US$439.00 · In stock Delivery: <= 4 days. True-PDF full-copy in English will be manually translated and delivered via email. JJG 518-2023: Pitot Tubes Status: Valid JJG 518: Evolution and historical versions
Standard ID | Contents [version] | USD | STEP2 | [PDF] delivered in | Standard Title (Description) | Status | PDF |
JJG 518-2023 | English | 439 |
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4 days [Need to translate]
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Pitot Tubes
| Valid |
JJG 518-2023
|
JJG 518-1998 | English | 359 |
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3 days [Need to translate]
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Pitot Tubes
| Obsolete |
JJG 518-1998
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JJG 518-1988 | English | RFQ |
ASK
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3 days [Need to translate]
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Verification Regulation of Pitot Statics Tubes
| Obsolete |
JJG 518-1988
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Standard similar to JJG 518-2023 JJG 249 JJG 404 JJG 134
Basic data Standard ID | JJG 518-2023 (JJG518-2023) | Description (Translated English) | Pitot Tubes | Sector / Industry | Metrology & Measurement Industry Standard | Word Count Estimation | 20,291 | Date of Issue | 2023-03-15 | Date of Implementation | 2023-09-15 | Issuing agency(ies) | State Administration for Market Regulation |
JJG 518-2023: Pitot Tubes---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 Verification Regulations of the People's Republic of China
JJG 518-2023
pitot tube
Pitot Tubes
Released on 2023-03-15
2023-09-15 Implementation
Released by the State Administration for Market Regulation
Pitot tube verification regulations
Pitot Tubes
Replace JJG 518-1998
Responsible unit: Meteorological Pressure Meteorological Committee of National Meteorological Measuring Instruments Measuring Technology Committee
Subcommittee
Main drafting unit: Meteorological Observation Center of China Meteorological Administration
China Institute of Metrology
AVIC Beijing Great Wall Metrology and Testing Technology Research Institute
Participating in the drafting unit: Xinjiang Meteorological Technology and Equipment Support Center
Jiangsu Meteorological Observation Center
This regulation entrusts the Meteorological Pressure Sub-Technical Committee of the National Meteorological Measuring Instruments Measuring Technology Committee
committee responsible for explaining
The main drafters of this regulation:
Liu Xin (Meteorological Observation Center of China Meteorological Administration)
Cui Lishui (National Institute of Metrology)
Li Songkui (Meteorological Observation Center of China Meteorological Administration)
Wang Yi (Beijing Great Wall Metrology and Testing Technology Research Institute of AVIC)
Participating drafters:
Cao Peng (National Institute of Metrology)
Wu Ning (Xinjiang Meteorological Technology Equipment Support Center)
Zhang Zheng (Jiangsu Meteorological Observation 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 performance requirements (2)
5:1 Pitot tube calibration factor(2)
5:2 Repeatability(2)
6 General technical requirements (3)
6:1 L-shaped pitot tube (3)
6:2 S-type pitot tube (3)
7 Measuring Instrument Control(3)
7:1 Test conditions (3)
7:2 Verification items (4)
7:3 Verification method (4)
7:4 Processing of verification results (6)
7:5 Verification cycle (6)
Appendix A Standard pitot tube wind speed calculation method (7)
Appendix BL Type Standard Pitot Tube Verification Record Format (8)
Appendix CL-type working grade Pitot tube (S-type Pitot tube) verification record format (9)
Appendix D Verification Certificate/Verification Result Notification Inner Page Format (10)
Introduction
JJF1002 "Rules for Writing National Metrology Verification Regulations", JJF1001 "General Metrology Terms and Definitions",
JJF1059:1 "Assessment and Expression of Measurement Uncertainty" together constitute the basic series supporting the revision of this regulation
specification:
Compared with JJG 518-1998, the major technical changes in this regulation are as follows except editorial modifications:
--- Added references (see Chapter 2) and terms and units of measurement (see Chapter 3);
---Measurement performance requirements for L-type standard pitot tube, L-type working grade pitot tube and S-type pitot tube
Provisions, increasing the measurement range and repeatability (see Chapter 5);
--- The requirements for external dimensions have been deleted from the general technical conditions (see Chapter 6);
--- Refined the standards for testing different types of pitot tubes, modified the wind tunnel, differential pressure gauge and supporting environmental equipment
In addition, the technical requirements for the test environment have been increased (see 7:1);
--- Delete the measurement of pitot tube size, included angle, total pressure hole diameter, static pressure hole diameter, etc:;
--- Refined the verification method (see 7:3);
---Changed the verification period of Pitot tube (see 7:5);
--- Deleted Appendix 3;
--- Added the standard pitot tube wind speed calculation method (see Appendix A);
--- Refined the verification record format (see Appendix B, Appendix C);
--- Refined the information and format of the inner page of the verification certificate/verification result notification (see Appendix D):
The previous releases of this regulation are as follows:
---JJG 518-1998:
Pitot tube verification regulations
1 Scope
This regulation applies to the initial verification, follow-up verification and in-use inspection of L-type pitot tubes and S-type pitot tubes:
2 References
This procedure references the following documents:
JJF1001-2011 general measurement terms and definitions
For dated references, only the dated version applies to this regulation; for undated references
document, its latest version (including all amendments) applies to this regulation:
3 Terminology and units of measurement
3:1 Terminology
A set of holes for measuring hydrostatic pressure:
3:1:2 total pressure tapping
Orifice for measuring the stagnation pressure of a fluid:
3:1:3 Differential pressure
The pressure difference between the total pressure port and the static pressure port:
3:2 Units of measurement
3:2:1 The calibration coefficient of Pitot tube is a dimensionless constant, expressed as α:
3:2:2 The legal measurement unit of the differential pressure value measured by the pitot tube is Pascal, and the symbol is Pa:
4 Overview
A pitot tube is a tubular device that determines the fluid flow rate by measuring the pressure difference between the total fluid pressure and the static pressure:
It is often used in conjunction with a differential pressure gauge: According to the different shape and structure of pitot tube, it can be divided into L-type pitot tube and S-type pitot tube:
Host two:
The L-shaped pitot tube is composed of a rod and a cylindrical probe, and the rod and the probe are connected vertically: One side of the right angle is the measuring head,
The total pressure port is located on the top of the probe, and the static pressure port is located on one or more cross-sections around the probe, from the static pressure port to the total pressure port:
The part of the hole is called the nose end, and the shape of the nose end has three types: spherical, conical and elliptical; the other side of the right angle is a strut, on which
There are directional rods, total pressure joints and static pressure joints: The shape and structure of the L-shaped pitot tube is shown in Figure 1:
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