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    • 2. 发明申请
    • AIR CONDITIONER/HEAT PUMP EXPANSION FUNCTION BOX AND AIR CONDITIONER/HEAT PUMP HEAT STORAGE REFRIGERATION SYSTEM
    • US20210364195A1
    • 2021-11-25
    • US17394385
    • 2021-08-04
    • FEI YAN
    • FEI YAN
    • F25B13/00F25B41/24
    • The application relates to an air conditioner/heat pump expansion function box and an air conditioner/heat pump heat storage refrigeration system, and belongs to the technical field of air conditioner/heat pump systems. Two distribution pipelines are arranged in the air conditioner/heat pump expansion function box body; each distribution pipeline comprises a main pipeline and at least one branch pipeline; the two ends of each main path are provided with an outdoor unit nut head and an indoor unit nut head respectively. The end portion, far away from the main path, of each branch path is provided with a radiation assembly nut head; an outdoor unit nut head is connected with an outdoor unit, an indoor unit nut head is connected with an indoor unit, and a radiation assembly nut head is connected with a radiation assembly. Therefore, an air conditioner/heat pump heat storage refrigeration system is formed, reasonable distribution of water-free floor heating pipelines is achieved, the energy efficiency ratio of the air conditioner/heat pump system is increased, pipeline connection of a unit is achieved under the non-oxidation condition, it is guaranteed that no impurities exist in the system pipelines, the service life of the unit is long, the assembling efficiency is improved, no welding process exists on site, operation is easy, and the appearance is attractive.
    • 3. 发明申请
    • BUILDING BUILT-IN AIR CONDITIONING SYSTEM
    • 建筑内置空调系统
    • US20140283541A1
    • 2014-09-25
    • US14240457
    • 2011-08-25
    • Zhengyi FENGZhuo FENGNing ZHONGWanzhu WANGJianliang YANGFei YANShijie KE
    • Zhengyi Feng
    • F25B13/00
    • F25B13/00F24D3/14F24D3/18F24D19/1039F24D2200/11F24D2200/12F24D2200/123F24D2220/006F24F5/0085F24F5/0089F24F5/0092F28D2021/0035F28F1/22F28F1/40F28F2260/02Y02B10/40Y02B30/12Y02B30/24
    • A building built-in air conditioning system comprising: an external heat exchanger (1), a reversing valve (2), a compressor (4), and microporous tubes (9, 10, 11). The microporous tubes are metal capillaries bound on a construction steel bar (12) and integrated with the concrete by casting. each microporous tube has a first end welded to a first guiding tube and a second end welded to a second guiding tube, the plurality of microporous tubes are thus connected to the guiding tubes in parallel, the guiding tube on first ends of the microporous tubes is connected to the right-side port of the reversing valve 3, the second guiding tube on the second ends of the microporous tubes is connected to the lower port of the external heat exchanger 1 through a throttle component 5, the upper port of the external heat exchanger 1 is connected to the left-side port of the reversing valve 3, the center common port of the reversing valve 3 is connected to the return-air intake of the compressor 4, an inlet of the reversing valve 3 is connected to an outlet of the compressor 4. The external heat exchanger may be at least one of the heat exchangers including an air-cooled heat exchanger, a water-cooled heat exchanger, a foundation heat exchanger, and a solar panel heat exchanger. The air conditioning system has the advantages of longer life span, lower noise, and lower level of maintenance. The carbon emission and electricity cost of an air conditioning system according the example embodiments are also low.
    • 一种建筑物内置空调系统,包括:外部热交换器(1),换向阀(2),压缩机(4)和微孔管(9,10,11)。 微孔管是结合在建筑钢筋(12)上的金属毛细管并通过铸造与混凝土结合在一起。 每个微孔管具有焊接到第一引导管的第一端和焊接到第二引导管的第二端,因此多个微孔管平行地连接到引导管,微孔管的第一端上的引导管是 连接到换向阀3的右侧端口,微孔管的第二端上的第二引导管通过节流部件5与外部热交换器1的下部端口连接,外部热量的上部端口 交换机1连接到换向阀3的左侧端口,反转阀3的中心公共端口连接到压缩机4的回风进气口,反向阀3的入口连接到出口 外部热交换器可以是包括空气冷却热交换器,水冷式热交换器,基础热交换器和太阳能电池板式热交换器的热交换器中的至少一种。 空调系统具有寿命更长,噪音低,维护水平低的优点。 根据示例性实施例的空调系统的碳排放和电力成本也低。
    • 4. 发明授权
    • Systems and methods for the inspection of structures having unknown properties
    • 用于检查具有未知性质的结构的系统和方法
    • US08532940B2
    • 2013-09-10
    • US12708183
    • 2010-02-18
    • Fei YanJoseph L. Rose
    • Fei YanJoseph L. Rose
    • G01B5/28G01N29/07
    • G01N29/07G01N29/2456G01N29/341G01N29/346G01N2291/011G01N2291/0289G01N2291/104
    • An inspection method includes driving a plurality of spaced apart transmitting transducer elements with a respective time delay and a respective frequency such that each of the transmitting transducer elements transmits an ultrasonic guided wave through a transmission medium defined by a material having at least one unknown physical property. The ultrasonic guided waves are received at a receiving transducer element disposed at a distance from the transmitting transducer elements. A respective time delay and a respective frequency for each of the transmitting transducer elements is determined that provides a maximum amplitude in a signal received at the receiving transducer element. The plurality of transmitting transducer elements are activated in accordance with the determined time delays and frequencies to transmit inspection signals through the transmission medium. A location of a defect in the material is determined based on velocities of the inspection signals received at the receiving transducer element.
    • 一种检查方法包括以相应的时间延迟和相应的频率驱动多个间隔开的发射换能器元件,使得每个发射换能器元件通过传导介质传输超声波导波,该传输介质由具有至少一个未知物理性质的材料 。 超声波引导波被接收在距发射换能器元件一定距离处的接收换能器元件处。 确定每个发射换能器元件的相应时间延迟和相应频率,其在接收换能器元件处接收的信号中提供最大幅度。 多个发送换能器元件根据确定的时间延迟和频率被激活,以通过传输介质传输检查信号。 基于在接收换能器元件处接收的检查信号的速度来确定材料中缺陷的位置。
    • 7. 发明申请
    • THREE-DIMENSIONAL (3D) IMAGE PROCESSING METHOD AND SYSTEM
    • 三维(3D)图像处理方法和系统
    • US20120013600A1
    • 2012-01-19
    • US12905108
    • 2010-10-15
    • FEI YANNING LIU
    • FEI YANNING LIU
    • G06T15/00G06K9/00
    • H04N13/161
    • A three-dimensional (3D) image processing method is provided. The method includes receiving from an image source a 3D image containing a plurality of images that are previously compressed, and storing pixel data of the received plurality of images. The method also includes determining that the plurality of images do not have a same number of pixel columns, determining at least one boundaries among the plurality of images, and determining a minimum number of pixel columns and a maximum number of pixel columns of the plurality of images. Further, the method includes adjusting any one of the plurality of images having a column number less than the maximum number such that each of the plurality of images has the maximum number of pixel columns, decompressing the plurality of images, and discarding from each of the decompressed plurality of images by a determined number of last columns, wherein the determined number is the difference between the maximum number and the minimum number.
    • 提供三维(3D)图像处理方法。 该方法包括从图像源接收包含预先压缩的多个图像的3D图像,以及存储所接收的多个图像的像素数据。 该方法还包括确定多个图像不具有相同数量的像素列,确定多个图像中的至少一个边界,以及确定多个图像中的像素列的最小数目和最大像素列数 图片。 此外,该方法包括调整具有小于最大数目的列数的多个图像中的任何一个,使得多个图像中的每一个具有最大数量的像素列,解压缩多个图像,并且从 通过确定数量的最后列解压缩多个图像,其中确定的数量是最大数量和最小数量之间的差。