BSI PD ISO/TR 16730-3:2013:2014 Edition
$167.15
Fire safety engineering. Assessment, verification and validation of calculation methods – Example of a CFD model
Published By | Publication Date | Number of Pages |
BSI | 2014 | 40 |
ISO 16730-1 describes what the contents of a technical documentation and of a user’s manual should be for an assessment, if the application of a calculation method as engineering tool to predict real-world scenarios leads to validated results. The purpose of this part of ISO 16730 is to show how ISO 16730-1 is applied to a calculation method, for a specific example. It demonstrates how technical and users’ aspects of the method are properly described in order to enable the assessment of the method in view of verification and validation.
The example in this part of ISO 16730 describes the application of procedures given in ISO 16730-1 for a computational fluid dynamics (CFD) model (ISIS).
The main objective of the specific model treated in this part of ISO 16730 is the simulation of a fire in an open environment or confined compartments with natural or forced ventilation system.
PDF Catalog
PDF Pages | PDF Title |
---|---|
6 | Foreword |
9 | Section sec_1 Section sec_2 Section sec_3 1 Scope 2 Normative references 3 General information on the CFD model considered |
10 | Section sec_4 4 Methodology used in this part of ISO 16730 |
11 | Annex sec_A Annex sec_A.1 Annex A (informative) Description of the calculation method |
12 | Annex sec_A.2 Annex sec_A.3 |
14 | Annex sec_A.4 |
15 | Annex sec_B Annex B (informative) Complete description of the assessment (verification and validation) of the calculation method |
18 | Annex sec_C Annex sec_C.1 Annex sec_C.2 Figure fig_C.1 Annex C (informative) Worked example |
19 | Figure fig_C.2 |
22 | Annex sec_C.3 Annex sec_C.4 |
23 | Figure fig_C.3 Figure fig_C.4 Figure fig_C.5 |
24 | Figure fig_C.6 |
25 | Annex sec_D Annex sec_D.1 Annex sec_D.2 Annex D (informative) User’s manual |
26 | Figure fig_D.1 Annex sec_D.3 Figure fig_D.2 |
27 | Annex sec_D.4 Figure fig_D.3 Annex sec_D.5 Figure fig_D.4 |
28 | Annex sec_D.6 Figure fig_D.5 Annex sec_D.7 Figure fig_D.6 |
29 | Figure fig_D.7 Annex sec_D.8 Figure fig_D.8 Annex sec_D.9 |
30 | Figure fig_D.9 Figure fig_D.10 |
31 | Figure fig_D.11 Annex sec_D.10 |
32 | Figure fig_D.12 Annex sec_D.11 |
33 | Figure fig_D.13 Figure fig_D.14 Annex sec_D.12 |
34 | Figure fig_D.15 |
35 | Figure fig_D.16 |
36 | Reference ref_1 Reference ref_2 Reference ref_3 Reference ref_4 Reference ref_5 Reference ref_6 Reference ref_7 Reference ref_8 Reference ref_9 Reference ref_10 Reference ref_11 Reference ref_12 Reference ref_13 Reference ref_14 Reference ref_15 Bibliography |