ISO 2975-2:1975
Measurement of water flow in closed conduits — Tracer methods — Part 2: Constant rate injection method using non-radioactive tracers
Measurement of water flow in closed conduits — Tracer methods — Part 2: Constant rate injection method using non-radioactive tracers
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 9
- Дата публикации:
- 1 августа 1975 г.
- Издание:
- ISO IS 2975 edition 1 version 1
- ICS:
- 17.120.10
Tracer methods apply to flow measurement in conduits into which a solution can be injected and those cases where effective mixing of this solution with the water flowing in the conduit can be achieved, this last condition being fundamental. Describes the method of constant injection rate using non-radioactive tracers.
Abstract
Overview
ISO 2975-2:1975 - "Measurement of water flow in closed conduits - Tracer methods - Part 2: Constant rate injection method using non‑radioactive tracers" specifies a practical, non‑radioactive tracer technique for measuring water flow in closed conduits (pipes, sewers, tunnels) where a tracer solution can be injected and thoroughly mixed. The method determines flow by continuously injecting a known tracer volume rate and comparing downstream sample concentrations after the mixing distance is reached.
Key topics and technical requirements
- Principle: Continuous (constant‑rate) injection of a tracer with known injection flow; downstream sampling after adequate mixing; flow computed from known injection rate and measured dilution.
- Mixing distance: Effective mixing is fundamental. The standard defines mixing distance and gives methods to estimate or measure it; insufficient mixing invalidates results.
- Injection duration and steady state: Injection must continue long enough to establish a stable, constant tracer concentration across the measuring cross‑section for several minutes. The minimum injection time is determined from preliminary instantaneous tracer tests or by monitoring sample concentration vs time.
- Tracer and solution preparation: Tracer solutions must be homogeneous and free of undissolved particles. Preparation in a separate container with vigorous mixing is recommended.
- Injection equipment and measurement of injection rate: Devices include positive displacement pumps (preferably driven by synchronous motors), calibrated tanks, propeller or volumetric meters (when calibrated/used appropriately). Injection flow accuracy and leak‑free systems are required and must be included in error analysis.
- Sampling protocol: Typical practice includes upstream/background checks, multiple injected‑solution samples (3–5), and several downstream diluted solution samples (≥5) taken across the measuring cross‑section and over the passage period.
- Analysis methods: Approved non‑radioactive analysis techniques include colorimetric, fluorimetric, and conductimetric methods. The standard discusses colorimetric analysis (example: sodium dichromate detection with diphenylcarbazide reagent).
- Error analysis and accuracy: When mixing and injection measurement meet the standard’s requirements, accuracies around 1% are achievable; better accuracy is possible under optimal conditions. Clause 7 of Part I is referenced for error estimation.
Practical applications
- Measuring discharge in pipes, culverts, sewer mains and closed conduits where conventional flowmeters are impractical.
- Calibration or verification of in‑line flowmeters, hydraulic modeling validation, leak or inflow studies, and flow assessment during temporary installations.
- Situations requiring non‑radioactive tracers for safety, regulatory, or operational reasons.
Who should use this standard
- Water utilities, environmental and civil engineers, flow‑measurement technicians, laboratory analysts, and contractors responsible for pipeline commissioning, flow monitoring, or tracer testing.
Related standards
ISO 2975 series (Part I: General; Part III/IV: radioactive tracer methods; Parts V–VII: integration and transit time methods) - Part 2 complements these by specifying the constant‑rate, non‑radioactive approach for closed‑conduit flow measurement.
Технические детали
- Технический комитет
- ISO/TC 30/SC 5 - Velocity and mass methods
- SKU
- ISO 2975-2:1975
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