scholarly journals ENERGY PROJECTS CONNECTING AZERBAIJAN AND GEORGIA

Author(s):  
S. Habibbayli

After the restoration of the state independence of Azerbaijan, one of the main goals was to use natural resources freely, in the interests of the Azerbaijani people and state. Since the early 1990’s, several western companies have begun to show interest in the energy sources of the Caspian region. In the first years of independence, certain steps were taken to obtain energy resources and bring them to the world market. The “Contract of the Century” concluded on September 20, 1994, with 11 transnational oil companies worldwide, which laid the foundation of the oil strategy proposed by national leader Heydar Aliyev, allowed Azerbaijan to play an important role in the Caucasus and Caspian Sea region, turning it into one of the international centers for the production of energy resources. After the signing of the “Contract of the Century”, the key issue was finding favorable ways for oil and gas transit. The choice of Georgia as a transit country would meet the interests of Azerbaijan. Starting from 1999, the first oil was transported via the Baku-Supsa pipeline, and from 2006 on the Baku-Tbilisi-Ceyhan main export oil pipeline. Transportation of gas, along with oil, is carried out through Georgia. Gas is transported to Georgia by the end of 2006 through the Baku-Tbilisi-Erzurum gas pipeline and from June 2007 to Turkey. The Southern Gas Corridor, which is probably the largest gas pipeline project put forward by Azerbaijan, involving Georgia, delivers the Shahdeniz Phase 2 gas from the Caspian Sea to Europe. The South Caucasus Pipeline Project Expansion, part of this project, encompasses the construction of new pipelines and associated facilities in both Azerbaijan and Georgia. The opening ceremony of the first phase of the Southern Gas Corridor project was held at Sangachal Terminal on May 29, 2018. Within the framework of the AGRI (Azerbaijan, Georgia, Romania Interconnector) project, which is one of the energy projects connecting Azerbaijan and Georgia, it is planned to transport natural gas through the pipeline to the Black Sea shores of Georgia, where it will be liquefied and transported by tankers to the terminal in Romania’s Constanta port and then to the gas infrastructure of Romania and other European countries in the form of natural gas. Georgia is not only a transit country for Azerbaijan, but also one of the largest consumers of hydrocarbon reserves. The State Oil Company of Azerbaijan Republic (SOCAR) has been operating in Georgia since 2006. SOCAR's activities in Georgia are carried out through “SOCAR Georgia Petroleum”, “SOCAR Gas Export-Import”, “SOCAR Georgia Gas”, “SOCAR Georgia Gas Distribution”, “Black Sea Terminal” and others.

Significance Mestan also implied that Borisov and Dogan were allied in promoting Russian interests in Bulgarian politics -- while Bulgaria's 'yellow press' accuses him of being a Turkish puppet. On January 13, Borisov dismissed reports that he was keen to revive the South Stream gas pipeline project, but confirmed that Bulgaria was lobbying the European Commission for a Varna gas hub that would revive at least the underwater part of South Stream bringing Russian natural gas to Europe. Impacts DPS realignment will strengthen Borisov's hand domestically, but alienate Turkey and worry the United States. His interest in a gas hub enjoys overwhelming support in both government and opposition, with only about 20 deputies likely to oppose it. Broadly coinciding with Russian interests, the hub must now secure EU financial and political support, in the teeth of US opposition.


Author(s):  
V. Ozdemir ◽  
I. A. Guliyev

The article deals with current issues of energy diplomacy of Turkey. The authors describe the main positive and negative results of Turkey's foreign energy policy in terms of the implementation of major energy projects. Geopolitical processes in the world, the conflict of interests of various countries in the political arena are important factors that affect the crude oil and natural gas pipeline projects. Particular attention is paid to the problems and prospects of cooperation between the Turkish Republic and the Russian Federation in the fuel and energy complex. The authors describe the interaction betweeen Russia and Turkey in the energy sector, including geo-economic interests of the countries in the Russian-Turkish gas dialogue. Turkey made efforts to position as an alternative gas supply route, taking advantage of concern about increasing Europe's dependence on Russian exports. Last years Turkey has set itself the important task - to turn from transit country into a regional gas hub. Ukrainian crisis increased the geostrategic importance of the Black Sea region to Russia, as well as strengthened the ambition of the Turkish side. The authors also highlight the prospects of the natural gas pipeline project from Russia via the Black Sea to Turkey and to the Turkish-Greek border, which named "Turkish stream". This project was frozen in terms of military and political processes at the end of 2015 in Syria.


2018 ◽  
pp. 91-154
Author(s):  
Chaitanya Ravi

This chapter concentrates on the period from July 2005–March 2006 and examines the way in which the nuclear deal and the US-India strategic partnership wrapped around it influenced India’s energy and foreign policy, in particular the Iran–Pakistan–India (IPI) natural gas pipeline and Iran–India relations. The chapter follows the shifting relationships between Petroleum Minister, Mani Shankar Aiyar; External Affairs Minister, Natwar Singh; and Prime Minister, Manmohan Singh. An important part of the chapter is the US Ambassador to India David Mulford’s role vis a vis the IPI pipeline and the factors that gave rise to the idea of a nuclear deal with India among a small coterie in the State Department. The chapter concludes with the collision of the rival energy initiatives, the strategic paradigms wrapped around them and the way in which the nuclear deal prevailed over the pipeline with Natwar’s exit and Aiyar’s dismissal being important milestones.


Author(s):  
Sandeep Vyas

Reliance Gas Pipelines Limited (RGPL) is currently implementing a gas pipeline project from Shahdol, Madhya Pradesh to Phulpur, Uttar Pradesh for evacuation of gas produced from Coal Bed Methane (CBM) blocks owned by Reliance Industries Ltd. This pipeline will be hooked up with GAIL’s HVJ Pipeline at Phulpur. Over all Pipeline system includes 312 km (approx.) long trunk line, and associated facilities such as Compressor Station at Shahdol, Intermediate Pigging facilities, Metering & Regulating facilities at Phulpur and 12 No. Mainline valve stations. Gas produced from CBM blocks will be dehydrated within Gas Gathering Station facilities of CBM Project located upstream of pipeline Compressor station at Shahdol. Gas received at pipeline battery limit is dry and non-corrosive gas in nature, Internal corrosion is not expected in normal course of operation, however internal corrosion of the natural gas pipeline can occur when the pipe wall is exposed to moisture and other contaminants either under process upset conditions or under particular operating conditions. Even though internal corrosion is not expected during normal course of operations, to take care of any eventuality, it is proposed to implement Internal Corrosion Monitoring (ICMS) system in this project. ICMS will provide an efficient and reliable means of continuous monitoring internal corrosion. Internal Corrosion Monitoring (ICMS) system is used as a part of overall integrity management framework; to achieve two objectives viz., verify the corrosive behaviour of gas and to verify the efficacy of applied preventive actions. Philosophy involved in evaluating a suitable CM technique would include : • Applicable corrosion damage mechanisms, anticipated corrosion rates and probable locations. • Suitable CM technique and location based on process condition, system corrosivity, water content, pigging facilities, available corrosion allowance, design life, maintenance etc., • Measurement frequency. Some of the Corrosion Monitoring techniques used for pipeline and of relevance are: • Weight-loss Corrosion Coupons (CC), • Electrical Resistance probes (ER), • Linear Polarization Resistance Probe (LPR) • Ultrasonic Thickness Measurement (UT) • Sampling Points (SP) This paper discusses the merits / demerits of these corrosion monitoring techniques, considerations for selecting a specific technique for the Shahdol – Phulpur Gas Pipeline Project and highlights the implementation of the internal corrosion monitoring system.


2019 ◽  
Vol 2 (2) ◽  
pp. 89-98
Author(s):  
Rahmadha Akbar Syah ◽  
Zaki Khudzaifi Mahmud

To improve connectivity and energy security, especially natural gas, Southeast Asian countries, under the cooperation of Association of Southeast Asian Nations (ASEAN), are trying to build a gas pipeline that stretches from Indonesia to Myanmar. The project is called the Trans ASEAN Gas Pipeline (TAGP) under the ASEAN Plan of Action for Energy Cooperation (APAEC) scheme. However, regional countries are still dealing with their domestic problems, and there are fears that TAGP is detrimental to producer countries, resulting in the delay of this project as much by as four years – from 2020 to 2024. The uncertainty of the TAGP project further emphasizes that there is a tendency for countries not to adhere to the ASEAN forum’s agreements. Especially if it has to be juxtaposed with the Russian Gas Pipeline project which was built to distribute natural gas to Western European countries, TAGP is still far behind. In designing this paper, the authors use qualitative methods through literature studies by referring to the realism approach of International Relations to dissect TAGP problems. Furthermore, the author also feels the need to accommodate the neorealism approach to be used as a supportive approach in looking at the issues of disobedience in regional countries in supporting the TAGP scheme. Also, the authors conducted a brief comparison between TAGP and the Russian Gas Pipeline to be used as a case study analysis material that would later provide answers of why TAGP failed to go as planned.Keywords: realism, neorealism, TAGP, Russian Gas Pipeline


Author(s):  
Qiang Chi ◽  
Yinglai Liu ◽  
Lingkang Ji ◽  
Peng Wang

Induction heated bending pipe is an important connecting piece widely used in natural gas pipeline. As the persistent development of natural gas pipeline project, the X80 induction heated bending pipe needed to be developed and studied. The local induction quenching process and the wholly induction quenching process were adopted to develop the Φ1219mm×22mm X80 bending pipe in this paper. The effects of different technologies on the bending pipe property were studied. Based on the pipe-bending machine that can not apply the continuous wholly induction quenching process, a multiple-step wholly induction quenching process was proposed and realized. The study results show that for the X80 bending pipe manufactured via the local induction quenching process, the strength of straight part is higher than the bend part. The toughness of welding seam and heat-affected zone at straight part is lower. The match of property between the straight part and the bend part is not perfect. The continuous wholly induction quenching process improve effectively the toughness of bending pipe, reduce the strength and yield ratio to a certain extent, so the match of property between the straight part and the bend part is reasonable. The multiple-step wholly induction quenching process can also improve the property of the straight part in bending pipe. The property of intermediate zone by double quenching has no clear changes. This kind of process is suitable for the pipe-bending machine that can not provide continuous wholly induction quenching process.


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