13.200 事故和灾害控制 标准查询与下载



共找到 734 条与 事故和灾害控制 相关的标准,共 49

Safety in emergencies. Procedure for the development of a list of measures for civil defense, measures for prevention of natural and man-caused emergencies in capital construction design

ICS
13.200
CCS
发布
2012
实施
2013-07-01

Risk management. Risk register. General

ICS
13.200
CCS
发布
2012
实施
2013-12-01

Civil defense. Degree of radiation attenuation by protective constructions of civil defense structures. General requirements for calculation

ICS
13.200
CCS
发布
2012
实施
2013-07-01

本规范规定了应急平台体系数据库基础信息构成及内容要求。 本规范适用于广东省应急平台体系数据库建设。

Guangdong province emergency platform system database specification basic information

ICS
13.200
CCS
A 91
发布
2011-12-25
实施
2012-03-31

Standard Terminology for Homeland Security Applications

ICS
13.200
CCS
发布
2011-12-15
实施

1.1 This terminology provides definitions and abbreviations of terms used in ASTM International standards pertaining to homeland security applications.

Standard Terminology for Homeland Security Applications

ICS
13.200
CCS
发布
2011-12-15
实施

This document provides guidance for Emergency Service Management when considering integrated operational response to a major emergency. This guidance will enhance an organisation""s ability to determine their existing operational capabilities for being able to respond to a major emergency. The ability for the emergency services to provide a co-ordinated, effective and sustained response to major emergencies, providing acceptable levels of protection for both emergency responders and the citizen is directly dependent upon the level of capability and preparedness within individual organisations.This guidance identifies the key elements that should be consider

Emergency Services Capability Framework

ICS
13.200
CCS
发布
2011-12-03
实施
2011-12-03

This European Standard specifies requirements for evaluation of conformity of the following vehicle restraint systems: a) safety barriers; b) crash cushions; c) terminals (will be effective when ENV 1317-4 becomes an EN); d) transitions (will be effective when ENV 1317-4 becomes an EN); e) vehicle / pedestrian parapets (only for the vehicle restraint function). Pedestrian parapet requirements are not covered in this document. Requirements for the evaluation of durability with respect to weathering are included in this document. Requirements for other forms of durability (e.g. marine environment, sand abrasion) are not included. Temporary barriers are not within the scope of this document.

Road restraint systems - Part 5: Product requirements and evaluation of conformity for vehicle restraint systems

ICS
13.200
CCS
发布
2011-10-12
实施

本标准规定了涂装企业事故应急预案编制的程序、内容和编制注意事项。 本标准适用于涂装企业事故应急预案编制与审订。

Requirement on painting enterprises to develop emergency response plan for work place accidents

ICS
13.200
CCS
C65
发布
2011-07-12
实施
2011-12-01

A main purpose of using robots in emergency response operations is to enhance the safety and effectiveness of emergency responders operating in hazardous or inaccessible environments. The testing results of the candidate robot shall describe, in a statistically significant way, how reliably the robot is able to negotiate the specified types of obstacles and thus provide emergency responders sufficiently high levels of confidence to determine the applicability of the robot. This test method addresses robot performance requirements expressed by emergency responders and representatives from other interested organizations. The performance data captured within this test method are indicative of the testing robot’s capabilities. Having available a roster of successfully tested robots with associated performance data to guide procurement and deployment decisions for emergency responders is consistent with the guideline of “Governments at all levels have a responsibility to develop detailed, robust, all-hazards response plans” as stated in National Response Framework. This test apparatus is scalable to constrain robot maneuverability during task performance for a range of robot sizes in confined areas associated with emergency response operations. Variants of the apparatus provide minimum lateral clearance of 2.4 m (8 ft) for robots expected to operate around environments such as cluttered city streets, parking lots, and building lobbies; minimum lateral clearance of 1.2 m (4 ft) for robots expected to operate in and around environments such as large buildings, stairwells, and urban sidewalks; minimum lateral clearance of 0.6 m (2 ft) for robots expected to operate within environments such as dwellings and workspaces, buses and airplanes, and semi-collapsed structures; minimum lateral clearance of less than 0.6 m (2 ft) with a minimum vertical clearance adjustable from 0.6 m (2 ft) to 10 cm (4 in.) for robots expected to deploy through breeches and operate within sub-human size confined spaces voids in collapsed structures. The standard apparatus is specified to be easily fabricated to facilitate self-evaluation by robot developers and provide practice tasks for emergency responders that exercise robot actuators, sensors, and operator interfaces. The standard apparatus can also be used to support operator training and establish operator proficiency. 5.5 Although the test method was developed first for emergency response robots, it may be applicable to other operational domains.1.1 Purpose: 1.1.1 The purpose of this test method, as a part of a suite of mobility test methods, is to quantitatively evaluate a teleoperated ground robot’s (see Terminology E2521) capability of traversing vertical obstacles in confined areas. 1.1.2 Robots shall possess a certain set of mobility capabilities, including negotiating obstacles, to suit critical operations such as emergency responses. A vertical step with an unknown edge condition is a type of obstacle that exists in emergency response and other environments. These environments often pose constraints to robotic mobility to various degrees. This test method specifies apparatuses, procedures, and metrics to standardize this obstacle for testing. 1.1.3 The test apparatuses are scalable to provide a range of lateral dimensions to constrain the robotic mobility during task performance. Fig. 1 shows three apparatus sizes to test robots intended for different emergency response scenarios. 1.1.4 Emergency response ground robots shall be able to handle many types of obs......

Standard Test Method for Evaluating Emergency Response Robot Capabilities: Mobility: Confined Area Obstacles: Hurdles

ICS
13.200
CCS
发布
2011-07-01
实施

本标准规定了生产安全事故应急演练(以下简称应急演练)的目的、原则、类型、内容和综合应急演练的组织与实施,其他类型演练的组织与实施可参照进行。 本标准适用于针对生产安全事故所开展的应急演练活动。

Guidelines for emergency exercises of production safety accidents

ICS
13.200
CCS
C78
发布
2011-04-19
实施
2011-09-01

The context of this CEN Workshop Agreement (CWA) is disaster and emergency management, and it aims to assist organizations involved by providing the list of codes for the message structure for the transfer of information between computers based systems in such a way that it can be reliably decoded. This is done by encoding the information in an XML Schema. This CWA-Part 2 provides a system of terms relating to disasters and emergencies and their encoding. Many of the XML fields are required to use a term from this companion CWA-Part 2, rather than free text, so that the information is well defined, and can be automatically translated into language appropria

Disaster and emergency management - Shared situation awareness - Part 2: Codes for the message structure

ICS
13.200
CCS
发布
2011-04-01
实施
2011-04-01

Smart community infrastructures — Disaster risk reduction — Guidelines for implementing seismometer systems

ICS
13.200
CCS
发布
2011-04
实施

Sets forth requirements for safety tags and barricade tapes to be used to identify temporary hazards.

Safety Tags and Barricade Tapes (for Temporary Hazards)

ICS
13.200
CCS
A90
发布
2011
实施

Tsunami evacuation sign

ICS
13.200
CCS
发布
2011
实施

Sets forth requirements for the design and location of product safety messages in collateral materials for a variety of products.

Product Safety Information in Product Manuals, Instructions, and Other Collateral Materials

ICS
13.200
CCS
J04
发布
2011
实施

1.1 Scope. 1.1.1 This standard shall establish the minimum requirements for the design, performance, testing, documentation, and certification of protective ensembles and ensemble elements for protection from chemicals, biological agents, and radiological particulates (CBRN) terrorism agents. 1.1.2* This standard shall establish requirements for protective ensembles and ensemble elements that are worn for a single exposure at incidents involving CBRN terrorism agents. 1.1.3 This standard shall establish requirements for new CBRN protective ensembles and ensemble elements. 1.1.4* This standard shall not establish requirements for respiratory protection for incidents involving CBRN terrorism agents. Appropriate respiratory protection for the incidents involving specific CBRN terrorism agent exposure is a critical part of overall protection and shall be specified and provided by the authority having jurisdiction. 1.1.5 This standard shall not establish requirements for any fire-fighting applications. 1.1.6* This standard shall not establish requirements for protection at incidents involving ionizing radiation, liquefied gas, cryogenic liquid hazards, explosives, or explosive atmospheres. 1.1.7* CBRN protective ensembles and ensemble elements that are certified as compliant with NFPA1994 shall be permitted also to be certified to NFPA1991, Standard on Vapor-Protective Ensembles for Hazardous Materials Emergencies, NFPA1992, Standard on Liquid Splash-Protective Ensembles and Clothing for Hazardous Materials Emergencies, and the single-use requirements of NFPA 1999, Standard on Protective Clothing for Emergency Medical Operations. 1.1.8 This standard shall not apply to any accessories that could be attached to the certified product, before or after purchase, but are not necessary for the certified product to meet the requirements of this standard. 1.1.9 This standard shall not be construed as addressing all of the safety concerns associated with the use of compliant CBRN protective ensembles and ensemble elements. It shall be the responsibility of the persons and organizations that use compliant CBRN protective ensembles and ensemble elements to establish safety and health practices and determine the applicability of regulatory limitations prior to use. 1.1.10 This standard shall not be construed as addressing all of the safety concerns, if any, associated with the use of this standard by testing facilities. It shall be the responsibility of the persons and organizations that use this standard to conduct testing of CBRN protective ensembles and ensemble elements to establish safety and health practices and determine the applicability of regulatory limitations prior to using this standard for any designing, manufacturing, and testing. 1.1.11 Nothing herein shall restrict any jurisdiction or manufacturer from exceeding these minimum requirements.

Standard on Protective Ensembles for First Responders to CBRN Terrorism Incidents

ICS
13.200
CCS
C73
发布
2011
实施

Due to the inherent construction of speakers, they can not be dust tight. This proposed standard change pertains to the outdoor speaker only, not the outdoor control equipment. During the July 2011 STP meeting many members mentioned that a sand/dust spray will ingress into any speaker at the location where the sound comes out, and the important issue is that the HPSA is still loud and intelligible after the sand/dust test.

Standard for Communication and Control Units for Mass Notification Systems

ICS
13.200
CCS
A91
发布
2011
实施

이 표준은 다음에 사용되는 봉입 렌즈형과 캡슐 렌즈형, 프리즘형 재귀 반사 시트에 대하여

Standard specification for retroreflective sheeting for traffic control & industrial safety

ICS
13.200
CCS
A80
发布
2010-12-27
实施
2010-12-27

本标准规定了突发环境事件应急监测的布点与采样、监测项目与相应的现场监测和实验室监测分析方法、监测数据的处理与上报、监测的质量保证等的技术要求。 本标准适用于因生产、经营、储存、运输、使用和处置危险化学品或危险物以及意外因素或不可抗拒的自然灾害等原因而引发的突发环境事件的应急监测,包括地表水、地下水、大气和土壤环境等的应急监测。 本标准不适用于核污染事件、海洋污染事件、涉及军事设施污染事件、生物、微生物污染事件等的应急监测。

Technical specifications for emergency monitoring in abrupt environmental accidents

ICS
13.200
CCS
Z04
发布
2010-10-19
实施
2011-01-01



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