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<bibitem type="M">   <ARLID>0411071</ARLID> <utime>20240103182259.6</utime><mtime>20060210235959.9</mtime>    <ISBN>4-7655-1619-9</ISBN>         <title language="eng" primary="1">Aeration at hydraulic structures</title>  <publisher> <place>Tokyo</place> <name>Gihodo</name> <pub_time>2001</pub_time> </publisher> <specification> <page_count>40 s.</page_count> </specification>   <serial><title>Developments in Hydraulic Engineering - 2</title><part_num/><part_title/><page_num>95-134</page_num><editor><name1>Novak</name1><name2>P.</name2></editor></serial>    <keyword>aeration</keyword>   <keyword>ring jump</keyword>    <author primary="1"> <ARLID>cav_un_auth*0213022</ARLID> <name1>Haindl</name1> <name2>K.</name2> <country>CZ</country>  </author> <author primary="0"> <ARLID>cav_un_auth*0101093</ARLID> <name1>Haindl</name1> <name2>Michal</name2> <institution>UTIA-B</institution> <full_dept>Department of Pattern Recognition</full_dept>  <fullinstit>Ústav teorie informace a automatizace AV ČR, v. v. i.</fullinstit> </author>     <COSATI>20I</COSATI>    <cas_special> <research> <research_id>CEZ:AV0Z1075907</research_id> </research>  <abstract language="eng" primary="1">The theory of ring jump and transient phenomena during the entrainment of air in flowing water at hydraulic structures is presented. The solution is based on findings of double-phase flow mechanics.</abstract>      <RIV>BK</RIV>      <department>RO</department>   <permalink>http://hdl.handle.net/11104/0131158</permalink>   <ID_orig>UTIA-B 20030058</ID_orig>     <arlyear>2001</arlyear>       <unknown tag="mrcbU10"> 2001 </unknown> <unknown tag="mrcbU10"> Tokyo Gihodo </unknown> <unknown tag="mrcbU12"> 4-7655-1619-9 </unknown> <unknown tag="mrcbU63"> Developments in Hydraulic Engineering - 2 95 134 </unknown> <unknown tag="mrcbU67"> Novak P. 340 </unknown> </cas_special> </bibitem>