CEN TR 13121-5-2017 GRP tanks and vessels for use above ground - Part 5 Example calculation of a GRP-vessel.pdf
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1、GRP tanks and vessels for use above ground Part 5: Example calculation of a GRP-vessel PD CEN/TR 13121-5:2017 BSI Standards Publication WB11885_BSI_StandardCovs_2013_AW.indd 1 15/05/2013 15:06 TECHNICAL REPORT RAPPORT TECHNIQUE TECHNISCHER BERICHT CEN/TR 13121-5 May 2017 ICS 23.020.10 English Versio
2、n GRP tanks and vessels for use above ground - Part 5: Example calculation of a GRP-vessel This Technical Report was approved by CEN on 18 April 2017. It has been drawn up by the Technical Committee CEN/TC 210. CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, Cyp
3、rus, Czech Republic, Denmark, Estonia, Finland, Former Yugoslav Republic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey and U
4、nited Kingdom. EUROPEAN COMMITTEE FOR STANDARDIZATION COMIT EUROPEN DE NORMALISATION EUROPISCHES KOMITEE FR NORMUNG CEN-CENELEC Management Centre: Avenue Marnix 17, B-1000 Brussels 2017 CEN All rights of exploitation in any form and by any means reserved worldwide for CEN national Members. Ref. No.
5、CEN/TR 13121-5:2017 E National foreword This Published Document is the UK implementation of CEN/TR 13121-5:2017. The UK participation in its preparation was entrusted to Technical Committee PRI/5, UK steering committee for CEN/TC 210 GRP tanks. A list of organizations represented on this committee c
6、an be obtained on request to its secretary. This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application. The British Standards Institution 2017 Published by BSI Standards Limited 2017 ISBN 978 0 580 97010 8 ICS 23.020.10
7、Compliance with a British Standard cannot confer immunity from legal obligations. This Published document was published under the authority of the Standards Policy and Strategy Committee on 31 July 2017. Amendments/corrigenda issued since publication Date Text affected PUBLISHED DOCUMENT PD CEN/TR 1
8、31215:2017 TECHNICAL REPORT RAPPORT TECHNIQUE TECHNISCHER BERICHT CEN/TR 13121-5 May 2017 ICS 23.020.10 English Version GRP tanks and vessels for use above ground - Part 5: Example calculation of a GRP-vessel This Technical Report was approved by CEN on 18 April 2017. It has been drawn up by the Tec
9、hnical Committee CEN/TC 210. CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, Estonia, Finland, Former Yugoslav Republic of Macedonia, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta
10、, Netherlands, Norway, Poland, Portugal, Romania, Serbia, Slovakia, Slovenia, Spain, Sweden, Switzerland, Turkey and United Kingdom. EUROPEAN COMMITTEE FOR STANDARDIZATION COMIT EUROPEN DE NORMALISATION EUROPISCHES KOMITEE FR NORMUNG CEN-CENELEC Management Centre: Avenue Marnix 17, B-1000 Brussels 2
11、017 CEN All rights of exploitation in any form and by any means reserved worldwide for CEN national Members. Ref. No. CEN/TR 13121-5:2017 E PD CEN/TR 131215:2017CEN/TR 13121-5:2017 (E) 2 Contents Page European foreword . 5 Introduction 6 1 Scope 7 2 General 7 3 Dimensions of the tank . 7 4 Building
12、materials 9 5 Loadings (9) 9 6 Limit strain for laminate (8.2.2) . 11 7 Influence factors (7.9.5.2) . 11 8 Partial safety factors (Table 12) . 12 9 Combination factors (Table 11) 12 10 Analysis of the cylinder 12 10.1 Influence factor A 5 . 12 10.2 Characteristic strength values . 13 10.3 Moduli of
13、elasticity 13 10.4 Analysis of the cylinder in axial direction . 13 10.4.1 Proof of strength (Ultimate limit state) . 14 10.4.2 Proof of strain (Serviceability limit state) 17 10.4.3 Stability proof (Ultimate limit state) . 19 10.5 Analysis of the cylinder in tangential direction 21 10.5.1 Strength
14、analysis (Ultimate limit state) . 21 10.5.2 Proof of strain (Serviceability limit state) 23 10.5.3 Stability proof for the cylindrical shell tangential (Ultimate limit state) 23 10.5.4 Critical buckling pressure for rings (Ultimate limit state) . 24 10.6 Earthquake design of the cylinder . 26 10.6.1
15、 Analysis of the cylinder in axial direction . 26 10.6.2 Analysis of the cylinder in tangential direction 29 11 Opening in the cylinder 30 11.1 Analysis in circumferential direction . 31 11.1.1 Proof of strength . 31 11.1.2 Proof of strain 31 11.2 Analysis in axial direction . 32 11.2.1 Proof of str
16、ength . 32 11.2.2 Proof of strain 32 12 Analysis of the skirt . 33 12.1 Internal forces of the skirt 33 12.2 Proof of strength (Ultimate limit state) . 34 12.2.1 Design value of actions . 34 12.2.2 Design value of corresponding resistance 34 12.2.3 Verification . 35 12.3 Proof of strain (Serviceabil
17、ity limit state) 35 12.3.1 Design value of actions . 35 PD CEN/TR 131215:2017CEN/TR 13121-5:2017 (E) 3 12.3.2 Limit design value of serviceability criterion. 35 12.3.3 Verification . 35 12.4 Stability proof (Ultimate limit state) . 35 12.4.1 Design value of actions . 35 12.4.2 Design value of corres
18、ponding resistance . 36 12.4.3 Verification . 36 12.5 Earthquake design of the skirt . 36 12.5.1 Internal forces Earthquake . 36 12.5.2 Proof of strength (Ultimate limit state) 37 12.5.3 Proof of strain (Serviceability limit state) . 37 12.5.4 Stability proof (Ultimate limit state) . 38 13 Overlay l
19、aminate connection skirt - vessel . 39 13.1 Proof of strength (Ultimate limit state) 39 13.1.1 Design value of actions . 39 13.1.2 Design value of corresponding resistance . 40 13.1.3 Verification . 40 13.2 Proof of strain (Serviceability limit state) . 40 13.2.1 Design value of actions . 40 13.2.2
20、Limit design value of serviceability criterion. 40 13.2.3 Verification . 40 13.3 Seismic design of the skirt overlay . 41 13.3.1 Proof of strength (Ultimate limit state) 41 13.3.2 Proof of strain (Serviceability limit state) . 41 14 Analysis of the bottom 42 14.1 Influence factor A 5 42 14.2 Charact
21、eristic strength values . 42 14.3 Moduli of elasticity . 42 14.4 Actions, which cause internal forces for the bottom . 42 14.5 Strength analysis (Ultimate limit state) . 42 14.5.1 Design value of actions . 42 14.5.2 Proof of strain (Serviceability limit state) . 44 14.5.3 Stability proof of the bott
22、om (Ultimate limit state) . 45 15 Lower part of the cylinder (Region 1) . 46 15.1 Strength analysis (Ultimate limit state) . 46 15.1.1 Design value of corresponding resistance . 47 15.1.2 Verification . 47 15.2 Proof of strain (Serviceability limit state) . 47 15.2.1 Design value of actions . 47 15.
23、2.2 Limit design value of serviceability criterion. 47 15.2.3 Verification . 47 15.3 Earthquake design of region 1 (Ultimate limit state) 48 15.3.1 Strength analysis (Ultimate limit state) . 48 15.3.2 Proof of strain (Serviceability limit state) . 48 16 Upper part of the skirt (Region 2) 49 16.1 Str
24、ength analysis (Ultimate limit state) . 49 16.1.1 Design value of corresponding resistance . 50 16.1.2 Verification . 50 16.2 Proof of strain (Serviceability limit state) . 50 16.2.1 Design value of actions . 50 16.2.2 Limit design value of serviceability criterion. 50 16.2.3 Verification . 50 PD CE
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