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DL/T 1981.11-2021 统一潮流控制器 第11部分:调度运行规程 现行 发布日期 :  2021-04-26 实施日期 :  2021-10-26

本文件适用于220kV及以上电压等级电网中的统一潮流控制器,其他电压等级的统一潮流控制器可参照执行。

定价: 24元 / 折扣价: 21 加购物车

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GA/T 2000.11-2020 公安信息代码 第11部分:居民身份证制证类型代码 现行 发布日期 :  2020-11-23 实施日期 :  2021-01-01

GA/T 2000的本部分规定了居民身份证制证类型的代码。
本部分适用于公安信息化建设以及信息的处理与管理。

定价: 19元 / 折扣价: 17 加购物车

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GA/T 2000.11-2014 公安信息代码 第11部分:居民身份证制证类型代码 废止 发布日期 :  2014-10-31 实施日期 :  2014-10-31

GA/T 2000的本部分规定了居民身份证制证类型的代码。
本部分适用于各级公安机关的居民身份证管理工作。

定价: 14元 / 折扣价: 12 加购物车

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GA 16.11-2003 道路交通事故信息代码第11部分:当事机动车保险情况代码 现行 发布日期 :  2003-10-22 实施日期 :  2003-10-22

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5.1 Solar reflectance and thermal emittance are important factors affecting surface and near-surface ambient air temperature. Surfaces with low solar reflectance, absorb a high fraction of the incoming solar energy. A fraction of this absorbed energy is conducted into ground and buildings, a fraction is convected to air (leading to higher air temperatures), and a fraction is radiated to the sky. For equivalent conditions, the lower the emissivity of a surface the higher its steady-state temperature. Surfaces with low emissivity cannot effectively radiate to the sky and, therefore, get hot. Determination of solar reflectance and thermal emittance, and subsequent calculation of the relative temperature of the surfaces with respect to black and white reference temperature (defined as Solar Reflectance Index, SRI), may help designers and consumers to choose the proper materials to make their buildings and communities energy efficient. The method described here gives the SRI of surfaces based on measured solar reflectances and thermal emissivities of the surfaces.1.1 This practice covers the calculation of the Solar Reflectance Index (SRI) of horizontal and low-sloped opaque surfaces at standard conditions. The method is intended to calculate SRI for surfaces with emissivity greater than 0.1.1.2 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.1.3 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use.1.4 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

定价: 515元 / 折扣价: 438 加购物车

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5.1 Although a number of different methods have been used to assess backdrafting and spillage (see NFPA 54, CAN/CGSB-51.71, and 1-4)6 a single well-accepted method is not yet available. At this point, different methods can yield different results. In addition, advantages and drawbacks of different methods have not been evaluated or described.5.2 To provide a consistent basis for selection of methods, this guide summarizes different methods available to assess backdrafting and spillage. Advantages and limitations of each method are addressed.5.3 One or more of the methods described in this guide should be performed when backdrafting or spillage from vented combustion appliances is suspected to be the cause of a potential problem such as elevated carbon monoxide (CO) levels or excessive moisture.5.4 The following are examples of specific conditions under which such methods could be performed:5.4.1 When debris or soot is evident at the draft hood, indicating that backdrafting may have occurred in the past,5.4.2 When a new or replacement combustion appliance is added to a residence,5.4.3 When a new or replacement exhaust device or system, such as a downdraft range exhaust fan, a fireplace, or a fan-powered radon mitigation system, is added,5.4.4 When a residence is being remodeled or otherwise altered to increase energy efficiency, as with various types of weatherization programs, and5.4.5 When a CO alarm device has alarmed and a combustion appliance is one of the suspected causes of the alarm.5.5 Depending on the nature of the test(s) conducted and the test results, certain preventive or remedial actions may need to be taken. The following are examples:5.5.1 If any of the short-term tests indicates a potential for backdrafting, and particularly if more than one test indicates such potential, then the appliance and venting system should be further tested by a qualified technician, or remedial actions could be taken in accordance with 5.5.3.5.5.2 If continuous monitoring indicates that backdrafting is occurring, and particularly if it indicates that spillage is occurring that impacts indoor air quality (for example, elevated CO concentrations or excessive moisture in the house), then remedial action is indicated.5.5.3 Possible remedial actions include the following:5.5.3.1 At a minimum, a CO alarm device could be installed in the house.5.5.3.2 Limiting the use of devices or systems that increase house depressurization, such as fireplaces and high-volume exhaust fans. Proper sealing of any air leakage sites, especially at the top floor ceiling level, can also reduce house depressurization at the lower levels of the house.5.5.3.3 Partially opening a window in the furnace or appliance room, if available. Keeping the door nearest the appliance room open at all times or putting louvers in the door.5.5.3.4 Providing increased makeup air for the appliance (for example, by providing a small duct or opening to the outdoors near the appliance).5.5.4 If remedial actions are not successful, then consideration can be given to correcting or replacing the venting system or, if necessary, replacing the spilling appliance with one that can better tolerate house depressurization.5.6 The understanding related to backdrafting and spillage phenomena is evolving. Comprehensive research using a single, reliable method is needed to better understand the frequency, duration, and severity of depressurization-induced spillage in a broad cross section of homes (5). In the absence of a single well-accepted method for assessing the potential for or occurrence of backdrafting or spillage, alternative methods are presented in this guide. The guide is intended to foster consistent application of these methods in future field work or research. The resultant data will enable informed decisions on relative strengths and weaknesses of the different methods and provides a basis for any refinements that may be appropriate. Continued efforts along these lines will enable the development of specifications for a single method that is acceptable to all concerned.1.1 This guide describes and compares different methods for assessing the potential for, or existence of, depressurization-induced backdrafting and spillage from vented residential combustion appliances.1.2 Assessment of depressurization-induced backdrafting and spillage is conducted under either induced depressurization or natural conditions.1.3 Residential vented combustion appliances addressed in this guide include hot water heaters and furnace. The guide also is applicable to boilers.1.4 The methods given in this guide are applicable to Category I (draft-hood- and induced-fan-equipped) furnaces. The guide does not apply to Category III (power-vent-equipped) or Category IV (direct-vent) furnaces.1.5 The methods in this guide are not intended to identify backdrafting or spillage due to vent blockage or heat-exchanger leakage.1.6 This guide is not intended to provide a basis for determining compliance with code requirements on appliance and venting installation, but does include a visual assessment of the installation. This assessment may indicate the need for a thorough inspection by a qualified technician.1.7 Users of the methods in this guide should be familiar with combustion appliance operation and with making house-tightness measurements using a blower door. Some methods described in this guide require familiarity with differential-pressure measurements and use of computer-based data-logging equipment.1.8 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.1.9 This guide does not purport to address all safety concerns, if any, associated with its use. It is the responsibility of the user to establish appropriate safety, health, and environmental practices and to determine the applicability of regulatory limitations prior to use. Carbon monoxide (CO) exposure or flame roll-out may occur when performing certain procedures given in this guide. See Section 7, for precautions that must be taken in conducting such procedures.1.10 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

定价: 646元 / 折扣价: 550 加购物车

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T/GTIA 5.11-2016 交易体系第11部分:订单失效 现行 发布日期 :  2016-08-18 实施日期 :  2023-10-10

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定价: 1866元 / 折扣价: 1587

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YC/T 10.11-2018 烟草机械 通用技术条件 第11部分:涂漆 现行 发布日期 :  2018-04-03 实施日期 :  2018-04-15

YC/T 10的本部分规定了烟草机械涂漆的术语和定义、总则、一般要求、涂漆要求、试验方法和检验规则。本部分适用于烟草机械的涂漆。

定价: 28元 / 折扣价: 24 加购物车

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YC/T 10.11-2006 烟草机械 通用技术条件 第11部分:涂漆 被代替 发布日期 :  2006-02-23 实施日期 :  2006-03-01

YC/T 10的本部分规定了烟草机械涂漆的一般要求、试验方法和检验规则。 本部分适用于烟草机械的涂漆。

定价: 21元 / 折扣价: 18 加购物车

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T/GTIA 6.11-2016 服务体系第11部分:信息安全管理与保障 现行 发布日期 :  2016-08-18 实施日期 :  2023-10-10

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T/XCFW TG02-013.11-2023 雪场住宿第11部分:问卷满意度测评 现行 发布日期 :  2023-09-25 实施日期 :  2023-09-25

1范围2规范性引用文件3术语和定义4测评原则5问卷设计6测评对象7测评方式8结果处理

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GA/T 16.11-2012 道路交通管理信息代码第11部分:机动车进口凭证代码 现行 发布日期 :  2012-07-31 实施日期 :  2012-07-31

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本部分规定了用质量损失法测定预焙阳极和侧部炭块的空气反应性。 本部分适用于预焙阳极和侧部炭块空气反应性的测定。

定价: 21元 / 折扣价: 18 加购物车

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