ASTM E2506-2006 Standard Guide for Developing a Cost-Effective Risk Mitigation Plan for New and Existing Constructed Facilities《开发新的和现有工程设施成本风险缓解的标准指南》.pdf
《ASTM E2506-2006 Standard Guide for Developing a Cost-Effective Risk Mitigation Plan for New and Existing Constructed Facilities《开发新的和现有工程设施成本风险缓解的标准指南》.pdf》由会员分享,可在线阅读,更多相关《ASTM E2506-2006 Standard Guide for Developing a Cost-Effective Risk Mitigation Plan for New and Existing Constructed Facilities《开发新的和现有工程设施成本风险缓解的标准指南》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 2506 06Standard Guide forDeveloping a Cost-Effective Risk Mitigation Plan for Newand Existing Constructed Facilities1This standard is issued under the fixed designation E 2506; the number immediately following the designation indicates the year oforiginal adoption or, in the case of r
2、evision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.INTRODUCTIONProtecting constructed facilities from damages from natural and man-made hazards in a cost-effec
3、tive manner is a challenging task. Several measures of economic performance are available forevaluating building-related investments. These measures include, but are not limited to, life-cycle cost,present value net savings, savings-to-investment ratio, and adjusted internal rate of return. This gui
4、deprovides a generic framework for assessing the risks associated with natural and man-made hazards,formulating combinations of risk mitigation strategies for constructed facilities exposed to thosehazards, and using measures of economic performance to identify the most cost-effective combinationof
5、strategies.1. Scope1.1 This guide describes a generic framework for develop-ing a cost-effective risk mitigation plan for new and existingconstructed facilitiesbuildings, industrial facilities, and othercritical infrastructure. This guide provides owners and manag-ers of constructed facilities, arch
6、itects, engineers, constructors,other providers of professional services for constructed facili-ties, and researchers an approach for formulating and evaluat-ing combinations of risk mitigation strategies.1.2 This guide insures that the combinations of mitigationstrategies are formulated so that the
7、y can be rigorouslyanalyzed with economic tools. Economic tools include evalu-ation methods, standards that support and guide the applicationof those methods, and software for implementing the evalua-tion methods.1.3 The generic framework described in this guide helpsdecision makers assess the likel
8、ihood that their facility and itscontents will be damaged from natural and man-made hazards;identify engineering, management, and financial strategies forabating the risk of damages; and use standardized economicevaluation methods to select the most cost-effective combina-tion of risk mitigation str
9、ategies to protect their facility.1.4 The purpose of the risk mitigation plan is to provide themost cost-effective reduction in personal injuries, financiallosses, and damages to new and existing constructed facilities.Thus, the risk mitigation plan incorporates perspectives frommultiple stakeholder
10、sowners and managers, occupants andusers, and other affected partiesin addressing natural andman-made hazards.2. Referenced Documents2.1 ASTM Standards:2E 631 Terminology of Building ConstructionsE 833 Terminology of Building EconomicsE 917 Practice for Measuring Life-Cycle Costs of Buildingsand Bui
11、lding SystemsE 964 Practice for Measuring Benefit-to-Cost and Savings-to-Investment Ratios for Buildings and Building SystemsE 1057 Practice for Measuring Internal Rate of Return andAdjusted Internal Rate of Return for Investments in Build-ings and Building SystemsE 1074 Practice for Measuring Net B
12、enefits and Net Sav-ings for Investments in Buildings and Building SystemsE 1185 Guide for Selecting Economic Methods for Evalu-ating Investments in Buildings and Building SystemsE 1369 Guide for Selecting Techniques for Treating Uncer-tainty and Risk in the Economic Evaluation of Buildingsand Build
13、ing SystemsE 1557 Classification for Building Elements and RelatedSiteworkUNIFORMAT IIE 1765 Practice for Applying Analytical Hierarchy Process(AHP) to Multiattribute Decision Analysis of Investments1This guide is under the jurisdiction of ASTM Committee E06 on Performanceof Buildings and is the dir
14、ect responsibility of Subcommittee E06.81 on BuildingEconomics.Current edition approved Sept. 15, 2006. Published September 2006.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume informati
15、on, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.Related to Buildings and Building SystemsE 1946 Practice for Measuring Cost Risk of Buildings andBuilding SystemsE 21
16、03 Classification for Bridge Elements and RelatedApproach WorkE 2166 Practice for Organizing and Managing BuildingDataE 2204 Guide for Summarizing the Economic Impacts ofBuilding-Related Projects2.2 ASTM Adjuncts:Discount Factor Tables33. Terminology3.1 DefinitionsFor definitions of terms used in th
17、is guide,refer to Terminologies E 631 and E 833.4. Summary of Guide4.1 This guide presents a generic framework for developinga cost-effective risk mitigation plan for constructed facilitiesexposed to natural and man-made hazards. The generic frame-work consists of three interrelated components. The
18、threecomponents are: (1) perform risk assessment; (2) specifycombinations of risk mitigation strategies; and (3) performeconomic evaluation. The generic framework builds on anapproach presented in Chapman and Leng (3).44.2 This guide identifies related ASTM standards and ad-juncts and describes why
19、measuring uncertainty and risk iscritical in the development of cost-effective protective strate-gies for constructed facilities. In addition to ASTM standardsand adjuncts, this guide identifies technical documents andsoftware that support the generic framework. These documentsand software are summa
20、rized in Appendix X1.4.3 Data about the frequency and consequences of naturaland man-made hazards are helpful when assessing the risksthat a particular facility faces from these hazards. Historicalpatterns of natural disasters, in particular, indicate which areasare more prone to these specific haza
21、rds in the future. Manyanalysts refer to past incidences of man-made hazards, such ascrime, as predictors of future occurrences. Sources of hazardsdata are presented in Appendix X2.5. Significance and Use5.1 Standard practices for measuring the economic perfor-mance of investments in buildings and b
22、uilding systems havebeen published by ASTM. A computer program that produceseconomic measures consistent with these practices is avail-able.5The computer program is described in Appendix X3.Discount factor tables have been published by ASTM tofacilitate computing measures of economic performance for
23、most of the practices.35.2 Investments in long-lived projects, such as the erectionof new constructed facilities or additions and alterations toexisting constructed facilities, are characterized by uncertain-ties regarding project life, operation and maintenance costs,revenues, and other factors tha
24、t affect project economics. Sincefuture values of these variable factors are generally unknown,it is difficult to make reliable economic evaluations.5.3 The traditional approach to uncertainty in project invest-ment analysis is to apply economic methods of project evalu-ation to best-guess estimates
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