2/7-15
Охват источников неполный. Статус и роли компаний приведены по данным каждого источника; их актуальность не проверена независимо. Неизвестное не означает ноль.
- Название / ID в источнике
- 2/7-15
- Идентификатор записи скважины/источника
- 225
- Сектор
- Нефть и газ
- Группа назначений, полученная из источника
- Оценка
- Оператор в исходном снимке
- Phillips Petroleum Company Norway
- Дата начала бурения по данным источника
- 1980-01-29
- Дата завершения по данным источника
- 1980-06-02
- Широта/долгота (WGS84)
- 56,395672 / 3,313672
- Измерения, сообщенные источником
- 4423 m MD · RKB
- Статус по данным источника
- P&A
- Доступ к источнику
- 2026-10-02
- Дата исходного снимка
- Не сообщается/не проверено
- Исходная система координат
- ED50 / service geometry EPSG:4326
- Буровая установка по данным источника
- HAAKON MAGNUS
Роли компаний по данным источника
- Буровой операторPhillips Petroleum Company NorwayОткрыть исходную запись ↗
| Измерения, сообщенные источником | Значение | Ссылка |
|---|---|---|
| wlbTotalDepth | 4 423,00 m | RKB |
| wlbFinalVerticalDepth | 4 423,00 m | RKB |
| wlbWaterDepth | 69,00 m | Не сообщается/не проверено |
| wlbBottomHoleTemperature | 151,00 °C | Не сообщается/не проверено |
Norwegian Offshore Directorate — Wellbores ↗
Доступ к источнику:
Условия повторного использования: review-source-terms
Условия источника и указание авторства ↗Norwegian Offshore Directorate (NOD/SODIR), NLOD 2.0. Normalized by Wellficent.
Близлежащие скважины и тепловой поток
Эти инструменты носят описательный характер: они не являются прогнозами, оценками запасов или инвестиционными рекомендациями. Охват источников является частичным; неизвестное не означает ноль.
| Название | Расстояние | Измерения, сообщенные источником | Исходные каталоги |
|---|---|---|---|
| 2/7-8 | 1,20 km | 3 318 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-10 | 3,72 km | 4 745 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-13 | 3,72 km | 5 410 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-13 A | 3,72 km | 5 066 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-13 B | 3,72 km | 4 403 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-7 A | 3,72 km | 4 398 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-7 B | 3,72 km | 5 188 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-7 | 3,72 km | 4 241 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-4 | 3,72 km | 3 422 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-4 A | 3,72 km | 5 121 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-1 | 3,72 km | 3 746 m | Norwegian Offshore Directorate — Wellbores |
| 2/7-A-14 A | 3,72 km | 4 872 m | Norwegian Offshore Directorate — Wellbores |
Цифровой каротаж скважины
Кровли формаций SODIR, пробы бурового раствора и испытания скважин на едином разрезе по измеренной глубине.
- Общая глубина
- 4423
- Истинная вертикальная глубина (RKB)
- 4423
- Глубина воды
- 69
- Забойная температура
- 151
| Группа | Геологическая формация | Глубина (м MD, RKB) |
|---|---|---|
| GROUP | NORDLAND GP | 94 / 1 689 |
| GROUP | HORDALAND GP | 1 689 / 2 898 |
| GROUP | ROGALAND GP | 2 898 / 3 008 |
| FORMATION | BALDER FM | 2 898 / 2 911 |
| FORMATION | SELE FM | 2 911 / 2 950 |
| FORMATION | LISTA FM | 2 950 / 2 982 |
| FORMATION | VÅLE FM | 2 982 / 3 008 |
| GROUP | SHETLAND GP | 3 008 / 3 419 |
| FORMATION | EKOFISK FM | 3 008 / 3 029 |
| FORMATION | TOR FM | 3 029 / 3 136 |
| FORMATION | HOD FM | 3 136 / 3 368 |
| FORMATION | BLODØKS FM | 3 368 / 3 372 |
| FORMATION | HIDRA FM | 3 372 / 3 419 |
| GROUP | CROMER KNOLL GP | 3 419 / 3 584 |
| FORMATION | RØDBY FM | 3 419 / 3 450 |
| FORMATION | RAN SANDSTONE UNITS | 3 450 / 3 498 |
| FORMATION | ÅSGARD FM | 3 498 / 3 584 |
| GROUP | TYNE GP | 3 584 / 4 423 |
| FORMATION | MANDAL FM | 3 584 / 3 606 |
| FORMATION | FARSUND FM | 3 606 / 4 133 |
| FORMATION | ELDFISK FM | 4 133 / 4 181 |
| FORMATION | HAUGESUND FM | 4 181 / 4 423 |
| Глубина (м MD, RKB) | Плотность раствора (г/см³) | Флаги качества |
|---|---|---|
| 153.3 | 1.02 | zero-meaning-unresolved |
| 382 | 1.02 | zero-meaning-unresolved |
| 655 | 1.02 | zero-meaning-unresolved |
| 1089 | 1.22 | zero-meaning-unresolved |
| 1289 | 1.77 | zero-meaning-unresolved |
| 1387 | 1.24 | zero-meaning-unresolved |
| 1859 | 1.76 | zero-meaning-unresolved |
| 2165 | 1.76 | zero-meaning-unresolved |
| 2785 | 1.75 | zero-meaning-unresolved |
| 3042 | 1.71 | zero-meaning-unresolved |
| 3185 | 1.71 | zero-meaning-unresolved |
| 3493 | 1.23 | zero-meaning-unresolved |
| 3629 | 1.78 | zero-meaning-unresolved |
| 3699 | 1.94 | zero-meaning-unresolved |
| 3860 | 1.94 | zero-meaning-unresolved |
| 3995 | 1.94 | zero-meaning-unresolved |
| 4027 | 1.94 | zero-meaning-unresolved |
| 4216 | 1.8 | zero-meaning-unresolved |
| 4349 | 1.93 | zero-meaning-unresolved |
| 4423 | 1.93 | zero-meaning-unresolved |
| Испытания скважин | Глубина (м MD, RKB) | Измерения |
|---|---|---|
| 3 | 2988 / 3010 | {"test-from-depth":{"value":2988,"unit":"m","reference":null,"qualityFlags":[]},"test-to-depth":{"value":3010,"unit":"m","reference":null,"qualityFlags":[]},"choke-size":{"value":13.4,"unit":"mm","reference":null,"qualityFlags":[]},"final-shut-in-pressure":{"value":44,"unit":"MPa","reference":"DST final shut-in; pressure datum unreported","qualityFlags":[]},"final-flow-pressure":{"value":30,"unit":"MPa","reference":"DST final flow; pressure datum unreported","qualityFlags":[]},"bottom-hole-pressure":{"value":0,"unit":"MPa","reference":"DST bottom hole; pressure datum unreported","qualityFlags":["zero-meaning-unresolved"]},"downhole-temperature":{"value":0,"unit":"degC","reference":"DST","qualityFlags":["zero-meaning-unresolved"]},"test-oil-flow":{"value":13,"unit":"Sm3/day","reference":"DST test flow; not sustained production","qualityFlags":[]},"test-gas-flow":{"value":0,"unit":"Sm3/day","reference":"DST test flow; not sustained production","qualityFlags":["zero-meaning-unresolved"]},"oil-density":{"value":0,"unit":"g/cm3","reference":"DST","qualityFlags":["zero-meaning-unresolved"]},"gas-relative-density":{"value":0,"unit":"1","reference":"air = 1","qualityFlags":["zero-meaning-unresolved"]},"test-gas-oil-ratio":{"value":0,"unit":"m3/m3","reference":"DST","qualityFlags":["zero-meaning-unresolved"]}} |
| 2 | 3006 / 3010 | {"test-from-depth":{"value":3006,"unit":"m","reference":null,"qualityFlags":[]},"test-to-depth":{"value":3010,"unit":"m","reference":null,"qualityFlags":[]},"choke-size":{"value":14.3,"unit":"mm","reference":null,"qualityFlags":[]},"final-shut-in-pressure":{"value":46,"unit":"MPa","reference":"DST final shut-in; pressure datum unreported","qualityFlags":[]},"final-flow-pressure":{"value":30,"unit":"MPa","reference":"DST final flow; pressure datum unreported","qualityFlags":[]},"bottom-hole-pressure":{"value":0,"unit":"MPa","reference":"DST bottom hole; pressure datum unreported","qualityFlags":["zero-meaning-unresolved"]},"downhole-temperature":{"value":0,"unit":"degC","reference":"DST","qualityFlags":["zero-meaning-unresolved"]},"test-oil-flow":{"value":7,"unit":"Sm3/day","reference":"DST test flow; not sustained production","qualityFlags":[]},"test-gas-flow":{"value":0,"unit":"Sm3/day","reference":"DST test flow; not sustained production","qualityFlags":["zero-meaning-unresolved"]},"oil-density":{"value":0,"unit":"g/cm3","reference":"DST","qualityFlags":["zero-meaning-unresolved"]},"gas-relative-density":{"value":0,"unit":"1","reference":"air = 1","qualityFlags":["zero-meaning-unresolved"]},"test-gas-oil-ratio":{"value":0,"unit":"m3/m3","reference":"DST","qualityFlags":["zero-meaning-unresolved"]}} |
| 1 | 3425 / 3462 | {"test-from-depth":{"value":3425,"unit":"m","reference":null,"qualityFlags":[]},"test-to-depth":{"value":3462,"unit":"m","reference":null,"qualityFlags":[]},"choke-size":{"value":25.4,"unit":"mm","reference":null,"qualityFlags":[]},"final-shut-in-pressure":{"value":66,"unit":"MPa","reference":"DST final shut-in; pressure datum unreported","qualityFlags":[]},"final-flow-pressure":{"value":30,"unit":"MPa","reference":"DST final flow; pressure datum unreported","qualityFlags":[]},"bottom-hole-pressure":{"value":0,"unit":"MPa","reference":"DST bottom hole; pressure datum unreported","qualityFlags":["zero-meaning-unresolved"]},"downhole-temperature":{"value":0,"unit":"degC","reference":"DST","qualityFlags":["zero-meaning-unresolved"]},"test-oil-flow":{"value":0,"unit":"Sm3/day","reference":"DST test flow; not sustained production","qualityFlags":["zero-meaning-unresolved"]},"test-gas-flow":{"value":0,"unit":"Sm3/day","reference":"DST test flow; not sustained production","qualityFlags":["zero-meaning-unresolved"]},"oil-density":{"value":0,"unit":"g/cm3","reference":"DST","qualityFlags":["zero-meaning-unresolved"]},"gas-relative-density":{"value":0,"unit":"1","reference":"air = 1","qualityFlags":["zero-meaning-unresolved"]},"test-gas-oil-ratio":{"value":0,"unit":"m3/m3","reference":"DST","qualityFlags":["zero-meaning-unresolved"]}} |
Групповые кровли в соседних скважинах
Group tops below each borehole's own RKB. Not TVD below sea level; deviation and kelly-bushing elevations affect apparent depths.
| Группа | 2/7-15 | 2/7-8 |
|---|---|---|
| NORDLAND GP | 94 | 104 |
| HORDALAND GP | 1689 | 1850 |
| ROGALAND GP | 2898 | 2874 |
| SHETLAND GP | 3008 | 2969 |
| CROMER KNOLL GP | 3419 | — |
| TYNE GP | 3584 | — |
Подповерхностная температура и тепловой поток
Сравните забойную температуру с глубиной и изучите измеренный тепловой поток вблизи скважин для оценки возможности их геотермального использования.
| Название | Расстояние | Подповерхностная температура и тепловой поток | Флаги качества |
|---|---|---|---|
| R24-P002604 | 31,30 km | 40,00 mW/m2 | {"qualityScores":["Ux.Mx.-------"]} |
| R24-P003245 | 37,86 km | 62,00 mW/m2 | {"qualityScores":["Ux.Mx.-------"]} |
| R24-P003249 | 38,89 km | 57,00 mW/m2 | {"qualityScores":["Ux.Mx.-------"]} |
| R24-P003248 | 41,92 km | 50,00 mW/m2 | {"qualityScores":["Ux.Mx.-------"]} |
| R24-P003244 | 46,53 km | 63,00 mW/m2 | {"qualityScores":["Ux.Mx.-------"]} |
IHFC · Global Heat Flow Database, Release 2024 (v. 2026.03) ↗
Доступ к источнику:
Условия повторного использования: CC-BY-4.0
Условия источника и указание авторства ↗Global Heat Flow Data Assessment Group et al. (2024): The Global Heat Flow Database: Release 2024. V. 2026.03. GFZ Data Services. https://doi.org/10.5880/fidgeo.2024.014 Licensed under CC BY 4.0. Wellficent shows parent-level site values and selected metadata; values are not modified.