Experiments and modeling of dynamic powder compaction in the scope of deflagration to detonation transition studies
This paper deals with dynamic compaction of confined powders and associated wave dynamics. An experimental setup has been designed to generate one-dimensional dynamic compaction waves. Quantitative data such as displacement and velocity fields are obtained. A multiphase compaction model is considere...
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description | This paper deals with dynamic compaction of confined powders and associated wave dynamics. An experimental setup has been designed to generate one-dimensional dynamic compaction waves. Quantitative data such as displacement and velocity fields are obtained. A multiphase compaction model is considered as well and its results are compared to experimental data. Grain/wall friction is also modeled as it appeared to have significant effects when considering confined granular beds. |
doi_str_mv | 10.1063/1.4971523 |
format | Conference Proceeding |
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An experimental setup has been designed to generate one-dimensional dynamic compaction waves. Quantitative data such as displacement and velocity fields are obtained. A multiphase compaction model is considered as well and its results are compared to experimental data. Grain/wall friction is also modeled as it appeared to have significant effects when considering confined granular beds.</description><identifier>ISSN: 0094-243X</identifier><identifier>EISSN: 1551-7616</identifier><identifier>DOI: 10.1063/1.4971523</identifier><identifier>CODEN: APCPCS</identifier><language>eng</language><publisher>Melville: American Institute of Physics</publisher><subject>Deflagration ; Detonation ; Velocity distribution</subject><ispartof>AIP conference proceedings, 2017, Vol.1793 (1)</ispartof><rights>Author(s)</rights><rights>2017 Author(s). 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An experimental setup has been designed to generate one-dimensional dynamic compaction waves. Quantitative data such as displacement and velocity fields are obtained. A multiphase compaction model is considered as well and its results are compared to experimental data. Grain/wall friction is also modeled as it appeared to have significant effects when considering confined granular beds.</description><subject>Deflagration</subject><subject>Detonation</subject><subject>Velocity distribution</subject><issn>0094-243X</issn><issn>1551-7616</issn><fulltext>true</fulltext><rsrctype>conference_proceeding</rsrctype><creationdate>2017</creationdate><recordtype>conference_proceeding</recordtype><recordid>eNp9kctKAzEUhoMoWKsL3yDgThjNdTKzlFIvUHCj4C6kSaamdJKYpGrf3nFacOfqnJ_znQv_AeASoxuManqLb1grMCf0CEww57gSNa6PwQShllWE0bdTcJbzGiHSCtFMQJ5_R5tcb33JUHkD-2DsxvkVDB00O696p2EMX8YmqEMflS4ueOg8LO8WZh2iHUnbbdQqqbFYwqBL8AeVlM9uTHPZGmfzOTjp1Cbbi0Ocgtf7-cvssVo8PzzN7hZVJE1TqroxVjGCWK0pJy1fKtORuqu5JkqhBnFMeWcbpqklTccQ0VYLJQzhFgm-5HQKrvZzYwofW5uLXIdt8sNKSTBhAmHaooG63lNZuzKeLONgiEo7-RmSxPJgqIym-w_GSP5-4K-B_gCPWnoB</recordid><startdate>20170113</startdate><enddate>20170113</enddate><creator>Bodard, S.</creator><creator>Lapébie, E.</creator><creator>Saurel, R.</creator><general>American Institute of Physics</general><scope>8FD</scope><scope>H8D</scope><scope>L7M</scope></search><sort><creationdate>20170113</creationdate><title>Experiments and modeling of dynamic powder compaction in the scope of deflagration to detonation transition studies</title><author>Bodard, S. ; Lapébie, E. ; Saurel, R.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-p288t-68dea42046c35295badf26f65c2aa0805135fe84c3e28f402cec7a7d25e075b53</frbrgroupid><rsrctype>conference_proceedings</rsrctype><prefilter>conference_proceedings</prefilter><language>eng</language><creationdate>2017</creationdate><topic>Deflagration</topic><topic>Detonation</topic><topic>Velocity distribution</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Bodard, S.</creatorcontrib><creatorcontrib>Lapébie, E.</creatorcontrib><creatorcontrib>Saurel, R.</creatorcontrib><collection>Technology Research Database</collection><collection>Aerospace Database</collection><collection>Advanced Technologies Database with Aerospace</collection></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Bodard, S.</au><au>Lapébie, E.</au><au>Saurel, R.</au><au>Peiris, Su</au><au>Ravelo, Ramon</au><au>Chau, Ricky</au><au>Oleynik, Ivan</au><au>Germann, Timothy</au><au>Sewell, Tommy</au><format>book</format><genre>proceeding</genre><ristype>CONF</ristype><atitle>Experiments and modeling of dynamic powder compaction in the scope of deflagration to detonation transition studies</atitle><btitle>AIP conference proceedings</btitle><date>2017-01-13</date><risdate>2017</risdate><volume>1793</volume><issue>1</issue><issn>0094-243X</issn><eissn>1551-7616</eissn><coden>APCPCS</coden><abstract>This paper deals with dynamic compaction of confined powders and associated wave dynamics. An experimental setup has been designed to generate one-dimensional dynamic compaction waves. Quantitative data such as displacement and velocity fields are obtained. A multiphase compaction model is considered as well and its results are compared to experimental data. Grain/wall friction is also modeled as it appeared to have significant effects when considering confined granular beds.</abstract><cop>Melville</cop><pub>American Institute of Physics</pub><doi>10.1063/1.4971523</doi><tpages>5</tpages><oa>free_for_read</oa></addata></record> |
fulltext | fulltext |
identifier | ISSN: 0094-243X |
ispartof | AIP conference proceedings, 2017, Vol.1793 (1) |
issn | 0094-243X 1551-7616 |
language | eng |
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source | AIP Journals Complete |
subjects | Deflagration Detonation Velocity distribution |
title | Experiments and modeling of dynamic powder compaction in the scope of deflagration to detonation transition studies |
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