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    • 1. 发明申请
    • Heating System with High Heat Retention Transfer Fluid
    • 具有高保温转移液的加热系统
    • US20160320094A1
    • 2016-11-03
    • US15139522
    • 2016-04-27
    • Ronald H. Madeira
    • Ronald H. Madeira
    • F24H7/04C09K5/10
    • F24H7/0466C09K5/10F24D3/02F24D3/105F24D7/00
    • A heating system combines a heat source for applying heat energy to a supply of heat transfer fluid including a polyol having five or less pendant hydroxyl groups and a polydimethylsiloxane and a pump that moves the heat transfer fluid through conduits to a heat exchanger. In one configuration, the heating system has a primary circuit including the heat source, delivery line, pump, heat exchanger and return line, and a sub-circuit including a bypass line interconnecting the delivery line and the return line to provide a flow path bypassing the heat source. The sub-circuit includes the bypass line, a portion of the delivery line, the pump, the heat exchanger, and a portion of the return line. Control valves and a control mechanism direct the flow of fluid between the primary and sub-circuit. The heat transfer fluid is a blended mixture of 5-15% glycerin, 20-40% propyl glycol and 45-75% silicone.
    • 加热系统将用于施加热能的热源结合到包括具有五个或更少侧基羟基的多元醇和聚二甲基硅氧烷的传热流体供应源和将传热流体通过导管移动到热交换器的泵。 在一种配置中,加热系统具有包括热源,输送管线,泵,热交换器和返回管线的初级回路,以及包括将输送管线和返回管线相互连接的旁通管线的子回路,以提供旁路流路 热源。 副电路包括旁路管线,输送管线的一部分,泵,热交换器和返回管路的一部分。 控制阀和控制机构可以在主回路和副回路之间引导流体流动。 传热流体是5-15%甘油,20-40%丙二醇和45-75%硅氧烷的混合混合物。
    • 3. 发明申请
    • Fluid Heater
    • 流体加热器
    • US20100282440A1
    • 2010-11-11
    • US12671420
    • 2008-07-31
    • Albert Massey TriheyJohn Massey Trihey
    • Albert Massey TriheyJohn Massey Trihey
    • F28D15/00
    • F24H8/00F24D3/08F24H1/122F24H1/52F24H1/526F24H7/0466Y02B30/102
    • A fluid heater (100) comprising a storage reservoir (1) for storing heating fluid, a burner (5) for heating the heating fluid and a first heat exchanger (11) located outside said storage reservoir (1). The heater (100) also comprises a first fluid circuit (200) connecting the storage reservoir (1) with the first heat exchanger (11) for carrying heating fluid from the storage reservoir (1), through the first heat exchanger (11) and back to the storage reservoir (1), and a second fluid circuit (300) connecting a first inlet (19) for mains fluid to a first outlet (27) for heated mains fluid via the first heat exchanger (11). The first heat exchanger (11) is adapted to exchange heat between said heating fluid and said mains fluid.
    • 一种流体加热器(100),包括用于存储加热流体的储存容器(1),用于加热所述加热流体的燃烧器(5)和位于所述储存器(1)外部的第一热交换器。 加热器(100)还包括连接储存器(1)和第一热交换器(11)的第一流体回路(200),用于承载来自储存容器(1)的加热流体,通过第一热交换器(11)和 以及第二流体回路(300),其将用于主流体的第一入口(19)连接到第一出口(27),用于经由第一热交换器(11)加热的主流体。 第一热交换器(11)适于在所述加热流体和所述主流体之间交换热量。
    • 8. 发明申请
    • Modular Thermal Energy Retention and Transfer System
    • 模块化热能保持和传输系统
    • US20110286724A1
    • 2011-11-24
    • US12783174
    • 2010-05-19
    • Travis Goodman
    • Travis Goodman
    • F24H7/04F28D15/00F28D17/00
    • F28D19/04F24D17/0005F24D2200/08F24D2200/14F24D2200/18F24D2200/26F24D2200/31F24H7/0466F28D20/00F28D20/0056F28F21/04Y02B10/20Y02B10/70Y02B30/18Y02E60/142
    • Described is a modular thermal energy transfer system. The modular thermal energy transfer system includes a plurality of modular thermal units, each modular thermal unit having a thermal retainer with a conditioning pipe and a usable fluid pipe disposed therein. The conditioning pipes are in fluidic communication with one another, and the usable fluid pipes are in fluidic communication with one another. The conditioning pipes are adapted to carry a conditioning fluid therethrough and to allow transfer of thermal energy between the thermal retainers and the conditioning fluid. The usable fluid pipes are adapted to carry a usable fluid therethrough and to allow the transfer of thermal energy between the thermal retainers and the usable fluid. The various thermal retainers of the modular thermal units are configured to be positionable proximate one another such that thermal energy is transferable between substantially adjacent thermal retainers.
    • 描述了一种模块式热能传递系统。 模块化热能传递系统包括多个模块化热单元,每个模块化热单元具有带有调节管的热定位器和设置在其中的可用流体管。 调理管道彼此流体连通,并且可用的流体管道彼此流体连通。 调节管道适于携带调节流体通过其中并且允许在热保持器和调节流体之间传递热能。 可使用的流体管道适于承载通过其中的可用流体并允许热保持器和可用流体之间的热能传递。 模块化热单元的各种热保持器被配置为可彼此靠近地定位,使得热能可在基本相邻的热保持器之间传递。