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PCMCIA SYSTEM - PCMCIA SYSTEM ARCHITECTURE
PCMCIA
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IEEE INFORMATION - INFORMATION GRAPHICS: A COMPRHENSIVE ILLUSTRATED REFERENCE
IEEE
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UL 1815 - Nonducted Heat Recovery Ventilators
February 29, 2012 - ULSE

018150-000000-000000 1 Scope 1.1 These requirements cover nonducted, stationary or fixed heat recovery ventilators for household, commercial, or industrial use and intended to be employed in accordance with the National Electrical Code, ANSI/NFPA 70. 1.2 These requirements cover...

UL 1812 - Ducted Heat Recovery Ventilators
May 3, 2013 - ULSE

018120-000000-000000 1 Scope 1.1 These requirements cover ducted heat recovery ventilators intended to remove air from buildings, replace it with outside air, and in the process transfer heat from the warmer to the colder air. These units are intended to be connected to duct...

API RP 534 - Heat Recovery Steam Generators
February 1, 2007 - API

This publication provides guidelines for the selection or evaluation of heat recovery steam generator (HRSG) systems. Details of related equipment designs are considered only where they interact with the HRSG system design. This publication does not provide rules for...

J3173_202002 - Waste Heat Recovery System Thermal Management
February 24, 2020 - SAE International

Waste heat recovery (WHR) systems are used in vehicles and machines powered by internal combustion (IC) engines to capture unused/waste heat and utilize it thereby reducing fuel consumption and emissions by improving efficiency. This information report is a survey...

CSA B55.2 - Drain water heat recovery units
January 1, 2020 - CSA

This Standard specifies requirements for the durability and safety of drain water heat recovery (DWHR) units. This Standard applies to DWHR units of any diameter and length and configuration for use with potable water, and to their components and materials supplied by the...

GMI R-5-4 - Water Recovery
December 1, 2007 - GME

Purpose Water recovery test of brake linings.

API PUBL 534 - Heat Recovery Steam Generators First Edition
January 1, 1995 - API

1.1 Scope This publication provides guidelines for the selection or evaluation of heat recovery steam generator (HRSG) systems. Details of related equipment designs are considered only where they interact with the HRSG system design. This publication does not provide...

API PUBL 4682 - Free-Product Recovery of Petrolem Hydrocarbon Liquids
June 1, 1999 - API

1.1 Purpose and Scope This publication provides an overview of proven technologies for recovering free-product petroleum releases to groundwater. An approach is given to optimize free-product recovery (FPR) for minimal water production and free-product smearing. Information and...

ISO 21905 - Gas turbine exhaust systems with or without waste heat recovery
March 1, 2020 - ISO

This document specifies requirements and gives recommendations for the design, materials of construction, modelling, controlling, fabrication, inspection, testing, installation, start-up and operation of industrial gas turbine (GT) exhaust systems with or without waste heat...

ASTM F1780-18 - Standard Guide for Estimating Oil Spill Recovery System Effectiveness
November 1, 2018 - ASTM International

This guide covers the key factors to consider in estimating the effectiveness of containment and recovery systems that may be used to assist in the control of oil spills on water. The purpose of this guide is to provide the user with information on assessing the effective use...

ASTM F1780-97(2018) - Standard Guide for Estimating Oil Spill Recovery System Effectiveness
September 1, 2018 - ASTM International

This guide covers the key factors to consider in estimating the effectiveness of containment and recovery systems that may be used to assist in the control of oil spills on water. The purpose of this guide is to provide the user with information on assessing the effective use...

ASTM F1780-97(2010) - Standard Guide for Estimating Oil Spill Recovery System Effectiveness
June 1, 2010 - ASTM International

This guide covers the key factors to consider in estimating the effectiveness of containment and recovery systems that may be used to assist in the control of oil spills on water. The purpose of this guide is to provide the user with information on assessing the effective use...

DEF STAN 25-23 - Vehicle Recovery Facilities
January 1, 1994 - MODUK

This INTERIM Defence Standard specifies the characteristics of recovery eyes/lugs fitted to tracked and wheeled tactical land vehicles, armoured fighting vehicles, plant equipment, towed plant ant trailers to enable them to be recovered safely. It rationalizes on the sizes of recovery...

ASTM F1780-97(2002) - Standard Guide for Estimating Oil Spill Recovery System Effectiveness
October 10, 2002 - ASTM International

This guide covers the key factors to consider in estimating the effectiveness of containment and recovery systems that may be used to assist in the control of oil spills on water. The purpose of this guide is to provide the user with information on assessing the effective use...

API PUBL 1645 - Stage II Vapor Recovery System Operations & System Installation Costs
August 1, 2002 - API

Stage II vapor recovery is a well-known air quality control measure that reduces ozone precursors from gasoline dispensing facilities (GDFs). As a result of its relative high-visual profile, Stage II vapor controls are sometimes proposed as a part of a regional air quality attainment...

FORD FLTM BO 041-01 - STATIC INDENTATION AND RECOVERY
December 14, 2017 - FORD

Application This procedure is used to determine the recovery of soft interior composite systems after application of static load using an indenter.

UL 1963 - Refrigerant Recovery/Recycling Equipment
June 1, 2011 - ULSE

019630-000000-000000 1 Scope 1.1 These requirements cover refrigerant recovery and recycling equipment to be employed in accordance with the National Electrical Code, NFPA 70 and include battery operated equipment. 1.2 These requirements apply to equipment intended for indoor or outdoor use...

UFGS-23 52 43.00 10 - HEAT RECOVERY BOILERS
April 1, 2008 - NASA

NOTE: This guide specification covers the requirements for both fire-tube and water-tube heat recovery, steam generating boilers with individual capacities from 907 to 136,000 kg 2,000 to 300,000 pounds of steam per hour.

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