Sand Control Systems Market Growth

Submitted by: Submitted by

Views: 10

Words: 2062

Pages: 9

Category: Business and Industry

Date Submitted: 07/15/2015 03:31 AM

Report This Essay

Transparency Market

Research

Sand Control Systems Market - Global Industry Analysis, Size, Share,

Growth, Trends, and Forecast 2014 - 2020

Published Date

2014-12-30

71 Page Report

Buy Now

Request Sample

Press Release

Sand Control Systems Market is expected to reach USD 4,873.4

Million Globally by 2020

Transparency Market Research

State Tower,

90, State Street, Suite 700.

Albany, NY 12207

United States

www.transparencymarketresearch.com

sales@transparencymarketresearch.com

Sand Control Systems Market

REPORT DESCRIPTION

Transparency Market Research has released a new market report. The report defines and segments the sand control

systems market, providing analysis and forecast of the global revenue. According to the report, the global sand control

systems market was valued at USD 2,600.0 million in 2012 and is likely to reach USD 4,873.4 million by 2020, expanding

at a CAGR of 8.18% between 2014 and 2020.

Technique segments analyzed in this study include rate exclusion, plastic consolidation, resin coated gravel, stand-alone

screens, gravel packing, frac pack, and others.The gravel packing technique is expected to be the most dominant

technique segment in terms of global demand for the sand control systems market. It accounts for the largest share of the

sand control systems market. In 2012, the gravel packing technique accounted over 29.0% of the total sand control

systems market and is expected to remain the dominant technique by 2020. It is one of the oldest and most widely used

techniques used in both offshore and onshore crude oil and natural gas wells; its flexibility allow gravel packing of any

type of well of any deviation. This has been mainly due to the large number of drilling and completion activities

supplemented by vast research and development activities. The selection of sand control methods depend on various

parameters such as clay content, interval length, grain size distribution, operational...