DIN 6847-2-2014 Medical electron accelerators - Part 2 Rules for construction of structural radiation protection《医疗电子加速器 第2部分 结构辐射防护的构造规则》.pdf
《DIN 6847-2-2014 Medical electron accelerators - Part 2 Rules for construction of structural radiation protection《医疗电子加速器 第2部分 结构辐射防护的构造规则》.pdf》由会员分享,可在线阅读,更多相关《DIN 6847-2-2014 Medical electron accelerators - Part 2 Rules for construction of structural radiation protection《医疗电子加速器 第2部分 结构辐射防护的构造规则》.pdf(48页珍藏版)》请在麦多课文档分享上搜索。
1、March 2014 Translation by DIN-Sprachendienst.English price group 18No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS
2、11.040.50; 13.280!%2c“2159664www.din.deDDIN 6847-2Medical electron accelerators Part 2: Rules for construction of structural radiation protection,English translation of DIN 6847-2:2014-03Medizinische Elektronenbeschleuniger-Anlagen Teil 2: Regeln fr die Auslegung des baulichen Strahlenschutzes,Engli
3、sche bersetzung von DIN 6847-2:2014-03Acclrateurs mdicaux dlectrons Partie 2: Rgles pour la conception structurelle de la radioprotection,Traduction anglaise de DIN 6847-2:2014-03SupersedesDIN 6847-2:2008-09www.beuth.deDocument comprises 48 pagesIn case of doubt, the German-language original shall b
4、e considered authoritative.09.14 DIN 6847-2:2014-03 2 A comma is used as the decimal marker. Contents Page Foreword . 4 Scope . 5 1Normative references . 5 2Terms and definitions; indices 5 33.1 Terms and definitions 5 3.2 Indices 8 Dose and dose rate information 8 4Maximum values for the dose behin
5、d the shielding . 8 5Room requirements 9 6Specifications of the manufacturer and of the person responsible for radiation 7protection 10 7.1 Specifications of the manufacturer. 10 7.2 Specifications of the person responsible for radiation protection . 11 Operating data . 11 88.1 Radiation energy . 11
6、 8.2 Dose rate 12 8.3 Working load . 12 8.4 Direction factor . 13 8.5 Occupation factor . 13 8.6 Interaction of factors U and T 14 Maximum permissible area dose 14 9Rating of radioprotective shielding 14 1010.1 General . 14 10.2 General calculation scheme 15 10.3 Shielding against bremsstrahlung in
7、the useful radiation direction . 16 10.4 Shielding against electron useful radiation . 17 10.5 Shielding against leakage radiation 18 10.6 Shielding against secondary bremsstrahlung . 21 10.7 Shielding at the access to the irradiation room 23 10.7.1 Shielding at the radiation protection labyrinth 23
8、 10.7.2 Shielding at the gate of an irradiation room without a radiation protection labyrinth 25 10.8 Shielding against neutron radiation . 25 10.9 Shielding the radiation protection labyrinth 30 10.10 Interaction of several radiation sources, types and components . 33 10.11 Structural radiation pro
9、tection measures against radioactive material created by nuclear photoprocesses 34 Constructional radiation protection drawing . 34 1111.1 Specifications of the installer 34 11.2 Safekeeping of the as-built radiation protection drawing 34 Check for compliance with radiation protection rules 34 1212.
10、1 Requirements placed on the rooms in accordance with 6 c) to 6 i) 34 12.2 Check of the structural shieldings which may be hit by the radiation beam . 35 12.3 Check of the structural shieldings which cannot be hit by the radiation beam 35 Test of ventilation system 36 13Annex A (informative) Calcula
11、tion example 37 DIN 6847-2:2014-03 3 Bibliography 46 Index of defined terms . 47 Figures Figure 1 Example of the distance anfor useful radiation 16 Figure 2 Example of the distance anfor leakage radiation . 18 Figure 3 Product of the thickness at tenth maximum zXand density for bremsstrahlung, leaka
12、ge radiation, X-ray radiation share in the radiation field of the electron radiation, and bremsstrahlung in the useful radiation direction generated by electrons outside the radiation head, for the materials specified in the key 19 Figure 4 Product of the thickness at tenth maximum zXand density for
13、 bremsstrahlung, leakage radiation, X-ray radiation share in the radiation field of the electron radiation, and bremsstrahlung in the useful radiation direction generated by electrons outside the radiation head, for the materials specified in the key . 20 Figure 5 Factor kXEfor calculation of shield
14、ings against bremsstrahlung in useful radiation direction generated outside of the radiation head 21 Figure 6 Example of the distance aXsfor secondary bremsstrahlung 22 Figure 7 Example of the distance aXtand surface AXtfor tertiary bremsstrahlung 24 Figure 8 Example of the distance aNnfor direct ne
15、utron radiation 27 Figure 9 Examples of distance aNsfor scattered neutron radiation 28 Figure 10 Labyrinth length and width (schematic) . 29 Figure A.1 Floor plan view for the rating of radioprotective shielding in electron accelerator installations (calculation example) 38 Tables Table 1 Maximum pe
16、rmissible area dose HW. 14 Table 2 Product of thickness at tenth maximum zXsor zXtand density for secondary or tertiary bremsstrahlung 22 Table 3 Thicknesses at tenth maximum zNnand zNsfor neutron radiation 28 Table 4 Parameters for rating radioprotective shielding according to 10.2 to 10.9 31 Table
17、 5 Reinforcing shieldings against the interaction of several radiation components 33 Table A.1 Radiation conditions according to specifications of the person responsible for radiation protection for the calculation example to rate the radioprotective shielding according to Figure A.1 39 Table A.2 Op
18、erating data according to specifications of the manufacturer for the calculation example to rate the radioprotective shielding according to Figure A.1 40 Table A.3 Calculation data to rate the radioprotective shielding for the various radiation components and occupied areas in the calculation exampl
19、e according to Figure A.1 . 41 DIN 6847-2:2014-03 4 Foreword This standard has been prepared by the Normenausschuss Radiologie (NAR) (Radiology Standards Committee of DIN), jointly with the Deutsche Rntgengesellschaft (German Roentgen Society) and in cooperation with the Deutsche Gesellschaft fr Med
20、izinische Physik (German Society for Medical Physics), the Deutsche Gesellschaft fr Nuklearmedizin (German Society for Nuclear Medicine) and the Deutsche Gesellschaft fr Radioonkologie (German Society for Radiooncology). Compliance with the applicable statutory regulations and official guidelines is
21、 required in addition to compliance with this standard. This standard defines the rules for the construction of structural RADIATION PROTECTION in medical ELECTRON ACCELERATOR INSTALLATIONS as part of a licensing procedure in accordance with 11, Clause 2 of the Strahlenschutzverordnung (StrlSchV) (G
22、erman Radiation Protection Ordinance). In line with the procedure used in publications of the IEC, defined terms have been printed in SMALL CAPS (except in the table of contents, the terms in Clause 3 and in headings). An overview of all defined terms used in this standard, including sources and the
23、 German equivalents, is provided in the index at the end of this standard. Attention is drawn to the possibility that some elements of this document may be the subject of patent rights. DIN shall not be held responsible for identifying any or all such patent rights. DIN 6847 consists of the followin
24、g parts, under the general title Medical electron accelerators: Part 2: Rules for construction of structural radiation protection Part 5: Constancy test of functional performance characteristics Part 6: Electronic portal imaging device (EPID) Constancy testing Amendments This standard differs from D
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