首页 馆藏资源 舆情信息 标准服务 科研活动 关于我们
现行 ISO 9847:2023
到馆提醒
收藏跟踪
购买正版
Solar energy — Calibration of pyranometers by comparison to a reference pyranometer 太阳能.日射强度计与参考日射强度表的比较校准
发布日期: 2023-01-20
本文件规定了使用参考日射表校准日射表的两种优选方法;室内(A型)和室外(B型)。 室内或A型校准是针对光源进行的,而室外方法B采用自然太阳辐射作为光源。 室内校准在垂直入射(A1型)下进行,接收器表面垂直于灯的光束,或者在使用积分球(A2型)暴露于均匀漫射光源下进行。 室外校准是使用太阳作为光源进行的,日射表处于水平位置(B1型)、倾斜位置(B2型)或垂直入射(B3型)。 如果使用可追溯的参考仪器,根据指定方法进行的校准将通过世界辐射参考(WRR)可追溯到SI。本文件适用于大多数类型的日射表,无论采用何种类型的技术。这些方法已经针对符合ISO A、B和C类要求的辐射强度计进行了验证?9060.一般而言,只要进行适当的不确定度评估,所有辐射强度计都可以使用所述方法进行校准。 与光谱平坦的日射强度计不同,非光谱平坦的日射强度计可能具有随波长强烈变化的光谱响应,甚至在从300到1?500?nm,因此校准结果可能在更有限的条件范围下是有效的。 校准的结果是伴随着不确定度的仪器灵敏度。本文件在附件中提供了不确定性评估的建议。

This document specifies two preferred methods for the calibration of pyranometers using reference pyranometers; indoor (Type A) and outdoor (Type B).

Indoor or type A calibration, is performed against a lamp source, while the outdoor method B, employs natural solar radiation as the source.

Indoor calibration is performed either at normal incidence (type A1), the receiver surface perpendicular to the beam of the lamp or under exposure to a uniform diffuse lamp source using an integrating sphere (type A2).

Outdoor calibration is performed using the sun as a source, with the pyranometer in a horizontal position (type B1), in a tilted position (type B2), or at normal incidence (type B3).

Calibrations according to the specified methods will be traceable to SI, through the world radiometric reference (WRR), provided that traceable reference instruments are used.

This document is applicable to most types of pyranometers regardless of the type technology employed. The methods have been validated for pyranometers that comply with the requirements for classes A, B and C of ISO9060. In general, all pyranometers may be calibrated by using the described methods, provided that a proper uncertainty evaluation is performed.

Unlike spectrally flat pyranometers, non-spectrally flat pyranometers might have a spectral response that varies strongly with the wavelength even within the spectral range from 300 to 1?500?nm, and therefore the calibration result may possibly be valid under a more limited range of conditions.

The result of a calibration is an instrument sensitivity accompanied by an uncertainty. This document offers suggestions for uncertainty evaluation in the annexes.

分类信息
关联关系
研制信息
归口单位: ISO/TC 180/SC 1
相似标准/计划/法规
现行
KS B ISO 9847
태양 에너지 — 기준 수평면 일사계와 비교에 의한 현장 수평면 일사계의 교정
太阳能 - 通过与参考光伏计比较来测量现场太阳辐射计
2018-11-23
现行
KS B ISO 9847(2024 Confirm)
태양 에너지 — 기준 수평면 일사계와 비교에 의한 현장 수평면 일사계의 교정
太阳能现场日射强度计与参考日射强度表的比较校准
2018-11-23
现行
KS B ISO 9846
태양 에너지 — 직달 일사계를 이용한 수평면 일사계의 교정
太阳能 - 使用测微计校准太阳能计
2018-11-23
现行
KS B ISO 9846
태양 에너지 — 직달 일사계를 이용한 수평면 일사계의 교정
太阳能日射强度计的校准
2024-02-05
现行
ISO 9846-1993
Solar energy — Calibration of a pyranometer using a pyrheliometer
太阳能——使用日射强度计校准日射强度计
1993-11-25
现行
KS B ISO 9059
태양 에너지 — 기준 직달 일사계와 비교를 통한 현장 직달 일사계의 교정
太阳能 - 通过与参考测量仪进行比较来校准现场测温仪
2018-11-23
现行
KS B ISO 9059
태양 에너지 — 기준 직달 일사계와 비교를 통한 현장 직달 일사계의 교정
太阳能.通过与参考太阳热计的比较校准场太阳热计
2024-02-05
现行
ISO 9059-1990
Solar energy — Calibration of field pyrheliometers by comparison to a reference pyrheliometer
太阳能——通过与参考日射强度计的比较校准现场日射强度计
1990-10-11