In Line Process Viscometer Market Insights, 2024: Hexa Research

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In Line Process Viscometer (ILPV) Market Share, Size, Analysis,
Growth, Trends and Forecasts, 2016 to 2024 | Hexa Research
" In Line Process Viscometer are easy to set up and to reduce
operational costs single or multiple units can be installed to
keep track on the viscosity at regular intervals without
delay. This feature has helped in the growth of global In
Line Process Viscometer market size."
The global In Line Process Viscometer (ILPV) Market would expand at about 6.5 percent CAGR during 2016 to
2024 (forecast period). It is likely to grow to USD 210.5 million by 2024. Escalating refining capacity worldwide
owing to energy demand is the key market driver. ILPV offers real-time monitoring that assists manufacturers
to check the quality of products. It also helps them meet regulatory policies.
Expansion across the food & beverages industry and rising medical expenses in developing regions like China,
India, & Brazil should have a positive impact on the market. Demand for ILPVs from consumer industries such as
chemicals, pharmaceuticals, & petroleum may also propel the market. Additionally, accuracy & reliability of
ILPVs bode well for the market and push its sales.
However, these viscometers cannot measure multidirectional flow. This coupled with the ongoing price
competition is predicted to hamper the progress of market players. Precise ‘fuel viscosity’ control is deemed
vital for the automotives industry. ILPVs control fuel atomization and support effective combustion. This is the
key reason for them being widely accepted by the automotives industry. Technological innovations and product
developments also drive market growth.
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Significant initiatives for asphalt mixing and process control are projected to offer numerous prospects to
market players. Yet another benefit of these instruments is ‘installation-ease.’ This characteristic augurs well
for the market and propels its shares.
The worldwide ILPV market is fragmented by applications, technologies, and regions.
Petroleum surfaced as a dominating application in 2013. It contributed about 40 percent of the global sales that
year. Food and beverages is the fastest growing segment. Its expansion could be attributed mainly to the food
& beverages industry across BRICS countries. Chemicals may grow at around 6.4 percent CAGR during 2012 to
2020.
Technologies consist of vibration, rotational, moving the piston, dynamic fluid pressure, coriolis, and acoustic
wave. Vibration reigned over the market and generated around 22.3 percent of the overall incomes in 2013.
Acoustic wave should be the fastest growing segment in the near future.
Regions of the in line process viscometer market are Asia Pacific, Europe, North America, and rest of the world.
Asia Pacific led the market and was followed by North America & Europe in 2013.
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Table of Content of In Line Process Viscometer (ILPV) Market
Table of Contents
Chapter 1 Methodology & Scope
1.1 Research Methodology
1.1.1 Initial data exploration
1.1.2 Statistical modeling and forecast
1.1.3 Industry insights and validation
1.2 List of Data Sources
Chapter 2 Executive Summary
2.1 In line process viscometer industry 3600 perspective, 2016 - 2024
Chapter 3 In Line Process Viscometer (ILPV) Industry Insights
3.1 Industry segmentation
3.2 Industry size, forecast and growth prospects, 2016-2024
3.3 Industry ecosystem analysis
3.3.1 Vendor landscape
3.4 Industry dynamics
3.4.1 Growth drivers
3.4.1.1 Increasing applications scope in petrochemical industries
3.4.1.2 Stabilization control for accuracy
3.4.1.3 Low operational cost
3.4.1.4 Growing automation need
3.4.1.5 Increase in chances for profitability and productivity
3.4.2 Industry pitfalls & challenges
3.4.2.1 Price competition
3.4.2.1 Limitation in multi directional flow measurement
3.5 Key growth opportunities
3.6 ILPV company market share analysis, 2016
3.7 Porter’s analysis
3.8 PESTEL analysis
Chapter 4 In-line Process Viscometer( ILPV) Technology Insights
4.1 ILPV market revenue share by technology, 2016 & 2024
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4.2 Rotational
4.2.1 Market estimates and forecast, 2016 - 2024 (USD Million)
4.2.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
4.3 Torsional Oscillation
4.3.1 Market estimates and forecast, 2016 - 2024 (USD Million)
4.3.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
4.4 Vibration
4.4.1 Market estimates and forecast, 2016 - 2024 (USD Million)
4.4.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
4.5 Moving piston
4.5.1 Market estimates and forecast, 2016 - 2024 (USD Million)
4.5.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
4.6 Coriolis
4.6.1 Market estimates and forecast, 2016 - 2024 (USD Million)
4.6.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
4.7 Dynamic fluid pressure
4.7.1 Market estimates and forecast, 2016 - 2024 (USD Million)
4.7.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
4.8 Acoustic wave (Solid state)
4.8.1 Market estimates and forecast, 2016 - 2024 (USD Million)
4.8.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
4.9 Other Technologies
4.9.1 Market estimates and forecast, 2016 - 2024 (USD Million)
4.9.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
Chapter 5 In-Line Process Viscometer (ILPV) Application Insights
5.1 ILPV revenue share by application, 2016 & 2024
5.2 Petroleum
5.2.1 Market estimates and forecast, 2016 - 2024 (USD Million)
5.2.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
5.3 Chemicals
5.3.1 Market estimates and forecast, 2016 - 2024 (USD Million)
5.3.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
5.4 Pharmaceuticals
5.4.1 Market estimates and forecast, 2016 - 2024 (USD Million)
5.4.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
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5.5 Food and beverages
5.5.1 Market estimates and forecast, 2016 - 2024 (USD Million)
5.5.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
5.6 Other Applications
5.6.1 Market estimates and forecast, 2016 - 2024 (USD Million)
5.6.2 Market estimates and forecast by region, 2016 - 2024 (USD Million)
Chapter 6 In-Line Process Viscometer (ILPV) Regional Insights
6.1 ILPV market revenue share by region, 2016 & 2024
6.2 North America
6.2.1 Market estimates and forecast, 2016 - 2024 (USD Million)
6.2.2 Market estimates and forecast by technology, 2016 - 2024 (USD Million)
6.2.3 Market estimates and forecast, by application, 2016 - 2024 (USD Million)
6.3 Europe
6.3.1 Market estimates and forecast, 2016 - 2024 (USD Million)
6.3.2 Market estimates and forecast by technology, 2016 - 2024 (USD Million)
6.3.3 Market estimates and forecast by application, 2016 - 2024 (USD Million)
6.4 Asia Pacific
6.4.1 Market estimates and forecast, 2016 - 2024 (USD Million)
6.4.2 Market estimates and forecast by technology, 2016 - 2024 (USD Million)
6.4.3 Market estimates and forecast by application, 2016 - 2024 (USD Million)
6.5 Middle East & Africa (MEA)
6.5.1 Market estimates and forecast, 2016 - 2024 (USD Million)
6.5.2 Market estimates and forecast by technology, 2016 - 2024 (USD Million)
6.5.3 Market estimates and forecast by application, 2016 - 2024 (USD Million)
6.6 Latin America
6.6.1 Market estimates and forecast, 2016 - 2024 (USD Million)
6.6.2 Market estimates and forecast by technology, 2016 - 2024 (USD Million)
6.6.3 Market estimates and forecast by application, 2016 - 2024 (USD Million)
Chapter 7 Competitor profiles
7.1 Brookfield Engineering Laboratories, INC.
7.2 Lamy Rheology.
7.3 proRheo GmbH.
7.4 Hydramotion Ltd
7.5 Marimex America LLC
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7.6 Galvanic Applied Sciences Inc.
7.7 VAF Instruments
7.8 Fuji Ultrasonic Engineering Co, Ltd
7.9 Sofraser
7.10 Brabender GmbH & Co. KG
7.11 Micromotion (Emerson Process Management)
7.12 Mat Mess & Analysetechnik
7.13 Norcross Corporation
7.14 Cambridge Viscosity, Inc.
7.15 Endress+Hauser
7.16 JSC Lemis Baltic
7.17 Orb Instruments, Inc.
7.18 Bartec Group
7.19 Anton Paar GmbH
7.20 Vectron International, Inc.
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In Line Process Viscometer are easy to set up and to reduce operational costs single or multiple units can be installed to keep track on the viscosity at regular intervals without delay. This feature has helped in the growth of global In Line Process Viscometer market size.