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    • 2. 发明申请
    • ENTHALPY EXCHANGER
    • WO2016140572A9
    • 2016-11-24
    • PCT/NL2016050144
    • 2016-03-01
    • ECO-LOGICAL ENTPR B V
    • BERTELS AUGUSTINUS WILHELMUS MARIA
    • F28C1/10F04D29/32F04D29/66
    • F28C1/10F04D25/0606F04D25/166F04D29/522F04D29/646F28F2250/08F28F2265/28
    • The invention relates to an enthalpy exchanger for changing the enthalpy of a throughflow medium for the purpose of cooling process water coming from an industrial process by means of passing air, which enthalpy exchanger comprises: an air inlet; an enthalpy exchanger panel connecting thereto and configured to guide medium such that during operation this medium exchanges enthalpy with airflows let through by the or each air inlet; an air throughflow space connecting to the enthalpy exchanger panel; such that air can only flow into the air throughflow space via the air inlets and the enthalpy exchanger panels; a fan which connects to the air throughflow space and which draws in and blows out air via the air inlet, the enthalpy exchanger panel and the air throughflow space; and the ratio of the effective throughflow area of the fan and the total effective throughflow area of the relevant air inlets amounts to a maximum of about 0.3; added to the fan is a rotation-symmetrical airflow-guiding element which extends both into the air throughflow space and outside the enthalpy exchanger; the airflow-guiding element has a streamlined shape; and the fan comprises a number of acrodynamically formed blades with outer end zones which are mutually connected by a concentric ring which fits with some clearance into an annular recess in the airflow-guiding element; this such that the airflows in the air throughflow space converge at any position and are substantially free of vortices, turbulences and areas without suction.
    • 焓交换器技术领域本发明涉及一种用于改变通流介质的焓的焓交换器,用于通过通过空气来冷却来自工业过程的工艺用水,该焓交换器包括:空气入口; 焓交换器面板,所述焓交换器面板连接到所述介质并且被配置成引导介质,使得在操作期间该介质与由所述或每个空气入口通过的气流交换焓; 连接到焓交换器面板的空气流通空间; 使得空气只能通过进气口和焓交换器面板流入空气流通空间; 风扇,其连接到所述空气流通空间并且经由所述空气入口,所述焓交换器面板和所述空气流通空间吸入和吹出空气; 并且风扇的有效通流面积与相关进气口的总有效通流面积的比率最大约为0.3; 增加到风扇中的是旋转对称的气流引导元件,其既延伸到空气流通空间中又延伸到焓交换器外部; 导流元件具有流线形状; 所述风扇包括多个流体动力学成形的叶片,所述叶片具有外端区域,所述叶片通过同心环相互连接,所述同心环以一定间隙配合到所述气流引导元件中的环形凹部中; 这使得空气流通空间中的气流会聚在任何位置并且基本上没有涡流,湍流和没有抽吸的区域。
    • 4. 发明申请
    • ENTHALPY EXCHANGER
    • 安全交换机
    • WO2016140572A1
    • 2016-09-09
    • PCT/NL2016/050144
    • 2016-03-01
    • ECO-LOGICAL ENTERPRISES B.V.
    • BERTELS, Augustinus Wilhelmus Maria
    • F28C1/10F04D29/66F04D29/32
    • F04D29/325F04D25/0606F04D25/166F04D29/522F04D29/646F04D29/66F28C1/10F28F2250/08F28F2265/28
    • The invention relates to an enthalpy exchanger for changing the enthalpy of a throughflow medium for the purpose of cooling process water coming from an industrial process by means of passing air, which enthalpy exchanger comprises: an air inlet; an enthalpy exchanger panel connecting thereto and configured to guide medium such that during operation this medium exchanges enthalpy with airflows let through by the or each air inlet; an air throughflow space connecting to the enthalpy exchanger panel; such that air can only flow into the air throughflow space via the air inlets and the enthalpy exchanger panels; a fan which connects to the air throughflow space and which draws in and blows out air via the air inlet, the enthalpy exchanger panel and the air throughflow space; and the ratio of the effective throughflow area of the fan and the total effective throughflow area of the relevant air inlets amounts to a maximum of about 0.3; added to the fan is a rotation-symmetrical airflow-guiding element which extends both into the air throughflow space and outside the enthalpy exchanger; the airflow-guiding element has a streamlined shape; and the fan comprises a number of acrodynamically formed blades with outer end zones which are mutually connected by a concentric ring which fits with some clearance into an annular recess in the airflow-guiding element; this such that the airflows in the air throughflow space converge at any position and are substantially free of vortices, turbulences and areas without suction.
    • 本发明涉及一种用于改变通流介质焓的焓交换器,用于通过通过空气冷却来自工业过程的工艺水,该焓交换器包括:空气入口; 焓交换器面板,其连接到其上并被配置为引导介质,使得在操作期间,该介质与通过该空气入口或每个空气入口通过的气流交换焓; 连接到焓交换器面板的空气通流空间; 使得空气只能经由空气入口和焓交换器面板流入空气通过流动空间; 风扇,其连接到空气通过流动空间,并且通过空气入口,焓交换器面板和空气通过空间吸入和吹出空气; 并且风扇的有效通流面积与相关空气入口的总有效通流面积的比值最大为约0.3; 添加到风扇的是旋转对称的气流引导元件,其将空气通过流动空间和焓交换器外部延伸; 气流引导元件具有流线型的形状; 并且风扇包括多个具有外端部区域的动力学上形成的叶片,其外端区域通过同心环相互连接,所述同心环与一些间隙配合到气流引导元件中的环形凹部中; 这样使得空气通过流动空间中的气流会聚在任何位置,并且基本上没有涡流,湍流和没有抽吸的区域。
    • 5. 发明申请
    • COOLING TOWER FOR COOLING WATER
    • WO2014001919A3
    • 2014-01-03
    • PCT/IB2013/002339
    • 2013-06-11
    • SPX-COOLING TECHNOLOGIES GMBH
    • BARTSCH, Carsten
    • F28C1/10G10K11/16G10K11/162
    • The present invention relates to a cooling tower for cooling water that has been used in a thermal process, comprising a wall (14), which delimits an interior chamber (16) of the cooling tower (10), an influent port (30) for introducing water heated in the thermal process into the interior chamber (16) of the cooling tower (10), one or more atomizer units (32) disposed in the interior chamber (16) for the purpose of atomizing the heated water in the interior chamber (16), an inlet port (18) for feeding air into the interior chamber (16), wherein the air interacts with the sprayed water in the interior chamber (16), an outlet port (20) for discharging the air and the evaporated water from the interior chamber (16), and a catch basin (34) for collecting the cooled water, wherein the catch basin (34) comprises an effluent port (36) for discharging the cooled water from the interior chamber (16), wherein a sound insulating means (40) is provided in the interior chamber (16) for the purpose of damping the sound produced during the operation of the cooling tower. The invention further relates to the use of mats composed of PVC webbing or vertically premounted geotextiles and of self-supporting panels (44) having a watertight cladding (46) as sound insulating means (40) in cooling towers (10).