SIST EN ISO 10427-2:2004 PDF
Petroleum and natural gas industries - Equipment for well cementing - Part 2: Centralizer placement and stop-collar testing (ISO 10427-2:2004)
Petroleum and natural gas industries - Equipment for well cementing - Part 2: Centralizer placement and stop-collar testing (ISO 10427-2:2004)
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 16
- Дата публикации:
- 1 ноября 2004 г.
- ICS:
- 75.180.10
- Технический комитет:
- I13 - Imaginarni 13
ISO 10427-2:2004 provides calculations for determining centralizer spacing, based on centralizer performance and desired standoff, in deviated and dogleg holes in wells for the petroleum and natural gas industries. It also provides a procedure for testing stop collars and reporting test results.
Abstract
Overview
EN ISO 10427-2:2004 - “Petroleum and natural gas industries - Equipment for well cementing - Part 2: Centralizer placement and stop‑collar testing” gives engineers and service providers standardized methods to calculate centralizer spacing and to test and report stop‑collar performance. The standard addresses centralizer placement in deviated and dogleg wells by defining standoff and related calculations, and it specifies a procedure and reporting format for stop‑collar testing.
Key topics
- Centralizer placement calculations
- Methods for estimating centralizer spacing using centralizer performance and desired standoff ratio.
- Definition and calculation of annular clearance (wellbore diameter minus casing OD, divided by two).
- Distinction between bow‑spring (flexible) and rigid/solid centralizers (standoff from load‑deflection curves for bow‑spring; geometry for rigid centralizers).
- Consideration of lateral loads: weight supported by a centralizer and tension from pipe hanging below.
- Guidance that the commonly referenced 67% standoff ratio is used in specifications for bow‑spring performance but is not a universal minimum; users should apply engineering judgment.
- Standoff and standoff ratio
- Calculation of standoff at centralizers and at the sag point (maximum casing deflection).
- Formula for standoff ratio R = (standoff / annular clearance) × 100.
- Buoyed weight and loading
- Procedures to estimate forces acting on centralizers (buoyed weight, tension) that affect spacing and restoring forces.
- Stop‑collar testing
- Specified apparatus, test procedure, and required reporting of test results (with an informative annex for documentation).
- Terms and definitions
- Clarifies technical terms used in design and testing: restoring force, running/starting force, holding force, permanent set, sag point, etc.
Applications and users
- Target audience: drilling and completion engineers, cementing service companies, casing/centralizer manufacturers, quality assurance teams and well design consultants.
- Practical uses:
- Designing centralizer layouts for casing runs in deviated and dogleg wells to achieve desired casing centralization for effective cementing.
- Selecting centralizer type and spacing to meet required standoff and running/restoring force constraints.
- Verifying and documenting stop‑collar holding and slippage performance as part of equipment qualification and job planning.
- Benefits: improved cement sheath quality, zonal isolation reliability, and repeatable equipment performance documentation.
Related standards
- EN/ISO 10427‑1 (Casing bow‑spring centralizers)
- EN/ISO 10427‑3 (Performance testing of cementing float equipment)
- ISO 11960 (Steel pipes for casing/tubing)
- ISO 10427‑2 is based in part on API Specification 10D (historical reference)
Keywords: centralizer placement, centralizer spacing, standoff ratio, stop‑collar testing, well cementing, casing centralization, petroleum and natural gas industry.
Технические детали
- SKU
- SIST EN ISO 10427-2:2004
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