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    • 1. 发明申请
    • Hybrid Cooling Tower
    • 混合冷却塔
    • US20160320134A1
    • 2016-11-03
    • US14708493
    • 2015-05-11
    • GEA EGI Energiagazdalkodasi Zrt.
    • Attila GregaszZoltan Domotor
    • F28C1/14
    • F28C1/14B01F3/04468F28C2001/145
    • The present invention generally relates to a cooling tower for a hybrid cooling system. The cooling tower may include a tower shell, a wet cooled segment arranged inside the tower shell, and a dry cooled segment arranged outside the tower shell. The wet cooled segment may include wet cooling cells arranged at a distance from the tower shell with fans arranged thereon for inducing upwards humid air exhaust flow. The dry cooled segment is disposed generally above the air intakes for the wet cells and includes air coolers arranged as vertical cooling deltas around the tower shell. The cooling deltas are equipped with louvers for controlling a cooling air inlet. The cooling tower further includes dry fans arranged in at least some of the inlet openings of the tower shell for inducing mechanical draft for the dry cooled segment.
    • 本发明一般涉及用于混合冷却系统的冷却塔。 冷却塔可以包括塔壳,布置在塔壳内部的湿冷段,以及布置在塔壳外部的干冷段。 湿式冷却段可以包括布置在距离塔壳一定距离处的湿冷却单元,风扇布置在其上,用于引起向上的潮湿空气排出流。 干燥的冷却段通常设置在用于湿细胞的进气口的上方,并且包括布置成围绕塔壳的垂直冷却三角洲的空气冷却器。 冷却三角形配备有用于控制冷却空气入口的百叶窗。 冷却塔还包括布置在塔壳的至少一些入口开口中的干燥风扇,用于引导用于干冷段的机械通风。
    • 5. 发明授权
    • Hybrid cooling tower
    • 混合冷却塔
    • US09528767B2
    • 2016-12-27
    • US14708493
    • 2015-05-11
    • GEA EGI Energiagazdalkodasi Zrt.
    • Attila GregaszZoltan Domotor
    • F28C1/14B01F3/04
    • F28C1/14B01F3/04468F28C2001/145
    • The present invention generally relates to a cooling tower for a hybrid cooling system. The cooling tower may include a tower shell, a wet cooled segment arranged inside the tower shell, and a dry cooled segment arranged outside the tower shell. The wet cooled segment may include wet cooling cells arranged at a distance from the tower shell with fans arranged thereon for inducing upwards humid air exhaust flow. The dry cooled segment is disposed generally above the air intakes for the wet cells and includes air coolers arranged as vertical cooling deltas around the tower shell. The cooling deltas are equipped with louvers for controlling a cooling air inlet. The cooling tower further includes dry fans arranged in at least some of the inlet openings of the tower shell for inducing mechanical draft for the dry cooled segment.
    • 本发明一般涉及用于混合冷却系统的冷却塔。 冷却塔可以包括塔壳,布置在塔壳内部的湿冷段,以及布置在塔壳外部的干冷段。 湿式冷却段可以包括布置在距离塔壳一定距离处的湿冷却单元,风扇布置在其上,用于引起向上的潮湿空气排出流。 干燥的冷却段通常设置在用于湿细胞的进气口的上方,并且包括布置成围绕塔壳的垂直冷却三角洲的空气冷却器。 冷却三角形配备有用于控制冷却空气入口的百叶窗。 冷却塔还包括布置在塔壳的至少一些入口开口中的干燥风扇,用于引导用于干冷段的机械通风。
    • 6. 发明申请
    • ARRANGEMENT FOR IMPROVING THE COOLING CAPACITY AND FREEZE PROTECTION OF AIR-COOLED HEAT EXCHANGERS SUBJECTED TO THE IMPACT OF WIND
    • 提高冷却能力的安排和冻结受风向影响的空气冷却热交换器的保护
    • WO2012114134A1
    • 2012-08-30
    • PCT/HU2011/000017
    • 2011-02-24
    • GEA EGI Energiagazdalkodasi ZrtCSABA, Gábor
    • CSABA, Gábor
    • F28B1/06F28F27/02
    • F28B1/06F28F19/006F28F25/12F28F27/02F28F2250/02
    • The invention relates to an arrangement for improving the cooling capacity and/or freeze protection of air-cooled heat exchangers subjected to the impact of wind, consisting either of guide elements arranged parallel with the axis of the cooling pipes (11) of the heat exchanger, or of a louvre structure (5) and guide elements (11) mounted on the louvres (9), and further consisting of support columns (2) arranged either independently or expediently such that they also strut the heat exchangers (5), where the support columns are adapted to fluid-dynamically cover the shortest outer extremities of the heat exchangers (9). The arrangement according to the invention is characterised by that the guide elements (9) are arranged towards the outer, upwind side of the heat exchanger (2) to divide the airstream flowing in between the support columns (10) to multiple but at least two portions, and the guide elements (9) have a geometric configuration adapted to reduce the parallel component of the air velocity vector of the air flowing beside the arrangement, where said parallel component is parallel with the plane of the support columns (10) arranged along the outer circumference of the heat exchangers (2), and further adapted to guide the flowing air towards a direction perpendicular to the plane of the support columns (10).
    • 本发明涉及一种用于改善经受风冲击的空气冷却热交换器的冷却能力和/或冷冻保护的装置,其包括与热交换器的冷却管道(11)的轴线平行布置的引导元件 ,或者安装在百叶窗(9)上的百叶窗结构(5)和引导元件(11),并且还包括独立地或方便地布置的支撑柱(2),使得它们还支撑热交换器(5),其中 支撑柱适于流体动力地覆盖热交换器(9)的最短外端。 根据本发明的装置的特征在于,导向元件(9)朝向热交换器(2)的外部上风侧布置,以将在支撑柱(10)之间流动的气流分成多个但至少两个 部分和引导元件(9)具有几何构型,其适于减少流动在该布置旁边的空气的空气速度矢量的平行分量,其中所述平行部件与沿着所述支撑柱(10)布置的支撑柱(10)的平面平行 热交换器(2)的外周,并且还适于将流动的空气引向垂直于支撑柱(10)的平面的方向。
    • 9. 发明专利
    • ГИБРИДНАЯ СИСТЕМА ОХЛАЖДЕНИЯ
    • EA023211B1
    • 2016-05-31
    • EA201200841
    • 2010-12-03
    • GEA EGI ENERGIAGAZDALKODASI ZRT
    • SZABO ZOLTANLUDVIG LASZLOBALOCH ANDRAS
    • F28B9/06F01K9/00F28B5/00F28C1/14
    • Изобретениепредставляетсобойгибриднуюсистемуохлаждениядляконденсацииотработанногопарапаровойтурбины (10), приэтомсистемаохлаждениясодержитконтур (11) сухогоохлаждения, устройство (12) сохлаждениемсухимвоздухом, осуществляющеетеплоотдачуохлаждающейводы, текущейв нем, контур (14) испарительногоохлажденияи устройство (15) сиспарительнымохлаждением, осуществляющеетеплоотдачуохлаждающейводы, текущейв нем. Всоответствиис изобретениемохлаждающаявода, текущаяв контуре (11) сухогоохлаждения, отделяетсяотохлаждающейводы, текущейв контуре (14) испарительногоохлаждения, аконтуры (11, 14) сухогои испарительногоохлаждениясоединеныобщимконденсатором.