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    • 7. 发明公开
    • FILTERVORRICHTUNG
    • EP2908923A1
    • 2015-08-26
    • EP13780066.0
    • 2013-10-11
    • Hydac Filtertechnik GmbH
    • SAKRASCHINSKY, MichaelFIEDLER, Sebastian
    • B01D29/15B01D29/21
    • B01D29/606B01D29/15B01D29/21B01D2201/403
    • Disclosed is a filter device comprising at least one filter element (3), through which a fluid to be purified can flow with a determinable fluid operating pressure and which can be accommodated in a housing (1), wherein the fluid pressure prevailing at the respective filter element (3) may exhibit general pressure increases or pressure peaks which are damaging to the respective filter element (3), in particular to the filter material (9) thereof, and which can be reduced and/or smoothened by means of a compensation device which acts directly upon the respective filter element (3) and which has at least one flexible compensation element (29) that enables the volume of the fluid chamber of the housing (1) to be increased in accordance with a pressure peak or pressure increase, characterised in that the flexible compensation element (29) is arranged between the outer side of the filter material (9) of the filter element (3) and the adjacent inner wall of the housing (1).
    • 本发明公开了一种过滤装置,其包括至少一个过滤元件(3),待净化流体通过该过滤元件能够以可确定的流体操作压力流动并且可以容纳在壳体(1)中,其中流体压力在相应 过滤元件(3)可以表现出对相应的过滤元件(3)特别是其过滤材料(9)有损害并且可以通过补偿减小和/或平滑 该装置直接作用在相应的过滤器元件(3)上并且具有至少一个柔性补偿元件(29),该灵活的补偿元件能够使得壳体(1)的流体室的容积根据压力峰值或压力增加 其特征在于,柔性补偿元件(29)布置在过滤元件(3)的过滤材料(9)的外侧和壳体(1)的相邻内壁之间。
    • 8. 发明公开
    • DETECTION DEVICE AND METHOD
    • NACHWEISVORRICHTUNG UND VERFAHREN
    • EP2795285A2
    • 2014-10-29
    • EP12816238.5
    • 2012-12-21
    • Grundfos Holding A/S
    • ANDERSEN GAD, JensENEMARK, Heidi L.AL-SABI, Mohammad Nafi SolaimanKURTZHALS, Jørgen
    • G01N1/40B01D29/01
    • G01N21/01B01D29/0095B01D29/603B01D29/606B01D29/66B01D39/10G01N1/40G01N1/4077G01N2001/4094
    • The invention relates to a device and a method for detecting particles, in particular parasites, in drinking water adapted to on-line application. In particular, the invention relates to a method for detecting parasites in water, said method comprising: Passing at least a part of the water through a filter; Applying indirect sonication with ultrasound to said filter to release parasites which have been collected in said filter without disrupting said parasites; Collecting parasites for detection; and Detecting the collected parasites. This serves to collect parasites in the filter and/or increase the concentration of parasites before the filter and/or disrupt aggregates without disrupting the parasites
      per se . The invention further relates to a concentration device for filter filtration concentration of particles from a volume of a fluid. The concentration device comprises an ultrasonic transducer that is configured to clean the filter.
    • 本发明涉及用于在适于在线应用的饮用水中检测颗粒,特别是寄生虫的装置和方法。 特别地,本发明涉及一种用于检测水中寄生虫的方法,所述方法包括:使至少一部分水通过过滤器; 对所述过滤器应用超声波间接超声处理以释放已经收集在所述过滤器中而不破坏所述寄生虫的寄生虫; 收集寄生虫进行检测; 并检测收集到的寄生虫。 这用于在过滤器中收集寄生虫和/或增加过滤器之前的寄生虫的浓度和/或破坏聚集体而不破坏寄生虫本身。 本发明还涉及一种用于从一定体积的流体过滤过滤浓缩颗粒的浓缩装置。 浓缩装置包括被配置为清洁过滤器的超声换能器。