BS 7621-1993 Method for calibrating field pyranometers by comparison to a reference pyranometer《通过与标准日射强度计的比较现场校准日射强度计方法》.pdf
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1、BSI BS*7b2L 93 Lb24bbS 0325945 407 m BRITISH STANDARD Method for Calibrating field Pyranometers by comparison to a reference Pyranometer UDC 551.521.1 : 535.231.6.089.6 BS 7621 : 1993 IS0 9847 : 1992 BSI BS+7b2L 93 = Lb24bb 0325946 343 = BS 7621 : 1993 Committees responsible for this British Standar
2、d I The preparation of this British Standard was entrusted by the Refrigeration Heating and Air Conditioning Standards Policy Committee (RHE/-) to Technical Committee RHEIBS, upon which the following bodies were represented: Association of Consulting Engineers British Precast Concrete Federation Ltd
3、. Chartered institution of Building Services Engineers Consumers Association Copper Development Association Cranfield Institute of kchnology Department of the Environment Department of the Environment (Building Research Establishment) Institution of Gas Engineers international Solar Energy Society N
4、ational Centre for Alternative kchnology Royal Institute of British Architects Solar Trade Association Swimming Pool and Allied Trades Association Ltd. University College Cardiff University of Ulster Water Byelaws Advisory Service This British Standard, having been prepared under the direction of th
5、e Refrigeration Heating and AU Conditioning Amendments issued since publication Standards policy Committee, was published under the Amd. No. Date Text affected authority of the Standards Board and comes into effect on 16 January 1993 O MI 1993 The foiowing BSI references relate to the work on this s
6、tandard: Committee reference RHEIZS Draft for comment 9W77417 Dc ISBN O MIO 21024 6 BSI BSx7621 93 m 1b24bb9 0325947 28T m BS 7621 : 1993 Contents Committees responsible National foreword Introduction page Inside front cover ii iii Method 1 Scope 2 Normative references 3 Definitions 4 Apparatus 6 Ca
7、libration procedure 6 Certificate of calibration 7 Precision and accuracy Annexes A (informative) Calibration devices using artificial sources 8 C (informative) Computation of daily average solar angle 13 D (informative) Procedure to determine the ratio of the directional response 14 E (informative)
8、 Bibliography 15 B (informative) Interferences and precautions 11 c i BSI BS+b2L 93 m Lb24669 0325948 LLb m BS 7621 : 1993 National foreword ii This British Standard has been prepared under the direction of the Refrigeration Heating and Air Conditioning Standards Policy Committee and is identical wi
9、th IS0 9847 : 1992 Solar energy - Calibmtim of field pyranmwters by mparison to a reference pymnomder, published by the International Organization for Standardization (ISO) and prepared by Technid Committee ISO/TC 180, Solar heating, in which the UK played an active part. Cross-reference The Technic
10、al Committee has reviewed the provisions of IS0 9060 : 1990, to which normative reference is made in the text, and has decided that they are acceptable for use in conjunction with this standard. Compliance with a British Standard does not of itself confer immunity from legal obligations. r BSI BSt76
11、2L 93 m Lb24bb9 0325949 052 m Introduction Accurate and precise measurements of the irradiance of the global (hemispherical) solar radiation are required in a) the determination of the energy available to flat-plate solar collec- tors, b) the assessment of irradiance and radiant exposure in the test
12、ing of solar and non-solar-related materials technologies, and c) the assessment of the direct versus diffuse solar components far energy budget analysis, geographic mapping of solar energy, and as an aid in the determination of the concentration of aerosol and particulate pollution and the effects
13、of water vapour. Although meteorological and resource assessment measurements gen- erally require pyranometers oriented with their axis vertical, appli- cations associated with flat-plate collectors and the study of the solar exposure of related materials require calibrations of instruments tilted a
14、t a predetermined non-vertical orientation. Calibrations at fixed tilt an- gles have applications which seek state-of-the-art accuracy, requiring corrections for cosine, tilt and azimuth. BSI BS*762L 93 1624667 0325950 874 - INTERNATIONAL STANDARD IS0 9847:1992(E) Solar energy - Calibration of field
15、 Pyranometers by comparison to a reference Pyranometer 1 Scope 1.1 This International Standard specifies two pre- ferred methods for the calibration of field pyrano- meters using reference Pyranometers. 1.2 One method, the outdoor calibration or type I, employs solar radiation as the source, while t
16、he other method, the indoor calibration or type II, em- ploys an artificial radiation source. 1.2.1 The outdoor calibration of field Pyranometers may be performed with the Pyranometer in a hori- zontal position (Le. zero tilt) (type la), in a tilted position (type Ib), or at normal incidence (type I
17、C) maintaining the receiver surface perpendicular to the suns beam component. 1.2.2 The indoor calibration of field Pyranometers may be performed using an integrating sphere with shaded (type Ila) or unshaded (type Ilb) lamp(s), or at normal incidence (type Ilc) frequently using an optical bench to
18、present the receiver surface per- pendicular to the beam of the lamp. Types Ila and Ilb correspond to an outdoor cali- bration under conditions of overcast and sunny sky with large light cloud fields, respectively. Type Ilc is comparable with the normal incidence calibration of type IC. 1.3 The meth
19、ods of calibration specified are traceable to the world radiometric reference (WRR); traceability to the International Pyrheliometric Scale of 1956 is not permitted. 1.4 This International Standard is applicable to most types of field Pyranometers regardless of the type of radiation receptor employe
20、d. In general, all Pyranometers used for long-term monitoring of inci- dent solar irradiance may be calibrated by using the described methods, provided that the reference Pyranometer lias been calibrated at essentially the same tilt from horizontal as the tilt employed in the calibration. NOTE 1 Pyr
21、anometers used for collector tests should be calibrated using a reference pyrheliometer (see IS0 9846). 2 Normative references The following standards contain provisions which, through reference in this text, constitute provisions of this International Standard. At the time of publi- cation, the edi
22、tions indicated were valid. All stan- dards are subject to revision, and parties to agreements based on this International Standard are encouraged to investigate the possibility of ap- plying the most recent editions of the standards in- dicated below. Members of IEC and IS0 maintain registers of cu
23、rrently valid International Standards. IS0 9060:1990, Solar energy - Specification and classification of instruments for measuring hemispherical solar and direct solar radiation. IS0 9846:-”, Solar energy - Calibration of a Pyranometer using a reference Pyrheliometer. 3 Definitions For the purposes
24、of this International Standard, the following definitions apply. 3.1 altazimuth mount: A tracking mount capable of rotation about orthogonal altitude and azimuth axes; tracking may be manual or by a follow-the-sun servomechanism. (See also IS0 9846.) 3.2 global (solar) irradiance: Hemispherical sola
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