Difference between revisions of "Safety Research Submission"
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The following form is used to submit new entires to EPRI Safety Research Database. This resource is an internal database provided to EPRI member utilities participating in energy storage safety research to support the safe deployment of ESS project. For additional information, see the Battery Storage Fire Safety Roadmap that is linked at the bottom of this page. | The following form is used to submit new entires to EPRI Safety Research Database. This resource is an internal database provided to EPRI member utilities participating in energy storage safety research to support the safe deployment of ESS project. For additional information, see the Battery Storage Fire Safety Roadmap that is linked at the bottom of this page. | ||
For any questions about this form or other EPRI Energy Storage safety research, please contact [mailto: | For any questions about this form or other EPRI Energy Storage safety research, please contact our [mailto:Storage-Safety@epri.com Storage Safety email]. | ||
All entries will be reviewed before inclusion in the database and may be edited for clarity or content. | All entries will be reviewed before inclusion in the database and may be edited for clarity or content. | ||
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{{#CI form: title = Energy Storage Research Product Submission Form | {{#CI form: title = Energy Storage Research Product Submission Form | ||
| submit = | | submit = Storage-Safety@epri.com | ||
| success message = Thank you for your submission | | success message = Thank you for your submission! Your entry will be reviewed internally before it is added to the Energy Storage Safety Research Database. Please contact our Storage Safety email (Storage-Safety@epri.com) with any questions or concerns | ||
{{#CI form section: type = inputs | {{#CI form section: type = inputs | ||
| type = inputs | | type = inputs | ||
Latest revision as of 09:26, 5 July 2022
The following form is used to submit new entires to EPRI Safety Research Database. This resource is an internal database provided to EPRI member utilities participating in energy storage safety research to support the safe deployment of ESS project. For additional information, see the Battery Storage Fire Safety Roadmap that is linked at the bottom of this page.
For any questions about this form or other EPRI Energy Storage safety research, please contact our Storage Safety email.
All entries will be reviewed before inclusion in the database and may be edited for clarity or content.
EPRI Energy Storage Safety Roadmap Background
The topics and organization of this database is referenced in the publicly available Battery Storage Fire Safety Roadmap developed by EPRI.
Research topics are shown as circles represented with estimated potential improvement to safety of a single system (the size of the circle), estimated required effort to complete (Y-axis), and time frame of applicability (X-axis). Topic titles listed in the table below. To learn more about each Safety Roadmap task click on the bubbles above or links referenced in the table below to view the relevant section within the Battery Storage Fire Safety Roadmap document.
| Safety Category | Topic |
|---|---|
| ST: Special Topics | ST1: Addressing the common explosion hazard |
| RP: Response Plans | RP1: Response plan guidelines for existing and future BESS |
| RP2: Response plan standardization | |
| RP3: Hazard state identification and communication | |
| RP4: Contamination management | |
| DT: Design Tools | DT1: Improving availability and application of 9540A testing |
| DT2: Inclusion of gas prediction and deflagration protection tools in BESS design processes | |
| DT3: Expansion of 9540A testing to address statistical variation and multiple cell failures | |
| DT4: Guidelines for selection and design of suppression systems | |
| DT5: Standardized electrical controls reporting | |
| DT6: Failure modes and effects analysis (FMEA) guidance | |
| DT7: Integrated system design tools | |
| DT8: Adequacy and inclusion of thermal runaway propagation prediction tools in BESS design processes | |
| TD: Technology Development | TD1: Robust electrical controls |
| TD2: Detection of state of thermal reaction | |
| TD3: Detection of future thermal runaway events | |
| TD4: Detection of deflagration and toxicity risks | |
| TD5: Limitation of propagation using thermal controls | |
| TD6: Minimization of thermal runaway using thermal controls | |
| TD7: Safe cells with no thermal runaway potential | |
| TD8: Thermal runaway vent gas routing management during failure | |
| TD9: Ignition control |