ISO 13503-1:2011 PDF
Petroleum and natural gas industries — Completion fluids and materials — Part 1: Measurement of viscous properties of completion fluids
Petroleum and natural gas industries — Completion fluids and materials — Part 1: Measurement of viscous properties of completion fluids
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 20
- Дата публикации:
- 31 октября 2011 г.
- Издание:
- ISO IS 13503 edition 2 version 1
- ICS:
- 75.100
L'ISO 13503-1:2011 fournit une méthodologie cohérente de détermination de la viscosité des fluides de complétion utilisés dans les industries du pétrole et du gaz naturel. Dans certains cas, des méthodes sont également fournies pour déterminer les propriétés rhéologiques d'un fluide.
Abstract
Overview
ISO 13503-1:2011 - Petroleum and natural gas industries - Completion fluids and materials - Part 1: Measurement of viscous properties of completion fluids - specifies standard laboratory procedures for measuring the viscous and rheological properties of single‑phase, non‑particulate completion fluids. The standard covers both non‑crosslinked (linear polymer) and viscoelastic/crosslinked fluids, provides optional shear‑history simulation to mimic downhole and surface shearing, and defines measurement, calibration and reporting requirements for consistent viscosity and rheology data.
Key topics and technical requirements
- Scope and definitions: completion fluid, rheology, shear rate, shear history, viscoelastic and non‑crosslinked fluids.
- Measurement accuracy: temperature to ±1 °C, pH to ±0.1 unit, other quantitative measures to ±2% unless stated otherwise.
- Fluid preparation and documentation: full recording of base fluid source, mixing apparatus and volumes, component identities and order of addition, mixing speeds and times, ageing/holding time, temperature, pH and filtration steps.
- Shear‑history simulation (optional): procedures and apparatus to simulate shearing experienced during surface handling and conveyance down the wellbore; specified standard conditions include:
- ≤93 °C (200 °F): shear rate 675 s‑1 for 2.5 min
-
93 °C (200 °F): shear rate 1 350 s‑1 for 5 min Operational controls require continuous delivery, constant shear in tubing, and representative sampling into the viscometer.
- Apparatus and calibration: concentric‑cylinder (rotational) viscometers are specified for many tests; the document includes geometric dimensions for a commonly used non‑pressurized R1/B1 configuration (rotor inside diameter 36.83 mm; bob diameter 34.49 mm; bob length 38 mm). Instruments must be calibrated per manufacturer recommendations or against traceable Newtonian standards (ISO/ASTM/DIN equivalent).
- Measurement procedures: separate, detailed methods for non‑crosslinked fluids (requirements for laminar flow, negligible wall slip and time‑independent behavior) and for crosslinked polymer/surfactant fluids; calculation procedures for converting measured torques/rotational speeds to rheological parameters are provided.
Practical applications and users
ISO 13503-1 is used by:
- Completion and well‑service engineers evaluating fracturing fluids, gravel‑pack carrier fluids and completion brines
- R&D teams developing new polymer or crosslinked fluids and assessing shear sensitivity
- Laboratory technicians performing quality control and acceptance testing of completion fluids
- Regulatory bodies and operators requiring consistent rheology data for well planning and hydraulic calculations
Practical applications include fluid selection for hydraulic fracturing, gravel‑packing, workovers, and matching downhole rheology predictions to surface measurements.
Related standards
- Other parts of ISO 13503 (Parts 2–6) covering proppant properties, heavy brines, leakoff, proppant conductivity and dynamic leakoff.
- ISO 13503‑1 is largely based on API RP 13M (first edition, July 2004), which it references for methodology.
Технические детали
- Технический комитет
- ISO/TC 67/SC 3 - Drilling and completion fluids, well cements and treatment fluids
- SKU
- ISO 13503-1:2011
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