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    • 2. 发明授权
    • Dehumidifier water heater structure and method
    • 除湿机热水器结构及方法
    • US4823557A
    • 1989-04-25
    • US117044
    • 1987-11-05
    • Edward W. Bottum, Jr.Edward W. Bottum
    • Edward W. Bottum, Jr.Edward W. Bottum
    • F24F3/14F24H4/04F25B29/00F25B27/02
    • F24F3/1405F24H4/04F25B29/003
    • Dehumidifier water heater structure and method. The structure includes an outer, air permeable enclosure and a vertical stack positioned centrally thereof, a heat pump circuit including a compressor centrally of the enclosure, a condenser heat exchanger, within and extending axially of the vertical stack, an expansion device connected to the bottom of the condensor heat exchanger and an evaporator coil within the enclosure surrounding the compressor and connected between the compressor and expansion device. A fan for forcing air form the enclosure through the stack, insulation surrounding the condenser heat exchanger and a pump for passing water to be heated through the condenser heat exchanger may also be provided. In the method, the air to be dehumidified is passed through the enclosure so that moisture in the air will condense on the evaporator and dehumidified air is passed out of the stack by convection or may be assisted by a fan while water to be heated is passed upwardly through the condenser heat exchanger due to the thermal siphon principal or may be pumped. In another embodiment of the invention, the temperature of the evaporator is selectively varied above and below the dew point of the ambient air by varying the air flow over the evaporator or the refrigerant flow through the evaporator as by parallel expansion devices, one of which is selectively closeable to selectively provide a dehumidifier water heater or a heat pump water heater.
    • 除湿机热水器结构及方法。 该结构包括外部可透气的外壳和位于其中心的垂直叠层,包括外壳中心的压缩机的热泵回路,在垂直叠层内并在轴向延伸的冷凝器热交换器,连接到底部的膨胀装置 的冷凝器热交换器和围绕压缩机并连接在压缩机和膨胀装置之间的外壳内的蒸发器盘管。 用于迫使空气通过堆叠形成外壳的风扇,围绕冷凝器热交换器的绝缘体和用于使待加热的水通过冷凝器热交换器的泵。 在该方法中,要被除湿的空气通过外壳,使得空气中的水分将在蒸发器上冷凝,并且除湿空气通过对流从堆叠中排出,或者可以由风扇辅助,同时待加热的水通过 由于热虹吸管本身或向上通过冷凝器热交换器,或者可以泵送。 在本发明的另一个实施例中,蒸发器的温度通过改变蒸发器上的空气流量或通过蒸发器的制冷剂流通过平行膨胀装置而选择性地变化到高于和低于环境空气露点的温度,其中之一是 选择性地关闭以选择性地提供除湿热水器或热泵热水器。
    • 3. 发明授权
    • Fusible plug structure
    • 易熔塞结构
    • US5076313A
    • 1991-12-31
    • US578207
    • 1990-09-06
    • Edward W. Bottum, Jr.Edward W. Bottum, Sr.
    • Edward W. Bottum, Jr.Edward W. Bottum, Sr.
    • F16K17/38F25B41/00
    • F25B41/003F16K17/383Y10S285/917Y10T137/1812
    • A fusible plug structure is provided for use on a refrigeration system component. Among the features of the invention is means of a novel character for connecting a gasket or sealing member to one end of a fusible plug body, which assures a proper and effective seal when the plug body is assembled with a companion female fitting member fixed to the refrigeration system component. The connecting means markedly facilitates proper placement of the sealing member regardless of the particular position of the female fitting and supporting refrigeration system component. The connecting means may take various forms, and illustrative thereof is a substance such as oil or grease. Alternatively, one end of the fusible plug body may be so configured as to receive the sealing member in close fitting contact therewith. The sealing member itself may be variously configured. It is also within the purview of the invention, in order to avoid excessive rotation of the gasket or sealing member with respect to a mating surface within the female fitting, to provide restraining means on the mating surface. By so proceeding, or by other variations to the invention, galling of the sealing member is substantially entirely eliminated.
    • 提供了一种用于制冷系统部件的可熔插塞结构。 本发明的特征之一是用于将垫圈或密封构件连接到可熔插塞体的一端的新颖特征,当塞体与固定在其上的相配的阴配件构件组装时,确保适当和有效的密封 制冷系统组件。 无论阴配件和支撑制冷系统组件的特定位置如何,连接装置显着地有利于密封构件的正确放置。 连接装置可以采取各种形式,并且其说明性是诸如油或油脂的物质。 或者,可熔插塞体的一端可以被配置成接收密封件与其紧密接触。 密封构件本身可以是各种构造的。 为了避免垫片或密封构件相对于阴配件内的配合表面的过度旋转,也在本发明的范围内,以在配合表面上提供限制装置。 通过如此进行,或通过本发明的其它变化,密封构件的磨损基本上完全被消除。
    • 6. 发明授权
    • Solar collector
    • 太阳能收集器
    • US5794611A
    • 1998-08-18
    • US653335
    • 1996-05-24
    • Edward W. Bottum, Jr.Edward W. Bottum, Sr.
    • Edward W. Bottum, Jr.Edward W. Bottum, Sr.
    • F24D17/00F24J2/26F24J2/46F24J2/24
    • F24J2/465F24D17/0021F24J2/265Y02B10/20Y02B10/70Y02E10/44Y10T29/49355
    • A solar collector includes a copper plate and copper tubes for the collection and harnessing of solar energy. The copper tubes are thermally coupled to the copper plate by a copper alloy fillet. The copper tubes, the copper plate and the copper alloy fillet preferably are brazed in a controlled atmospheric furnace at a temperature in the range from approximately 1700 to about 1800 degrees Fahrenheit. The solar collector includes a housing for the plate and the tubes having two side walls, two end walls, a rear wall and a removable cover closing an open front side of the housing. One of the end walls and each of the side walls have a slot defined therein generally parallel to a plane of the rear wall for releasably receiving the cover which is formed of a glazing material. A solar collector according to this invention provides enhanced thermal conductivities, increased durability and the concomitant advantages associated with improved manufacturing economies.
    • 太阳能收集器包括用于收集和利用太阳能的铜板和铜管。 铜管通过铜合金圆片热耦合到铜板上。 铜管,铜板和铜合金圆角优选在约1700至约1800华氏度的温度下在受控的大气炉中钎焊。 太阳能收集器包括用于板的壳体,并且具有两个侧壁,两个端壁,后壁和封闭壳体的敞开正面的可拆卸盖的管。 端壁和每个侧壁中的一个具有大致平行于后壁的平面限定的槽,用于可释放地接收由玻璃材料形成的盖。 根据本发明的太阳能收集器提供增强的热导率,增加的耐久性以及与改进的制造经济相关联的伴随优点。
    • 9. 发明授权
    • Suction accumulator and sight glass structure associated therewith
    • 抽吸蓄能器和观察玻璃结构相关联
    • US5247813A
    • 1993-09-28
    • US840045
    • 1992-02-24
    • Edward W. Bottum
    • Edward W. Bottum
    • F25B41/00F25B43/00
    • F25B41/006F25B43/006
    • This invention is directed to a sight glass structure positioned in conduit means connecting a suction accumulator and compressor in a refrigeration system. The sight glass structure herein provided may take the form of bushing means rigidly attached to the conduit means and threadably or otherwise receiving an axially passaged sight glass member providing visual communication with the interior of the conduit means, thereby permitting the detection or observation of any slugs of vaporized refrigerant passing from the suction accumulator to the compressor. Another form of the invention includes diametrally opposed bushing means affixed to the conduit means, and each bushing means is similarly equipped with sight glass members of like construction. Either form of the invention, if desired, may include within the sight glass member means impeding movement of the slugs or droplets, thereby improving the detection or observation thereof.
    • 本发明涉及一种位于连接抽吸蓄能器和制冷系统中的压缩机的导管装置中的观察镜结构。 本文提供的视镜结构可以采用刚性地附接到导管装置的衬套装置的形式,并且螺纹地或以其他方式接收轴向传送的观察镜构件,其提供与导管装置内部的视觉连通,从而允许检测或观察任何lug s 蒸发的制冷剂从吸入器传递到压缩机。 本发明的另一种形式包括固定在导管装置上的直径相对的衬套装置,并且每个衬套装置同样配备有类似构造的观察玻璃构件。 如果需要,本发明的任何形式可以包括在观察玻璃构件内的装置阻止lug或液滴的移动,从而改善其检测或观察。