Forms
sylius_add_to_cart
Errors
This form has no errors.
Default Data
| Property | Value |
|---|---|
| Model Format | same as normalized format |
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Ventilation of stationary battery installations is critical to maximize battery life while minimizing the hazards associated with hydrogen production. This guide describes battery operating modes and the hazards associated with each. It provides the HVAC designer with the information to provide a cost effective ventilation solution.<br />\n \t\t\t\t<br />\n This guide discusses the ventilation and thermal management of stationary battery systems as applied to the following:<br />\n - Vented (flooded) lead-acid (VLA)<br />\n - Valve-regulated lead-acid (VRLA)<br />\n - Nickel-cadmium (NiCd)<br />\n For each category, both the technology and the design of the battery are described in order to facilitate user understanding of the environmental issues associated with each type of technology.<br />\n The scope of this document includes only stationary batteries under conditions of expected use. Multiple operating modes are identified.<br />\n The ventilation practices described in this guide represent the "best practice" based on the information available at the time this document was developed. The user should evaluate these practices against their<br />\n operating experience, operating conditions, number and size of battery systems, manufacturer's recommendations, resources, and needs in developing an environment that maximizes safety and is conducive to optimum operation of the equipment. These recommendations were developed without consideration of economics, availability of equipment and personnel, or relative importance of the application. Design of a ventilation system for a specific battery installation requires consideration of all issues, not just the technical issues considered in this document.<br />\n The purpose of this document is to provide heating, ventilation, and air conditioning (HVAC) and battery system designers and users with information and recommendations concerning the ventilation and thermal management of stationary battery installations. 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| View Format | same as normalized format |
Submitted Data
This form was not submitted.
Passed Options
| Option | Passed Value | Resolved Value |
|---|---|---|
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Ventilation of stationary battery installations is critical to maximize battery life while minimizing the hazards associated with hydrogen production. This guide describes battery operating modes and the hazards associated with each. It provides the HVAC designer with the information to provide a cost effective ventilation solution.<br />\n \t\t\t\t<br />\n This guide discusses the ventilation and thermal management of stationary battery systems as applied to the following:<br />\n - Vented (flooded) lead-acid (VLA)<br />\n - Valve-regulated lead-acid (VRLA)<br />\n - Nickel-cadmium (NiCd)<br />\n For each category, both the technology and the design of the battery are described in order to facilitate user understanding of the environmental issues associated with each type of technology.<br />\n The scope of this document includes only stationary batteries under conditions of expected use. Multiple operating modes are identified.<br />\n The ventilation practices described in this guide represent the "best practice" based on the information available at the time this document was developed. The user should evaluate these practices against their<br />\n operating experience, operating conditions, number and size of battery systems, manufacturer's recommendations, resources, and needs in developing an environment that maximizes safety and is conducive to optimum operation of the equipment. These recommendations were developed without consideration of economics, availability of equipment and personnel, or relative importance of the application. Design of a ventilation system for a specific battery installation requires consideration of all issues, not just the technical issues considered in this document.<br />\n The purpose of this document is to provide heating, ventilation, and air conditioning (HVAC) and battery system designers and users with information and recommendations concerning the ventilation and thermal management of stationary battery installations. """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE/ASHRAE Guide for the Ventilation and Thermal Management of Batteries for Stationary Applications" -notes: "Superseded" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7533 …} #channels: Doctrine\ORM\PersistentCollection {#7627 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7311 …} #reviews: Doctrine\ORM\PersistentCollection {#7612 …} #averageRating: 0.0 #images: Doctrine\ORM\PersistentCollection {#7644 …} -supplier: Proxies\__CG__\App\Entity\Supplier\Supplier {#7325 …} -subscriptionCollections: Doctrine\ORM\PersistentCollection {#7389 …} -apiLastModifiedAt: DateTime @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1578006000 {#7292 : 2020-01-03 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1350943200 {#7318 : 2012-10-23 00:00:00.0 Europe/Paris (+02:00) } -releasedAt: null -confirmedAt: null -canceledAt: null -edition: null -coreDocument: "1635" -bookCollection: "" -pageCount: 108 -documents: Doctrine\ORM\PersistentCollection {#7464 …} -favorites: Doctrine\ORM\PersistentCollection {#7499 …} } #optionValues: Doctrine\ORM\PersistentCollection {#8315 …} #position: 0 #createdAt: DateTime @1751041225 {#7283 : 2025-06-27 18:20:25.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1756908201 {#8116 : 2025-09-03 16:03:21.0 Europe/Paris (+02:00) } #enabled: true #translations: Doctrine\ORM\PersistentCollection {#8259 …} #translationsCache: [ "en_US" => App\Entity\Product\ProductVariantTranslation {#93321 #locale: "en_US" #translatable: App\Entity\Product\ProductVariant {#8099} #id: 5164 #name: null -shortDescription: null -description: null -notes: null -shippingInformation: "Instant download" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #version: 10 #onHold: 0 #onHand: 0 #tracked: false #weight: 0.0 #width: null #height: null #depth: null #taxCategory: Proxies\__CG__\App\Entity\Taxation\TaxCategory {#8131 …} #shippingCategory: null #channelPricings: Doctrine\ORM\PersistentCollection {#8293 …} #shippingRequired: true #images: Doctrine\ORM\PersistentCollection {#8290 …} -apiLastModifiedAt: DateTime @1756850400 {#8098 : 2025-09-03 00:00:00.0 Europe/Paris (+02:00) } -publishedAt: null -isbn: "978-0-7381-7317-7" -ean: "9780738173177" -numberOfUsers: 1 -physicalProduct: false -downloadableImmediately: true -downloadable: true -drmViewerUrl: "https://online-viewer.normadoc.com/JvVqzt" -sellable: true -documents: Doctrine\ORM\PersistentCollection {#8127 …} -drmTokens: Doctrine\ORM\PersistentCollection {#8119 …} -enabledForSubscribers: true -currentAreaContext: null } #productName: null #variantName: null } } |
same as passed value |
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same as passed value |
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|---|---|
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| data | Sylius\Bundle\OrderBundle\Controller\AddToCartCommand {#113795 -cart: App\Entity\Order\Order {#13330 …} -cartItem: App\Entity\Order\OrderItem {#113783 #id: null #order: null #quantity: 1 #unitPrice: 0 #originalUnitPrice: 0 #total: 0 #immutable: false #units: Doctrine\Common\Collections\ArrayCollection {#113807 …} #unitsTotal: 0 #adjustments: Doctrine\Common\Collections\ArrayCollection {#113808 …} #adjustmentsTotal: 0 #version: 1 #variant: App\Entity\Product\ProductVariant {#8099 #id: 5137 #code: "IEEE00004841PDF" #product: App\Entity\Product\Product {#7310 #id: 10695 #code: "IEEE00004841" #attributes: Doctrine\ORM\PersistentCollection {#7700 …} #variants: Doctrine\ORM\PersistentCollection {#7743 …} #options: Doctrine\ORM\PersistentCollection {#7915 #collection: Doctrine\Common\Collections\ArrayCollection {#7917 …} #initialized: true -snapshot: [ …4] -owner: App\Entity\Product\Product {#7310} -association: [ …21] -em: ContainerHAOxQ06\EntityManagerGhostEbeb667 {#775 …} -backRefFieldName: null -typeClass: Symfony\Component\VarDumper\Caster\CutStub {#262043 …} -isDirty: false } #associations: Doctrine\ORM\PersistentCollection {#7899 …} #createdAt: DateTime @1751039225 {#7274 : 2025-06-27 17:47:05.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608190 {#7322 : 2025-08-08 01:09:50.0 Europe/Paris (+02:00) } #enabled: true #translations: Doctrine\ORM\PersistentCollection {#7921 …} #translationsCache: [ "en_US" => App\Entity\Product\ProductTranslation {#7920 #locale: "en_US" #translatable: App\Entity\Product\Product {#7310} #id: 37789 #name: "IEEE 1635:2012" #slug: "ieee-1635-2012-ieee00004841-242347" #description: """ New IEEE Standard - Superseded.<br />\n Vented lead-acid (VLA), valve-regulated lead-acid (VRLA), and nickel-cadmium (NiCd) stationary battery installations are discussed in this guide, written to serve as a bridge between the electrical designer and the heating, ventilation, and air-conditioning (HVAC) designer. Ventilation of stationary battery installations is critical to maximize battery life while minimizing the hazards associated with hydrogen production. This guide describes battery operating modes and the hazards associated with each. It provides the HVAC designer with the information to provide a cost effective ventilation solution.<br />\n \t\t\t\t<br />\n This guide discusses the ventilation and thermal management of stationary battery systems as applied to the following:<br />\n - Vented (flooded) lead-acid (VLA)<br />\n - Valve-regulated lead-acid (VRLA)<br />\n - Nickel-cadmium (NiCd)<br />\n For each category, both the technology and the design of the battery are described in order to facilitate user understanding of the environmental issues associated with each type of technology.<br />\n The scope of this document includes only stationary batteries under conditions of expected use. Multiple operating modes are identified.<br />\n The ventilation practices described in this guide represent the "best practice" based on the information available at the time this document was developed. The user should evaluate these practices against their<br />\n operating experience, operating conditions, number and size of battery systems, manufacturer's recommendations, resources, and needs in developing an environment that maximizes safety and is conducive to optimum operation of the equipment. These recommendations were developed without consideration of economics, availability of equipment and personnel, or relative importance of the application. Design of a ventilation system for a specific battery installation requires consideration of all issues, not just the technical issues considered in this document.<br />\n The purpose of this document is to provide heating, ventilation, and air conditioning (HVAC) and battery system designers and users with information and recommendations concerning the ventilation and thermal management of stationary battery installations. 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