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JJF 1935-2021 English PDF

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JJF 1935-2021: Calibration Specification for Cup Wind Speed Transducers of Automatic Weather Stations
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JJF 1935-2021English439 Add to Cart 4 days [Need to translate] Calibration Specification for Cup Wind Speed Transducers of Automatic Weather Stations Valid JJF 1935-2021

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Standard similar to JJF 1935-2021

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Basic data

Standard ID JJF 1935-2021 (JJF1935-2021)
Description (Translated English) Calibration Specification for Cup Wind Speed Transducers of Automatic Weather Stations
Sector / Industry Metrology & Measurement Industry Standard
Classification of Chinese Standard A57
Classification of International Standard 17.080
Word Count Estimation 20,211
Date of Issue 2021-12-08
Date of Implementation 2022-06-08
Issuing agency(ies) State Administration for Market Regulation
Summary This standard applies to the calibration of automatic weather station cup-type wind speed sensors (hereinafter referred to as wind speed sensors). Other cup-type wind speed sensors can be implemented as a reference.

JJF 1935-2021: Calibration Specification for Cup Wind Speed Transducers of Automatic Weather Stations


---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
National Metrology Technical Specifications of the People's Republic of China Calibration specification for cup-type wind speed sensor in automatic weather station Released on 2021-12-08 2022-06-08 Implementation Released by the State Administration for Market Regulation automatic weather station cup Wind Speed Sensor Calibration Specifications Responsible unit: National Meteorological Measuring Instruments Measuring Technical Committee Drafting unit: Meteorological Equipment Support Center of Liaoning Province Meteorological Observation Center of China Meteorological Administration Zhejiang Atmospheric Sounding Technical Support Center This specification entrusts the National Meteorological Measuring Instruments and Measuring Technical Committee to be responsible for interpretation The main drafters of this specification: Sha Li (Liaoning Meteorological Equipment Support Center) Liu Xin (Meteorological Observation Center of China Meteorological Administration) Luo Chang (Zhejiang Atmospheric Sounding Technology Support Center) Ding Hongying (Meteorological Observation Center of China Meteorological Administration) Participating drafters: Yu Hejun (Meteorological Observation Center of China Meteorological Administration) Li Songkui (Meteorological Observation Center of China Meteorological Administration) Inquiry (Liaoning Provincial Meteorological Equipment Support Center)

Table of contents

Introduction (Ⅱ) 1 Scope(1) 2 References(1) 3 Terms and units of measurement(1) 3:1 Terminology(1) 3:2 Units of measurement(1) 4 Overview(1) 5 Metrological characteristics(1) 6 Calibration conditions(1) 6:1 Environmental conditions (1) 6:2 Measurement standards and other equipment (2) 7 Calibration Items and Calibration Methods(2) 7:1 Calibration items(2) 7:2 Calibration method(3) 7:3 Data processing (3) 8 Calibration result expression(4) 9 Recalibration interval(5) Appendix A Standard Wind Speed Calculation Method (6) Appendix B Calculation Method of Working Straight Line (7) Appendix C Reference Format for Calibration Records of Cup-type Wind Speed Sensors in Automatic Weather Stations (8) Appendix D Calibration Certificate Inner Page Format (9) Appendix E Example of Calibration Uncertainty Evaluation of Wind Speed Sensor Indication Error (11)

Introduction

JJF 1071-2010 "Rules for Compilation of National Metrology Calibration Standards", JJF 1001-2011 "General Metrology Terminology and Definition", JJF 1059:1-2012 "Evaluation and Expression of Measurement Uncertainty" jointly constitute the support for the formulation of this specification The basic series of specifications: This specification is published for the first time: Calibration specification for cup-type wind speed sensor in automatic weather station

1 Scope

This specification applies to the calibration of automatic weather station cup-type wind speed sensors (hereinafter referred to as wind speed sensors): other cup Type wind speed sensor can refer to implementation:

2 References

This specification references the following documents: JJG431-2014 Portable three-cup wind direction anemometer JJF 1001-2011 general measurement terms and definitions JJF 1094-2002 Evaluation of Measuring Instrument Characteristics For dated references, only the dated version applies to this specification; for undated references document, its latest version (including all amendments) applies to this specification:

3 Terminology and units of measurement

3:1 Terminology 3:1:1 Starting wind speed startingwindspeed The wind cup changes from stationary to continuous rotation, and the anemometer can indicate or display the minimum wind speed at which the speed changes: 3:2 Units of measurement The legal measurement unit used for wind speed is meter per second, and the symbol is m/s:

4 Overview

The wind speed sensor is mainly composed of a wind speed sensing rotating part and a signal generating output part: The wind speed sensing part consists of 3 The wind cup is composed of two wind cups, and the wind cup is driven by the wind force, and the rotation speed of the wind cup increases with the increase of the wind speed: its angular velocity and wind The speed is directly proportional, the rotation of the wind cup generates pulses through mechanical transmission and photoelectric induction, and the output part of the signal generates pulses The pulse is converted into a frequency output electrical signal: The wind speed sensor is mainly used for wind speed and meteorological elements in the fields of meteorology, aviation, environmental protection, etc: automatic observation:

5 Metrological characteristics

5:1 Start wind speed 5:2 Indication error

6 Calibration conditions

6:1 Environmental conditions Temperature: (15~30)℃; Relative humidity: ≤85%:

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