共找到 255 條與 海洋石油作業(yè)用設(shè)備 相關(guān)的標(biāo)準(zhǔn),共 17 頁(yè)
GB/T 21412的本部分適用于水下生產(chǎn)控制系統(tǒng)的設(shè)計(jì)、制造、測(cè)試、安裝和操作,涵蓋了安裝在水面和水下的控制系統(tǒng)設(shè)備、控制流體。這些設(shè)備用于實(shí)現(xiàn)水下油氣生產(chǎn)的控制和水下注水、注氣作業(yè)。本部分也適用于多井系統(tǒng)的控制設(shè)備。 本部分建立了系統(tǒng)、子系統(tǒng)、組件和控制流體的設(shè)計(jì)標(biāo)準(zhǔn),其目的是為水下生產(chǎn)設(shè)備提供安全有效的控制功能。 本部分包括各類與水下生產(chǎn)控制系統(tǒng)相關(guān)的信息,如下: -用于介紹和資料目的、提供控制系統(tǒng)總體構(gòu)造和一般功能概述的資料性數(shù)據(jù); -所有控制系統(tǒng)都應(yīng)遵循的、基本的說(shuō)明性資料; -對(duì)控制系統(tǒng)類型敏感的、選擇性的說(shuō)明數(shù)據(jù)(只有相關(guān)時(shí)才選擇) ; -當(dāng)使用者或制造商認(rèn)為必要時(shí)才采納的可選數(shù)據(jù)和要求。 鑒于數(shù)據(jù)類型多種多樣,建議控制系統(tǒng)的使用者、制造商從本部分中選取實(shí)際應(yīng)用所需要的規(guī)定。 如果不采納本部分的規(guī)定可能導(dǎo)致超出規(guī)格要求和較高的購(gòu)買成本。 井下智能鉆井井下控制設(shè)備不在本部分的規(guī)定范圍內(nèi)。舊設(shè)備返工和修理不在本部分的規(guī)定范圍內(nèi)。
Petroleum and natural gas industries.Design and operation of subsea production systems.Part 6:Subsea production control systems
GB/T 21412的本部分規(guī)定了過(guò)出油管(TFL)系統(tǒng)及設(shè)備的設(shè)計(jì)、制造和操作要求,并給出了相應(yīng)的推薦做法。 本部分涉及的程序和要求適用于井下設(shè)備、水下采油樹(shù)及油管掛、出油管(包括管線內(nèi)設(shè)備)的液壓作業(yè)。 本部分主要闡述了TFL系統(tǒng)在海上及水下的應(yīng)用,同時(shí)它也可用于其他場(chǎng)合,如大斜度井和水平井。 本部分不涉及水下分離、增壓、計(jì)量和井下泵送的相關(guān)內(nèi)容。
Petroleum and natural gas industries.Design and operation of subsea production systems.Part 3:Through flowline(TFL)systems
本標(biāo)準(zhǔn)為海底和海洋立管應(yīng)用中撓性管系統(tǒng)的設(shè)計(jì)、分析、質(zhì)量保證、貯存、裝卸、運(yùn)輸和安裝提供了指導(dǎo)。通常,撓性管是一種可以用很多方法制造的產(chǎn)品。本文件不限制撓性管市場(chǎng)新穎的或新產(chǎn)品的發(fā)展。相反,它承認(rèn)可使用多種不同的設(shè)計(jì)和分析方法。由于這個(gè)原因,一些主題以普通術(shù)語(yǔ)和注釋的方式提出,為用戶使用不同的方式方法留有了余地。 本標(biāo)準(zhǔn)適用于設(shè)計(jì)壓力大于1.55MPa(225 psi)的撓性管,廣泛應(yīng)用于各種海洋石油生產(chǎn)中。典型的應(yīng)用包括立管、管道,管道與井口的連接。 本標(biāo)準(zhǔn)對(duì)撓性管的描述是一般性的,并且涉及到許多方面的應(yīng)用,而低壓力(設(shè)計(jì)壓力不高于1.55MPa(225 psi))的撓性管、撓性管亦不在本標(biāo)準(zhǔn)范圍內(nèi)。 一些因素證明了本標(biāo)準(zhǔn)存在的必要性。撓性管系統(tǒng)已高度重視的應(yīng)用在海洋工程的許多方面,當(dāng)工業(yè)向前端技術(shù)領(lǐng)域發(fā)展時(shí),例如深水,潛在應(yīng)用的數(shù)量就增加了。當(dāng)應(yīng)用的數(shù)量增加時(shí),制造商和結(jié)構(gòu)類型也隨之增加。此外,撓性管包含有多種材料的多層結(jié)構(gòu)使得撓性管的分析和設(shè)計(jì)變得愈加復(fù)雜。 本標(biāo)準(zhǔn)不對(duì)撓性管進(jìn)行全面的描述。當(dāng)提供新的信息時(shí),可重新修訂。
Petroleum and natural gas industries Flexible pipe systems for subsea and marine riser applications
Technical specifications for beach-to-sea pipeline systems
Functional design and testing technical specifications for underwater power and optical fiber connectors and flying leads
Submarine gas pipeline process design specifications
Submarine oil pipeline process design specifications
Technical specifications for foundation treatment of beach artificial islands
This document specifies requirements and provides recommendations applicable to the following types of fixed steel offshore structures for the petroleum and natural gas industries: - caissons, free-standing and braced; - jackets; - monotowers; - towers. In addition, it is applica
Petroleum and natural gas industries - Fixed steel offshore structures (ISO 19902:2020); English version EN ISO 19902:2020, only on CD-ROM
I-Codes: IEBC - International Existing Building Code
Petroleum and natural gas industries. Fixed steel offshore structures
1.1.1 本標(biāo)準(zhǔn)的目的是: a)當(dāng)申請(qǐng)DNV海底管道系統(tǒng)認(rèn)證時(shí),作為基本的原理和規(guī)范要求。 b)通過(guò)定義海底管道系統(tǒng)的設(shè)計(jì)、材料、制造、安裝、投產(chǎn)、運(yùn)行、維護(hù)、再認(rèn)證和廢棄的最低要求,提供一個(gè)國(guó)際上可接受的關(guān)于強(qiáng)度和功能的安全標(biāo)準(zhǔn)。 c)作為業(yè)主和承包商、承包商與其分包商之間合同事項(xiàng)中的技術(shù)參考文件。 d)規(guī)定了接受DNV認(rèn)證的海底管道系統(tǒng)有關(guān)設(shè)計(jì)、制造、安裝、運(yùn)行、再認(rèn)證和廢棄的最低要求。 e)作為設(shè)計(jì)者、業(yè)主、承包商和其他不直接參與認(rèn)證過(guò)程人員的指南。 1.1.2 如果一個(gè)管道系統(tǒng)接受DNV認(rèn)證。則要滿足第二章的認(rèn)證要求。在本規(guī)范中無(wú)論何處出現(xiàn)的同意或接受的術(shù)語(yǔ),在一個(gè)特定的管道系統(tǒng)接受DNV的認(rèn)證時(shí),這兩個(gè)術(shù)語(yǔ)就表示本船級(jí)社同意或接受。在其他場(chǎng)合這些同意或接受可依照業(yè)主或承包商之間合同協(xié)議。 1.1.3 根據(jù)101中的c)和e)項(xiàng),部分或全部使用這些要求不屬于本船級(jí)社的責(zé)任范圍。 1.1.4 除了特別說(shuō)明外,附錄中的要求也是強(qiáng)制性的,與規(guī)范作為一個(gè)整體。
Subsea pipeline system
Special requirements for offshore structures in the oil and gas industry Part 4: Geotechnical engineering and foundation design
Recommended Practices for Dry/Wet Insulation of Underwater Piping and Equipment
Recommended practices for overall performance analysis of deepwater floating structures
This document contains requirements for defining the seismic design procedures and criteria for offshore structures; guidance on the requirements is included in Annex A. The requirements focus on fixed steel offshore structures and fixed concrete offshore structures. The effects of seismic events on floating structures and partially buoyant structures are briefly discussed. The site-specific assessment of jack-ups in elevated condition is only covered in this document to the extent that the requirements are applicable. Only earthquake-induced ground motions are addressed in detail. Other geologically induced hazards such as liquefaction, slope instability, faults, tsunamis, mud volcanoes and shock waves are mentioned and briefly discussed. The requirements are intended to reduce risks to persons, the environment, and assets to the lowest levels that are reasonably practicable. This intent is achieved by using: a) seismic design procedures which are dependent on the exposure level of the offshore structure and the expected intensity of seismic events; b) a two-level seismic design check in which the structure is designed to the ultimate limit state (ULS) for strength and stiffness and then checked to abnormal environmental events or the abnormal limit state (ALS) to ensure that it meets reserve strength and energy dissipation requirements. Procedures and requirements for a site-specific probabilistic seismic hazard analysis (PSHA) are addressed for offshore structures in high seismic areas and/or with high exposure levels. However, a thorough explanation of PSHA procedures is not included. Where a simplified design approach is allowed, worldwide offshore maps, which are included in Annex B, show the intensity of ground shaking corresponding to a return period of 1000 years. In such cases, these maps may be used with corresponding scale factors to determine appropriate seismic actions for the design of a structure. For design of fixed steel offshore structures, furthe
Petroleum and natural gas industries - Specific requirements for offshore structures - Part 2: Seismic design procedures and criteria (ISO 19901-2:2017); English version EN ISO 19901-2:2017
Special requirements for offshore structures in the oil and gas industry Part 3: Topside module structures
Offshore oil and gas pipeline design, construction, operation and maintenance (limit state design)
Technical specifications for concrete counterweight coatings for submarine pipelines
Recommended practices for subsea pipeline connectors and subsea jumper systems
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