会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明公开
    • A PROCEDURE FOR REGULATING AN AIR FLOW IN AN AIR CONDITIONING PLANT AND A RELATIVE PLANT
    • 一种调节空调设备和相关设备中空气流动的程序
    • EP3293462A1
    • 2018-03-14
    • EP17193279.1
    • 2012-08-09
    • Zambolin, Marco
    • Zambolin, Marco
    • F24F3/044F24F11/00F24F13/068F24F13/02F24F11/30F24F13/06F24F110/40F24F11/74F24F140/40
    • F24F3/044F24F11/30F24F11/745F24F13/0236F24F13/068F24F2003/0446F24F2013/0608F24F2110/00F24F2110/40F24F2140/40
    • A procedure for regulating an air flow in an air conditioning plant, with an air conditioning unit (2) suitable for generating a flow of air, a plurality of diffuser elements (4) for diffusing the conditioned air into the ambient, a transport channel (13) for transferring the air to be diffused, a flow interrupting element (20) mobile between a first operating condition in which it enables passage of fluid towards the diffuser elements (4) and a second operating condition in which it substantially intercepts the air, the flow interrupting element (20) being interposed between a first portion of the plant directly in fluid connection with the at least an air conditioning unit (2) and a second portion of the plant and intercepting the air flow coming from the at least a treatment unit (2) and directed towards the second portion of the plant, a pressure sensor (22) for detecting an operating pressure internally of the plant, the procedure comprising the following steps of activating the conditioning unit (2) such as to generate an air flow, detecting, with the pressure sensor (22), the pressure generated internally of the plant, moving the flow interrupting element (20) into an operating position comprised between the first and the second operating condition as a function of the pressure detection performed by the sensor (22) for regulating the air flow internally of the plant.
    • 一种用于调节空调设备中的空气流动的过程,其具有适于产生空气流动的空调单元(2),用于将经调节的空气扩散到环境中的多个扩散器元件(4),传输通道 13.一种用于传送要扩散的空气的流动中断元件(20),所述流动中断元件在第一操作状态和第二操作状态之间移动,在所述第一操作状态中,所述流体能够使流体朝向所述扩散器元件(4) 所述流动中断元件(20)介于与所述至少一个空调单元(2)直接流体连接的所述设备的第一部分和所述设备的第二部分之间,并且拦截来自所述至少一个处理器 单元(2)并且指向设备的第二部分, - 压力传感器(22),用于检测设备内部的操作压力,所述程序包括以下步骤:激活c (2),以产生气流,利用压力传感器(22)检测在设备内部产生的压力,将流动中断元件(20)移动到包括在第一和第二 根据由传感器(22)执行的用于调节设备内部空气流量的压力检测功能来确定工作条件。
    • 3. 发明公开
    • AIR-CONDITIONED BUILDING AND CORRESPONDING METHOD TO AIR-CONDITION SAID BUILDING
    • KLIMATISIERTESGEBÄUDEUND ENTSPRECHENDES VERFAHREN ZUR KLIMATISIERUNG DESGEBÄUDES
    • EP3058285A1
    • 2016-08-24
    • EP14793894.8
    • 2014-09-30
    • Evoluthion S.r.l.Martini, Giorgio
    • MARTINI, GiorgioCOZZI, Luigi
    • F24F3/044E04C1/39F24F5/00
    • F24F3/044F24F5/0089
    • Air-conditioned building comprising at least an air-conditioning apparatus (13) configured to regulate the thermal state of a heat-carrying fluid, and a plurality of first walls (11) configured to define together at least a first compartment (12). The building also comprises second walls (14) located inside the first compartment (12) and connected with each other to define together at least a second compartment (16). Each of the second walls (14) faces at least one of the first walls (11) and is distanced from the latter so as to define a continuous hollow space (15). The air-conditioning apparatus (13) is connected to the hollow space (15) in order to make the heat-carrying fluid circulate therein, and to provide thermal control of the second walls (14).
    • 至少包括构造成调节载热流体的热状态的空气调节装置(13)的空调建筑物和被构造成至少限定第一隔间(12)的多个第一壁(11)。 建筑物还包括位于第一隔室(12)内部的第二壁(14),并且彼此连接以至少限定第二隔室(16)。 每个第二壁(14)面对至少一个第一壁(11)并且与第一壁(11)分开,以限定连续的中空空间(15)。 空调装置(13)连接到中空空间(15),以使得热传导流体在其中循环,并提供第二壁(14)的热控制。
    • 6. 发明公开
    • AIR CONDITIONING SYSTEM
    • KLIMAANLAGENSYSTEM
    • EP2944887A2
    • 2015-11-18
    • EP15167110.4
    • 2015-05-11
    • LG Electronics Inc.
    • SON, SanghyeLEE, Hyeonyeong
    • F24F3/044F24F11/00F24F11/02
    • F24F3/044F24F11/30F24F11/52F24F11/56F24F11/62F24F11/64F24F11/65F24F11/89F24F13/04F24F2110/10F24F2110/12F24F2120/10F24F2140/60G05B15/02Y02B30/767
    • Disclosed herein is an air conditioning system. The conditioning system includes an air handling unit (AHU) configured to control outdoor air that is externally supplied, exhaust air that is outdoors discharged, and return air that is circulated indoors and supplied again, control the outdoor air or mixed air of the return air and the outdoor air at a set temperature, and supply cool/warm supply air indoors, at least one outdoor unit configured to supply a heat source for a heat exchange to the AHU, a controller configured to receive operating state data of the AHU and control an operation of the AHU through communication with the outdoor unit, and an interface unit connected to the controller and configured to output a control menu of the AHU, send data received through the control menu to the controller, and output a monitoring screen for the operating state of the AHU and the outdoor unit.
    • 这里公开了一种空调系统。 调节系统包括:空气处理单元(AHU),其被配置为控制外部供应的室外空气,室外排出的排气;以及再循环室内的回流空气,再次供给室内空气或空气 室外空气在设定温度下供给室内供冷/供暖空气;至少一个室外单元,被配置为向AHU提供用于热交换的热源;控制器,被配置为接收AHU的运行状态数据和控制 AHU通过与室外单元的通信的操作,以及连接到控制器并被配置为输出AHU的控制菜单的接口单元,将通过控制菜单接收的数据发送到控制器,并输出用于操作的监视屏幕 AHU和室外机的状态。
    • 10. 发明公开
    • AUTOMATICALLY BALANCING REGISTER FOR HVAC SYSTEMS
    • 自动平衡寄存器HVAC系统
    • EP2370748A1
    • 2011-10-05
    • EP09796591.7
    • 2009-12-30
    • ZONER LLC
    • BARRETT, JonLINGEMANN, Ronald
    • F24F11/00F24F11/053F24F13/08G05D23/19
    • G05D23/1934B60H1/00871F24F3/044F24F11/30F24F11/56F24F11/62F24F11/76F24F13/082F24H9/2064G05D23/1932
    • Distributed nodes, such as intelligent register controllers, of a heating, ventilating and/or air conditioning (HVAC) system wirelessly communicate with each other on a peer-to-peer basis, forming a network, and collectively control the HVAC system, without a central controller. The intelligent register controllers collectively control the amount of conditioned air introduced into each region. Each node may base its operation at least in part on information about one or more (ideally all) of the other nodes. Each intelligent register controller automatically determines how much conditioned air to allow into its region, or how much return air to allow to be withdrawn from its region, based on information collected by the register controller, such as: current temperature of the region; desired temperature of the region; calculated amount of conditioned air required to change the region's temperature to the desired temperature; temperature of conditioned air begin supplied by a duct to the register; current time, day of week, vacation or other schedule data; temperatures of other regions and their respective desired temperatures; calculated amounts of air required to be supplied or withdrawn by the other controlled registers to change their respective regions' temperatures to their desired temperatures; or combinations thereof. Each register controller automatically determines when and to what extent to operate its respective controllable damper.