Global Plate Heat Exchangers Market Report to 2031

DublinAnd January 21, 2023 /PRNewswire/ – Research and Markets

the Heat Exchanger Plate Fillers Market by Type, by Material, by End User: Global Opportunity Analysis and Industry Forecast, 2021-2031 The report has been added to ResearchAndMarkets.com an offer.

The global gasket plate heat exchanger market has been evaluated $3.1 billion In 2021, it is expected to arrive $5.1 billion By 2031, at a compound annual growth rate of 5.2% from 2022 to 2031.

The gasket plate heat exchanger transfers heat energy from one side to the other without mixing the two products on both sides of the mixing. In the gasket plate heat exchanger, each heat transfer plate is provided with an elastomeric gasket, which seals and circulates the process fluids. Headers, commonly referred to as channel caps, include joints to allow process fluid to enter the plate bundle.

In addition, it consists of a stack of individually sealed heat transfer plates made of stainless steel or other materials. The stack of panels is fixed using screws to a frame consisting of a fixed cover and a movable cover.

However, to separate the two circuits, a gasketed heat exchanger may be fitted between the boiler and the process circuit. The gasket plate heat exchanger is mainly known for its compact size and highly efficient design that it offers. The channel formed by two adjacent plates is the key to the high efficiency of the plate heat exchanger. Hot and cold fluids are distributed through alternate channels in an opposite current order.

Countercurrent flow provides maximum thermal efficiency. The flow pattern causes turbulence at very low Reynolds numbers, which contributes to high heat transfer rates. The units are specifically selected to effectively optimize the available pressure drop. The fluid shear stresses in a plate exchanger are much higher than those in a tubular exchanger. This tends to keep the channels in the plate exchanger cleaner. For clean services, normal practice is to provide units designed for 100% of the required surface area. For foul liquids, plate exchangers can be fitted with an excess area of ​​5-10%.

The gasket plate heat exchanger has many applications such as boiler/heating separation, domestic hot water (DHW) heating, steam-to-water heating, heat pumps, industrial process heating and cooling, swimming pool heating, chemical heating and cooling, both in-line and on-line. Batch Process, HVAC, Marine – (Titanium Plate) for uses such as prime engine cooling, oil cooling, intercoolers, surface wash water heating, milk and dairy pasteurization, raw milk cooling, food products, CIP water heating, Brewing – wort cooling, beer/lager/cider conditioning, pharmaceuticals – sanitary water heating/cooling.

However, the rise in demand for such applications has led to an increase in the demand for gasketed plate heat exchanger which may act as the major driving factor for the market.

The gasket plate heat exchangers market is segmented on the basis of type, material, end use, and region. On the basis of type, the market is segmented into Industrial GPHE, Semi-welded GPHE, and Widegap GPHE. On the basis of materials, it is divided into stainless steel, titanium and tungsten. On the basis of end use, they are categorized into chemicals, oil and gas, air conditioning and refrigeration, food and beverage, and others. Region wise, it is parsed across North AmaricaAnd EuropeAnd Asia Pacificand LAMEA.

The Global Gasket Plate Heat Exchangers Market analysis covers in-depth information on the key industry participants. Key players operating and mentioned in the report include Alfa Laval, API Heat Transfer, Danfoss, Diversified Heat Transfer, Inc. , Hisaka worksand HYDAC International GmbH, Kelvion Holding GmbH, and Kaori Heat Treatment Co., Ltd. and Motion Industries, Inc. Onda SpA and Southwest Thermal Technology Inc. and SWEP International AB, Tranter, TITAN Metal Fabricators, and Xylem.

Main benefits

  • This report provides a quantitative analysis of market segments, current trends, estimations, and dynamics of the Gasket Plate Heat Exchanger market analysis from 2021 to 2031 to identify the prevailing opportunities in the Gasket Plate Heat Exchanger market.

  • Market research is presented along with information on key drivers, limitations, and opportunities.

  • Porter’s Five Forces analysis highlights the power of buyers and suppliers to empower stakeholders to make profitable business decisions and strengthen their supplier and buyer network.

  • An in-depth analysis of the Metal Plate Heat Exchangers market segmentation helps to identify the prevailing market opportunities.

  • Major countries in each region are identified according to their revenue contribution to the global market.

  • Positioning the player in the market facilitates benchmarking and provides a clear understanding of the current position of players in the market.

  • The report includes an analysis of regional and global Plate Heat Exchangers market trends, key players, market segments, application regions, and market growth strategies.

Main topics covered:
Chapter 1 Introduction
Chapter 2: Executive Summary
Chapter 3: Market Overview
3.1 Market definition and scope
3.2 Key Findings
3.2.1 Top investment pockets
3.3 Porter’s Five Forces Analysis
3.4 Best player positioning
3.5 Market dynamics
3.5.1 Drivers
3.5.2. restrictions
3.5.3 Opportunities
3.6. Analysis of the impact of COVID-19 on the market
3.7 Value Chain Analysis
3.8 Pricing Analysis
3.9 Analysis of key regulations
Chapter 4: Gasket Plate Heat Exchanger Market, by Type
4.1 Overview
4.1.1 Market size and forecasts
4.2 Industrial GPHE
4.2.1 Key market trends, growth factors, and opportunities
4.2.2 Market size and forecast by region
4.2.3 Market Analysis by Country
4.3 Wide Gap GPHE
4.3.1 Key market trends, growth factors, and opportunities
4.3.2 Market size and forecast by region
4.3.3 Market Analysis by Country
4.4 Semi-welded GPHE
4.4.1 Key market trends, growth factors, and opportunities
4.4.2 Market size and forecast by region
4.4.3 Market Analysis by Country
Chapter 5: Filler Plate Heat Exchanger Market, by Material
5.1 Overview
5.1.1 Market size and forecasts
5.2 stainless steel
5.2.1 Key market trends, growth factors, and opportunities
5.2.2 Market size and forecast by region
5.2.3 Market Analysis by Country
5.3 titanium
5.3.1 Key market trends, growth factors, and opportunities
5.3.2 Market size and forecast by region
5.3.3 Market Analysis by Country
5.4 Tungsten
5.4.1 Key market trends, growth factors and opportunities
5.4.2 Market size and forecast by region
5.4.3 Market Analysis by Country
Chapter 6: Gasketed Plate Heat Exchanger Market, by End User
6.1 Overview
6.1.1 Market size and forecasts
6.2 Food and Beverages
6.2.1 Key market trends, growth factors, and opportunities
6.2.2 Market size and forecast by region
6.2.3 Market Analysis by Country
6.3 Oil and Gas
6.3.1 Key market trends, growth factors, and opportunities
6.3.2 Market size and forecast by region
6.3.3 Market Analysis by Country
6.4 Heating, Ventilation, Air Conditioning and Refrigeration
6.4.1 Key market trends, growth factors and opportunities
6.4.2 Market size and forecast by region
6.4.3 Market Analysis by Country
6.5 Chemical
6.5.1 Key market trends, growth factors, and opportunities
6.5.2 Market size and forecast by region
6.5.3 Market Analysis by Country
6.6 other
6.6.1 Key market trends, growth factors and opportunities
6.6.2 Market size and forecast by region
6.6.3 Market Analysis by Country
Chapter 7: Gasketed Plate Heat Exchanger Market, by Region
Chapter Eight: The Company’s View
8.1 Introduction
8.2 Best winning strategies
8.3 Assignment of the Product to the Top 10 Players
8.4 Competitive Dashboard
8.5 Competitive Heatmap
8.6 Key Developments
Chapter 9: Company Profiles
9.1 Alpha Laval
9.1.1 Company Overview
9.1.2 Company Snapshot
9.1.3 Operating business segments
9.1.4 Product Portfolio
9.1.5 Business Performance
9.1.6 Key Strategic Moves and Developments
9.2 Kelvion Holding GmbH
9.2.1 Company Overview
9.2.2 Company Snapshot
9.2.3 Operating business segments
9.2.4 Product Portfolio
9.2.5 Business Performance
9.2.6 Key Strategic Moves and Developments
9.3 SWEP International AB
9.3.1 Company Overview
9.3.2 Company Snapshot
9.3.3 Operating business segments
9.3.4 Product Portfolio
9.3.5 Business Performance
9.3.6 Key Strategic Moves and Developments
9.4 Danfoss
9.4.1 Company Overview
9.4.2 Company Snapshot
9.4.3 Operating business segments
9.4.4 Product Portfolio
9.4.5 Business Performance
9.4.6 Key strategic moves and developments
9.5 Hisaka Works Ltd.
9.5.1 Company Overview
9.5.2 Company Snapshot
9.5.3 Operating business segments
9.5.4 Product Portfolio
9.5.5 Business Performance
9.5.6 Key Strategic Moves and Developments
9.6 ENOVENETA
9.6.1 Company Overview
9.6.2 Company Snapshot
9.6.3 Operating business segments
9.6.4 Product Portfolio
9.6.5 Business Performance
9.6.6 Key Strategic Moves and Developments
9.7 Tranter
9.7.1 Company Overview
9.7.2 Company Snapshot
9.7.3 Operating business segments
9.7.4 Product Portfolio
9.7.5 Business Performance
9.7.6 Key Strategic Moves and Developments
9.8 vithrum
9.8.1 Company Overview
9.8.2 Company snapshot
9.8.3 Operating business segments
9.8.4 Product Portfolio
9.8.5 Business Performance
9.8.6 Key Strategic Moves and Developments
9.9 API Heat Transfer
9.9.1 Company Overview
9.9.2 Company Snapshot
9.9.3 Operating business segments
9.9.4 Product Group
9.9.5 Business Performance
9.9.6 Key strategic moves and developments
9.10 Xylem
9.10.1 Company Overview
9.10.2 Company Snapshot
9.10.3 Operating business segments
9.10.4 Product Group
9.10.5 Business Performance
9.10.6 Key strategic moves and developments

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