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    • 2. 发明申请
    • LIMITED LOSS LAMINAR FLOW DAMPERS FOR HEATING, VENTILATION, AND AIR CONDITIONING (HVAC) SYSTEMS
    • 用于加热,通风和空调(HVAC)系统的有限损失层流阻尼器
    • WO2007079434A3
    • 2007-12-13
    • PCT/US2007000063
    • 2007-01-03
    • KARAMANOS JOHN C
    • KARAMANOS JOHN C
    • E03B1/00
    • F24F13/1413F24F2110/30
    • HVAC devices, systems, and methods include dampers for controlling the flow of air or other gasses through an HVAC duct, often while inhibiting turbulence within the duct or pressure loss within the duct. Embodiments of such dampers may employ a two-part damper arrangement. In many embodiments, flow will travel through the middle of the damper uniformly and with a laminar flow. One or more small, relatively unobtrusive sensor (optionally being wireless) can be included for controlling operation of the damper, the sensor(s) optionally measuring the distance between damper elements, sound, air flow, or the like, with such sensor(s)/ damper combination inhibiting inadvertent pressure drop and turbulence in flows through the damper. The damper elements may optionally comprise airfoil cross-sections, with alternative dampers having a resilient helical configuration that can choke down flow by inducing a vortex in the flow, allowing static pressure regain to occur within the duct system.
    • HVAC装置,系统和方法包括用于控制通过HVAC导管的空气或其他气体的流动的阻尼器,通常同时抑制导管内的湍流或导管内的压力损失。 这种阻尼器的实施例可以采用两部分阻尼器装置。 在许多实施例中,流动将均匀地并以层流流过阻尼器的中部。 可以包括一个或多个小的相对不显眼的传感器(可选地是无线的)以用于控制阻尼器的操作,传感器可选地测量阻尼器元件之间的距离,声音,气流等等, )/阻尼器组合,抑制通过阻尼器的流体中的无意压降和湍流。 阻尼元件可以可选地包括翼型横截面,替代阻尼器具有弹性螺旋构造,其可以通过在流体中引发涡流来阻塞流动,允许在管道系统内发生静压恢复。
    • 3. 发明申请
    • SHIPPING AND INSTALLATION FOR HEATING, VENTILATION, AND AIR CONDITIONING (HVAC)
    • 运输和安装加热,通风和空调(HVAC)
    • WO2006122065A3
    • 2009-04-23
    • PCT/US2006017797
    • 2006-05-08
    • KARAMANOS JOHN C
    • KARAMANOS JOHN C
    • F25D23/12
    • F24F1/34F24F1/26F24F3/0442F24F11/00F24F11/54F24F2110/30Y02B30/767
    • A zone-control unit adapted for facile inclusion in a building's ductwork includes a mechanical terminal unit, inlet and outlet piping assemblies that are mechanically coupled together. The structure also includes at least one handle so the zone-control unit may be conveniently and safely handled both during shipping, and during installation into a HVAC system. Prior to installation into a HVAC system the fully-functional zone-control unit also includes a pair of caps respectively sealing the ends of the piping assemblies, and a pressure gauge for sensing pressurization of the piping assemblies and coil which the caps seal. Sealed in this way a pressure gauge permits testing to assure that the piping assemblies and coil are leak free, and readily assessing that zone-control units remain leak free until they are about to be installed into a building's HVAC system.
    • 适于容易地包含在建筑物的管道系统中的区域控制单元包括机械终端单元,机械耦合在一起的入口和出口管道组件。 该结构还包括至少一个手柄,因此区域控制单元可以在运输期间以及在安装到HVAC系统期间方便和安全地处理。 在安装到HVAC系统之前,全功能区域控制单元还包括分​​别密封管道组件的端部的一对盖子和用于感测盖子密封的管道组件和线圈的加压的压力计。 以这种方式密封,压力表允许测试以确保管道组件和线圈是无泄漏的,并且容易地评估区域控制单元保持无泄漏,直到它们将要安装到建筑物的HVAC系统中。
    • 4. 发明申请
    • METHOD AND SYSTEM FOR CONTROLLING QUALITY AND TRACKING PARTS FOR REPAIR AND REPLACEMENT OF A PIPING SYSTEM
    • 控制质量和跟踪部件的方法和系统,用于维修和更换管道系统
    • WO2005119196A3
    • 2006-05-11
    • PCT/US2005019455
    • 2005-06-01
    • KARAMANOS JOHN C
    • KARAMANOS JOHN C
    • G01M3/08G01M3/28
    • G01M3/2846
    • The invention comprises a method for controlling quality in a piping system, including a valve, a piping structure coupled to the valve. The method comprises the following. Pressurize the piping structure with a gas at greater than sea-level pressure (step 400). Seal the gas in the piping structure with the valve (step 410). Determine whether the gas stays within the piping structure (430). Determine that gas leaks from the piping structure (440). Identify the location of a leak from the piping structure (450). The invention further comprises a method for identifying a component. The method comprises the following. Indicate identification information on a tag regarding the piping structure (460). Attach the tag to the piping structure (470).
    • 本发明包括一种用于控制管道系统中的质量的方法,包括阀,连接到阀的管道结构。 该方法包括以下。 用大于海平面压力的气体加压管道结构(步骤400)。 用阀密封管道结构中的气体(步骤410)。 确定气体是否停留在管道结构内(430)。 确定气体从管道结构泄漏(440)。 确定管道结构泄漏的位置(450)。 本发明还包括用于识别部件的方法。 该方法包括以下。 指示关于管道结构的标签上的识别信息(460)。 将标签连接到管道结构(470)。
    • 5. 发明申请
    • FLUID CONTROL MEASURING DEVICE
    • 流体控制测量装置
    • WO2015006777A3
    • 2015-03-19
    • PCT/US2014046554
    • 2014-07-14
    • KARAMANOS JOHN CLYNN MICHAEL FWILLKE JR HERBERT L
    • KARAMANOS JOHN CLYNN MICHAEL FWILLKE JR HERBERT L
    • G01F1/34
    • G05D7/0647F24F2110/30G01F1/42G01F15/003
    • Systems and methods for measuring and controlling fluid flow include an orifice plate defining a variable opening. The orifice plate includes an outer assembly comprising a central opening and an inner assembly extending through the central opening. The flow device regulates high and very low volumes of fluid with precision, inexpensively, with superior acoustics, reduced energy, and simpler design. The high turndown device permits use at lower velocities, thereby reducing noise generation and eliminating need for sound-attenuating liners. The high rangeability device combines several part numbers into fewer parts, thereby streamlining product portfolios. In some cases, cost benefits associated with the flow device allow equipment to be scaled back 100:1 rather than 10:1, providing energy savings, fewer product variations, simple and more robust applications. The device meets new and old building fresh air, comfort and energy codes. The flow device can be engineered, selected, and sized without sophisticated software programs.
    • 用于测量和控制流体流量的系统和方法包括限定可变开口​​的孔板。 孔板包括外部组件,该外部组件包括中心开口和延伸穿过中心开口的内部组件。 该流量装置可精确,低成本地调节高流量和低流量流体,具有卓越的声学效果,降低的能量和更简单的设计。 高转速装置允许以较低的速度使用,从而减少噪音的产生并消除对减声衬垫的需求。 高可变性装置将几个零件号码组合成更少的零件,从而简化了产品组合。 在某些情况下,与流量装置相关的成本优势可使设备缩小到100:1而不是10:1,从而节省能源,减少产品变化,提供简单和更强大的应用。 该设备满足新旧建筑物的新鲜空气,舒适性和能源规范。 流量设备可以进行设计,选择和设计,而无需复杂的软件程序。