IEEE P1635/D10/ASHARE 21/D10, Dec 2016 PDF | Request Standard
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IEEE P1635/D10/ASHARE 21/D10, Dec 2016

IEEE/ASHRAE Draft Guide for the Ventilation and Thermal Management of Batteries for Stationary Applications

Standard by IEEE, 2017

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  • Availability: Immediate Download
  • Language: English
  • License Type: Single User
  • Updates: Not Included
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  • Language: English
  • License Type: Enterprise / Multi User
  • Updates: Included

About This Item

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IEEE P1635/D10/ASHARE 21/D10, Dec 2016 is a draft guide focused on the ventilation and thermal management of batteries for stationary applications. It addresses a practical engineering need in power and energy systems: controlling heat, managing airflow, and supporting safe operation where batteries are installed as fixed equipment. This technical document is relevant for designers and facility teams seeking guidance on battery room conditions, system integration, and performance considerations.

IEEE P1635/D10/ASHARE 21/D10, Dec 2016 overview

This draft guide, IEEE P1635/D10/ASHARE 21/D10, Dec 2016, is oriented toward the engineering of stationary battery installations where ventilation and temperature control affect reliability and safety. Its technical context sits at the intersection of power systems, thermal management, and battery-enclosure design. The standard is useful when evaluating how batteries are housed, how heat is removed, and how operating conditions are maintained within acceptable limits for long-term service and consistent performance.

Typical use cases

Typical use cases include battery rooms, backup power installations, energy storage enclosures, and other stationary systems where battery heat buildup can affect operation. The guidance is relevant during facility design, equipment layout, and ventilation planning for systems used in utilities, industrial plants, and critical infrastructure. It may also support engineers reviewing airflow paths, thermal load assumptions, and enclosure arrangements for battery banks that must operate reliably under sustained service conditions.

Why this standard matters

This standard matters because stationary batteries can create safety, performance, and maintenance risks if ventilation and thermal conditions are not managed consistently. Using IEEE P1635/D10/ASHARE 21/D10, Dec 2016 can help support clearer design decisions, better compliance planning, and more predictable operating conditions. It may also assist in procurement and engineering review by providing a common technical reference for battery installation requirements, reducing uncertainty around thermal control and system integration.

  • Ventilation guidance for stationary battery spaces
  • Thermal management considerations for installed battery banks
  • Design support for power and backup systems
  • Safety and operating-condition review for battery enclosures
  • Useful reference for planning and compliance workflows
SKU: 319cd1a8808b

  • Publication Date: 2017
  • Standard Status: Inactive
  • Publisher: IEEE
  • Subject: Power, Energy and Industry Applications; Engineered Materials, Dielectrics and Plasmas; Components, Circuits, Devices and Systems
  • Official IEEE: Doi link
  • New Version Available: P1635 (2022)
  • Previous Version: P1635 (2021)
  • Previous Version: P1635 (2017)
  • This Version: P1635 (2017)
  • Previous Version: P1635 (2012)
  • Previous Version: P1635 (2011)
  • Previous Version: P1635 (2011)
  • Previous Version: P1635 (2010)

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