Press Release

Global High-Pressure Oil and Gas Separator Market Report: Regional Data Analysis by Production, Revenue, Price and Gross Margin

A high pressure oil and gas separator is a spherical or cylindrical pressure vessel used to separate oil, water, and gas from the total fluid stream produced by an oil well. It is installed either on an offshore platform or on an onshore processing station. The working principle of separators is that gaseous and liquid components have different densities, which permits them to stratify when moved gradually with gas on top, oil in the middle and water at the bottom. The main force is gravity segregation that accomplishes the separation; that means, the lightest fluid rises to the top while the heaviest fluid settles to the bottom. Separators can be either vertical or horizontal. Also, they can be categorized into two-phase and three phase, wherein the two phase type typically deals with oil and gas and the three phase type deals with water, oil and gas. Horizontal high pressure oil and gas separators are suitable for high gas-oil ratios and constant flow well-streams, while vertical separators are designed mainly for intermediate gas-oil ratios. High pressure oil and gas separators can handle pressures between 975 and 1500 psi. Based on the specific application, a high pressure oil and gas separator is also known as a degasser or deliquilizer. Degassers are used to remove gas bubbles from bulk liquid stream, while deliquilizers are used to remove dispersed liquid droplets from bulk gas stream. The degree of separation between liquid and gas depends on certain factors, such as operating pressure of the separator, type of flow of the fluid i.e. turbulent flow or laminar flow, and fluid mixture residence time.

Growth in unconventional oil and gas resources, particularly shale gas and oil reserves, will drive the market for high pressure oil and gas separators. Moreover, installation of off-site and on-site processing facilities is also expected to boost the demand for high pressure oil and gas separators.

However, tumbling global crude oil prices and unpredictability of the oil and gas industry has led to a reduction in exploration, drilling and production activities. Hence, these factors are anticipated to hamper the market for high pressure oil and gas separators over the forecast period.

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The global High-Pressure Oil and Gas Separator market is valued at xx million US$ in 2018 is expected to reach xx million US$ by the end of 2025, growing at a CAGR of xx% during 2019-2025.

This report focuses on High-Pressure Oil and Gas Separator volume and value at global level, regional level and company level. From a global perspective, this report represents overall High-Pressure Oil and Gas Separator market size by analyzing historical data and future prospect. Regionally, this report focuses on several key regions: North America, Europe, China and Japan.

Key companies profiled in High-Pressure Oil and Gas Separator Market report are Alfa Laval, Fmc Technologies, Frames Energy Systems, Halliburton, M-I Swaco, Acs Manufacturing, Amacs, Grand Prix Engineering, Hydrasep, Kw International and more in term of company basic information, Product Introduction, Application, Specification, Production, Revenue, Price and Gross Margin (2014-2019), etc.

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Table of Content

1 High-Pressure Oil and Gas Separator Market Overview

2 Global High-Pressure Oil and Gas Separator Market Competition by Manufacturers

3 Global High-Pressure Oil and Gas Separator Production Market Share by Regions

4 Global High-Pressure Oil and Gas Separator Consumption by Regions

5 Global High-Pressure Oil and Gas Separator Production, Revenue, Price Trend by Type

6 Global High-Pressure Oil and Gas Separator Market Analysis by Applications

7 Company Profiles and Key Figures in High-Pressure Oil and Gas Separator Business

8 High-Pressure Oil and Gas Separator Manufacturing Cost Analysis

9 Marketing Channel, Distributors and Customers

10 Market Dynamics

11 Global High-Pressure Oil and Gas Separator Market Forecast

12 Research Findings and Conclusion

13 Methodology and Data Source