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    • 21. 发明授权
    • Method of and apparatus for checking the icing of evaporators in
refrigeration systems
    • 用于检查制冷系统中蒸发器结冰的方法和装置
    • US4722192A
    • 1988-02-02
    • US64826
    • 1987-06-19
    • Thomas KoblitzHellmuth Lange
    • Thomas KoblitzHellmuth Lange
    • B01D5/00F25D21/04F25D21/00
    • F25D21/04B01D5/0024
    • The icing of the evaporator for refrigerant in a refrigeration system is checked by an air-permeable web of wire mesh which is moved along an endless path extending in front of the inlet of the evaporator to collect moisture from the flow of atmospheric air which is conveyed into the evaporator. Successive increments of the web are thereupon regenerated by melting or mechanically removing the ice and frost and by thereupon drying and cooling the increments before they return into the portion of the endless path in front of the inlet of the evaporator. Cooling of the web can be effected in a discrete cooling device or by causing a portion of the path to extend behind the outlet of the evaporator so that the web is cooled by cool atmospheric air which leaves the evaporator. The moisture-collecting action of the web can be enhanced by causing several successive portions of the path to extend in front of the inlet of the evaporator so that moisture-containing atmospheric air must repeatedly penetrate through the interstices of the web before it enters the evaporator.
    • 制冷系统中用于制冷剂的蒸发器的结冰通过金属丝网的透气网检查,所述网状网沿着沿蒸发器的入口前方延伸的环形路径移动以从所传送的大气空气流中收集水分 进入蒸发器。 随后通过熔化或机械去除冰和霜再次产生幅材的增量,并且随后在它们返回到蒸发器的入口前面的环形路径的部分之前干燥和冷却增量。 纤维网的冷却可以在分立的冷却装置中进行,或者通过使一部分路径延伸到蒸发器的出口之后,使得幅材由离开蒸发器的冷空气冷却。 可以通过使路径的几个连续部分在蒸发器的入口的前面延伸来增强幅材的湿气收集作用,使得含水的大气在其进入蒸发器之前必须反复穿透幅材的间隙 。
    • 27. 发明申请
    • METHOD, APPARATUS, AND PROCESSES FOR PRODUCING POTABLE WATER UTILIZING REVERSE OSMOSIS AT OCEAN DEPTH IN COMBINATION WITH SHIPBOARD MOISTURE DEHUMIDIFICATION
    • 方法,装置和方法,用于生产可逆水,利用海洋深度与海底水分除湿结合使用反向蠕虫
    • US20110132842A1
    • 2011-06-09
    • US13025232
    • 2011-02-11
    • Ival O. Salyer
    • Ival O. Salyer
    • C02F1/44B01D5/00B01D53/26
    • B01D5/0024B01D5/0057B01D5/0084B01D5/009B01D61/08B01D61/10B63J1/00C02F1/441C02F2103/08C02F2201/008Y02A20/109Y02A20/128Y02A20/131
    • Devices and methods for producing purified water. The device includes a reverse osmosis subsystem, a dehumidification subsystem and a purified water storage tank fluidly coupled to the subsystems such that purified water produced by each can be locally stored. A vehicular platform, such as a ship, can be used to locate the device adjacent a supply of saline water and humid air. A saline water inlet, membrane and purified water outlet cooperate in the reverse osmosis subsystem to allow preferential passage of water relative to salt in a saline water supply, while the dehumidification subsystem includes a heat exchanger that extracts moisture from the ambient humid air. Purified water produced by each of the subsystems can be used as a potable water source. When used in conjunction with a ship, part or all of the reverse osmosis subsystem can be submersed to a depth sufficient to generate a hydrostatic pressure that is in turn sufficient to passively operate the reverse osmosis membrane such that additional pressurizing equipment, such as a pump, is not needed. Furthermore, the temperature of the water purified by the reverse osmosis subsystem may be low enough to be used as a condensing agent for the ambient humid air passing through the dehumidification subsystem.
    • 用于生产纯净水的装置和方法。 该装置包括反渗透子系统,除湿子系统和与子系统流体耦合的净化储水箱,使得由每个子系统产生的净化水可以被局部存储。 诸如船的车辆平台可用于将设备定位在邻近盐水和潮湿空气的供应处。 盐水入口,隔膜和纯净水出口在反渗透子系统中配合,以允许在盐水供应源中相对于盐优先通过水,而除湿子系统包括从周围潮湿空气中提取水分的热交换器。 由每个子系统产生的净化水可以用作饮用水源。 当与船舶一起使用时,部分或全部反渗透子系统可以浸没到足以产生静水压力的深度,这进一步足以被动地操作反渗透膜,使得附加的加压设备,例如泵 ,不需要。 此外,由反渗透子系统净化的水的温度可能低到足以用作通过除湿子系统的环境潮湿空气的冷凝剂。
    • 28. 发明授权
    • Method, apparatus, and processes for producing potable water utilizing reverse osmosis at ocean depth in combination with shipboard moisture dehumidification
    • 利用海洋深度的反渗透生产饮用水的方法,设备和方法,结合船上湿度除湿
    • US07901580B2
    • 2011-03-08
    • US12481082
    • 2009-06-09
    • Ival O. Salyer
    • Ival O. Salyer
    • B01D61/00B01D63/00B01D3/10E02B15/00C02F3/12F25D25/00F25D17/06
    • C02F1/441B01D5/0024B01D5/0057B01D5/0084B01D61/08B01D61/10C02F2103/08C02F2201/008Y02A20/109Y02A20/128Y02A20/131
    • Devices and methods for producing purified water. The device includes a reverse osmosis subsystem, a dehumidification subsystem and a purified water storage tank fluidly coupled to the subsystems such that purified water produced by each can be locally stored. A vehicular platform, such as a ship, can be used to locate the device adjacent a supply of saline water and humid air. A saline water inlet, membrane and purified water outlet cooperate in the reverse osmosis subsystem to allow preferential passage of water relative to salt in a saline water supply, while the dehumidification subsystem includes a heat exchanger that extracts moisture from the ambient humid air. Purified water produced by each of the subsystems can be used as a potable water source. When used in conjunction with a ship, part or all of the reverse osmosis subsystem can be submersed to a depth sufficient to generate a hydrostatic pressure that is in turn sufficient to passively operate the reverse osmosis membrane such that additional pressurizing equipment, such as a pump, is not needed. Furthermore, the temperature of the water purified by the reverse osmosis subsystem may be low enough to be used as a condensing agent for the ambient humid air passing through the dehumidification subsystem.
    • 用于生产纯净水的装置和方法。 该装置包括反渗透子系统,除湿子系统和与子系统流体耦合的净化储水箱,使得由每个子系统产生的净化水可以被局部存储。 诸如船的车辆平台可用于将设备定位在邻近盐水和潮湿空气的供应处。 盐水入口,隔膜和纯净水出口在反渗透子系统中配合,以允许在盐水供应源中相对于盐优先通过水,而除湿子系统包括从周围潮湿空气中提取水分的热交换器。 由每个子系统产生的净化水可以用作饮用水源。 当与船舶一起使用时,部分或全部反渗透子系统可以浸没到足以产生静水压力的深度,这进一步足以被动地操作反渗透膜,使得附加的加压设备,例如泵 ,不需要。 此外,由反渗透子系统净化的水的温度可能低到足以用作通过除湿子系统的环境潮湿空气的冷凝剂。
    • 29. 发明申请
    • METHOD, APPARATUS, AND PROCESSES FOR PRODUCING POTABLE WATER UTILIZING REVERSE OSMOSIS AT OCEAN DEPTH IN COMBINATION WITH SHIPBOARD MOISTURE DEHUMIDIFICATION
    • 方法,装置和方法,用于生产可逆水,利用海洋深度与海底水分除湿结合使用反向蠕虫
    • US20090236286A1
    • 2009-09-24
    • US12481082
    • 2009-06-09
    • Ival O. Salyer
    • Ival O. Salyer
    • C02F1/44
    • C02F1/441B01D5/0024B01D5/0057B01D5/0084B01D61/08B01D61/10C02F2103/08C02F2201/008Y02A20/109Y02A20/128Y02A20/131
    • Devices and methods for producing purified water. The device includes a reverse osmosis subsystem, a dehumidification subsystem and a purified water storage tank fluidly coupled to the subsystems such that purified water produced by each can be locally stored. A vehicular platform, such as a ship, can be used to locate the device adjacent a supply of saline water and humid air. A saline water inlet, membrane and purified water outlet cooperate in the reverse osmosis subsystem to allow preferential passage of water relative to salt in a saline water supply, while the dehumidification subsystem includes a heat exchanger that extracts moisture from the ambient humid air. Purified water produced by each of the subsystems can be used as a potable water source. When used in conjunction with a ship, part or all of the reverse osmosis subsystem can be submersed to a depth sufficient to generate a hydrostatic pressure that is in turn sufficient to passively operate the reverse osmosis membrane such that additional pressurizing equipment, such as a pump, is not needed. Furthermore, the temperature of the water purified by the reverse osmosis subsystem may be low enough to be used as a condensing agent for the ambient humid air passing through the dehumidification subsystem.
    • 用于生产纯净水的装置和方法。 该装置包括反渗透子系统,除湿子系统和与子系统流体耦合的净化储水箱,使得由每个子系统产生的净化水可以被局部存储。 诸如船的车辆平台可用于将设备定位在邻近盐水和潮湿空气的供应处。 盐水入口,隔膜和纯净水出口在反渗透子系统中配合,以允许在盐水供应源中相对于盐优先通过水,而除湿子系统包括从周围潮湿空气中提取水分的热交换器。 由每个子系统产生的净化水可以用作饮用水源。 当与船舶一起使用时,部分或全部反渗透子系统可以浸没到足以产生静水压力的深度,这进一步足以被动地操作反渗透膜,使得附加的加压设备,例如泵 ,不需要。 此外,由反渗透子系统净化的水的温度可能低到足以用作通过除湿子系统的环境潮湿空气的冷凝剂。
    • 30. 发明授权
    • Rotating heat exchanger
    • 旋转换热器
    • US06908533B2
    • 2005-06-21
    • US10051901
    • 2002-01-17
    • William H. Zebuhr
    • William H. Zebuhr
    • B01D3/08B01D5/00C02F1/04F28D9/00F28D11/02B01D3/14
    • B01D5/0024B01D3/08B01D5/0015C02F1/043F28D9/0025F28D11/02
    • An evaporator and condenser unit for use in distilling a liquid, such as water, includes a rotary heat exchanger plate having a plurality of folds or pleats. Adjacent panels of the folded plate define spaces between their oppositely facing surfaces, and these spaces are alternatingly configured as evaporating and condensing chambers. The evaporating chambers, moreover, are defined between adjacent panels that are joined at an outer diameter fold, while the condensing chambers are defined between adjacent panels that are joined at an inner diameter fold. The evaporating chambers are thus closed at their outer diameter ends and open at their inner diameter ends, while the condensing chambers are closed at their inner diameter ends and open at their outer diameter ends.
    • 用于蒸馏诸如水的液体的蒸发器和冷凝器单元包括具有多个褶皱或褶皱的旋转热交换器板。 折叠板的相邻板在它们相对的表面之间限定空间,并且这些空间被交替地配置为蒸发和冷凝室。 此外,蒸发室被限定在在外径折叠处连接的相邻面板之间,而冷凝室限定在内径折叠处连接的相邻面板之间。 因此,蒸发室在其外径端处封闭并且在其内径端处开口,而冷凝室在其内径端处封闭并在其外径端部开口。