G06K9/00973
    • This solution relates to machine vision computing environments, and more specifically relates to a system and method for selectively accelerating the execution of image processing applications using a cell computing system. The invention provides a high performance machine vision system over the prior art and provides a method for executing image processing applications on a Cell and BPE3 image processing system. Moreover, implementations of the invention provide a machine vision system and method for distributing and managing the execution of image processing applications at a fine-grained level via a PCIe connected system. The hybrid system is replaced with the BPE3 and the switch is also eliminated from the prior in order to meet over 1 GB processing requirement.
    • 该解决方案涉及机器视觉计算环境,更具体地涉及用于使用单元计算系统选择性地加速图像处理应用的执行的系统和方法。 本发明提供了一种超现有技术的高性能机器视觉系统,并提供了一种在Cell和BPE3图像处理系统上执行图像处理应用的方法。 此外,本发明的实现提供了一种用于经由PCIe连接的系统在细粒度级别分发和管理图像处理应用的执行的机器视觉系统和方法。 混合系统被BPE3替代,并且交换机也从之前的消除,以满足超过1 GB的处理要求。
    • 7. 发明授权
    • Hybrid medical image processing
    • 混合医学图像处理
    • US08238624B2
    • 2012-08-07
    • US11782170
    • 2007-07-24
    • Munehiro DoiMoon J. KimYumi MoriJames R. MoulicHiroki NakanoHiroki Nishiyama
    • Munehiro DoiMoon J. KimYumi MoriJames R. MoulicHiroki NakanoHiroki Nishiyama
    • G06K9/00
    • G06T1/00G06F19/321G06T7/00
    • The present invention uses a common, hybrid system platform to provide a generalized medical image processing system that can handle the existing medical image application as it is and route the compute intensive medical image processing to a multi-core processor/processing system. The invention allows the processing platform to be shared among healthcare system such as mammography, X-ray, CT Scan MRI, two-photon, laser microscopy, digital pathology, etc. It also allows the processing platform to deliver medical images to a variety of client devices, such as a desktop computer or a handheld device, through the network without high-performance graphical display capabilities because the rendering of the medical images is performed on the Cell BE based platform of the invention.
    • 本发明使用通用的混合系统平台来提供可以直接处理现有医学图像应用的通用医学图像处理系统,并将计算密集型医学图像处理路由到多核处理器/处理系统。 本发明允许处理平台在诸如乳房X线照相,X射线,CT扫描MRI,双光子,激光显微镜,数字病理等医疗系统之间共享。它还允许处理平台将医学图像传送到各种 客户端设备,例如台式计算机或手持设备,通过网络而没有高性能的图形显示能力,因为在本发明的基于Cell BE的平台上执行医学图像的呈现。
    • 8. 发明申请
    • Boundary line recognition apparatus
    • 边界线识别装置
    • US20100259617A1
    • 2010-10-14
    • US12798601
    • 2010-04-07
    • Naoki KawasakiHiroki NakanoKenta HokiTetsuya Takafuji
    • Naoki KawasakiHiroki NakanoKenta HokiTetsuya Takafuji
    • H04N7/18
    • G06K9/00798G06K9/6292
    • In a boundary line recognition apparatus, a boundary line candidate extracting part extracts boundary line candidates from image data obtained by an on-vehicle camera based on known image processing such as pattern matching and Hough transform. One or more kinds of boundary line feature calculating parts calculate one or more likelihoods of each boundary line candidate. The likelihood indicates a degree of probability to be the boundary line. A boundary line feature combining means multiplies the likelihoods of each boundary line candidate and outputs a combined likelihood. A boundary line candidate selecting part selects the boundary line candidate having a maximum likelihood as the boundary line. The boundary line feature calculating part further calculates the likelihood of the boundary line candidate using a dispersion of brightness and an internal edge amount, and changes the likelihood based on an additional likelihood obtained by a driving lane surface feature extracting part.
    • 在边界线识别装置中,边界线候选提取部分基于诸如图案匹配和霍夫变换之类的已知图像处理从车载相机获得的图像数据中提取边界线候选。 一种或多种边界线特征计算部分计算每个边界线候选的一个或多个似然性。 可能性表示作为边界线的概率程度。 边界线特征组合装置将每个边界候选候选的可能性相乘并输出组合似然。 边界线候补选择部选择具有最大似然度的边界线候选作为边界线。 边界线特征计算部分还使用亮度和内部边缘量的色散来计算边界线候选的可能性,并且基于由驾驶车道表面特征提取部获得的附加可能性来改变似然。
    • 9. 发明申请
    • HIGH BANDWIDTH IMAGE PROCESSING SYSTEM
    • 高带宽图像处理系统
    • US20090110326A1
    • 2009-04-30
    • US11877926
    • 2007-10-24
    • Moon J. KimYumi MoriHiroki Nakano
    • Moon J. KimYumi MoriHiroki Nakano
    • G06K9/36
    • G06K9/00973G06T1/20
    • The present invention provides a high bandwidth image processing system, which generally includes an image processing unit having a set of servers that each have a universal operating system for receiving image data corresponding to a set of images, generating commands for processing the image data, and sending the images and the commands to an image processing unit (also having a universal operating system(s)) of the high bandwidth image processing system. Upon receipt, the image processing unit will recognize and interpret the commands, assign and/or schedule tasks for processing the image data to a set of (e.g., special) processing engines based on the commands, and return results and/or processed image data to the image interface unit.
    • 本发明提供了一种高带宽图像处理系统,其通常包括具有一组服务器的图像处理单元,每个服务器具有用于接收与一组图像相对应的图像数据的通用操作系统,生成用于处理图像数据的命令,以及 将图像和命令发送到高带宽图像处理系统的图像处理单元(也具有通用操作系统)。 在接收到图像处理单元时,图像处理单元将基于该命令识别和解释命令,分配和/或调度处理图像数据到一组(例如特殊的)处理引擎,并返回结果和/或处理的图像数据 到图像接口单元。