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Abercorn Heating - Commercial & Industrial Heating Systems - We specialise in commercial heating installation, industrial heating systems and radiant heating for customers in Glasgow, ...

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    The Speediest Pulsar (NASA, Chandra, 06/28/12)

    Researchers using three different telescopes -- NASA's Chandra X-ray Observatory and ESA's XMM-Newton in space, and the Parkes radio telescope in Australia -- may have found the fastest moving pulsar ever seen. The...

    Photo by NASA's Marshall Space Flight Center on Flickr

  • spiral tribe

    Why? Lifting the veil: wakey wake key ~ It’s time to awaken from the larval dream. It’s time to emerge from the chrysalis and metamorphose. It’s time to step out of the plastic straitjacket and remove the blindfold...

    Photo by new 1lluminati on Flickr

  • cloud rider

    Why? Lifting the veil: wakey wake key ~ It’s time to awaken from the larval dream. It’s time to emerge from the chrysalis and metamorphose. It’s time to step out of the plastic straitjacket and remove the blindfold...

    Photo by new 1lluminati on Flickr

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  • Fieriness Transfer Technology Boosts HVAC Efficiency


    Brazed picture heat exchangers (BPHEs) provide efficient, stable, and reliable bringing off in a robust and easily handled unit for air conditioning , refrigeration, heating, industrial, and district heating and cooling applications. Customized to about

  • Vancouver Furnace Comrades Repair Now Offers Advanced On-Site Mobile Digital Technology Services


    As a Vancouver-based air conditioning and furnace followers, not many people realize that Pro Ace Heating & Air Conditioning Services Ltd. is the only company in Canada with On-Area Mobile Advanced Digital Technology Services. That means they have the

  • Siemens Gamesa Starts Erection Hot Rock Plant for Long-Duration Grid Storage


    Siemens Gamesa, the coil turbine manufacturer, began building a 30-megawatt-hour See predecessor to a gigawatt-scale thermal energystoragesystem this month. The Future Energy System, beforehand announced last year, is expected to come on-line in early 2019. It

  • Boeing Expertise cuts energy use, wins national recognition


    That will now pay for itself and initiate financial savings which can then be redirected into other airport improvements, Berg said. The throw included new heat pumps and a special large industrial fan from in the airport's critical foyer that circulates

Kindle Transfer Technology Boosts HVAC Efficiency - Facility Executive Armoury

This week, a piece titled, “Energy Recovery Ventilator Market by Technology Type (Cover Heat Exchanger, Heat Pipe Heat Exchanger, Rotary Ignite Exchanger, Run-Around Coil), Application (Commercial, Residential), and Region (NA, EU, APAC, MEA, SA) – Extensive Forecast to 2022,” was published by MarketsandMarkets , a global research firm with U.S. operations based in Northbrook, IL. According to the check up on, this market is projected to grow from USD 1.97 Billion in 2017 to USD 3.37 Billion by 2022, at a CAGR of 11.4% from 2017 to 2022.

The report review notes that among technology types, the plate heat exchanger fragment is expected to lead the energy recovery ventilator market during the forecast while. The increasing demand for plate heat exchangers from the commercial and residential sectors to run, control, and monitor energy consumption in buildings is expected to drive the nurturing of the plate heat exchanger technology type segment of the energy comeback ventilator market from 2017 to 2022.

With a focus on Brazed Plate Heat Exchanger technology, and the implicit for commercial and institutional buildings, the below article is contributed by SWEP , a global supplier of brazed course heat exchangers (BPHEs) for HVAC, district energy, and industrial applications. Founded in 1983 in Sweden and acquired by the Dover Corporation in 1994, SWEP’s North American sales network is headquartered in Duluth, GA, with the manufacturing center located in Tulsa, OK.

Brazed Plating Heat Exchangers, For Buildings, District Energy, And More

Brazed plate stimulation exchangers (BPHEs) provide efficient, stable, and reliable performance in a vigorous and easily handled unit for air conditioning, refrigeration, heating, industrial, and district heating and cooling applications. Customized to succeed in the required characteristics of each specific application, they ensure the highest performance with the lowest survival cycle costs. BPHEs have no gaskets to repair or replace, providing savings on preservation and repairs compared with traditional gasket plate heat exchangers (PHEs).

The BPHE is, in morality, constructed as a package of corrugated channel plates between front and rear garb-plate packages. The cover-plate packages consist of sealing plates, unthinking rings, and cover plates. Connections are mounted on the cover plates and can be customized to pay specific market and application requirements. During the vacuum-brazing process, a brazed collective is formed at every contact point between the base and the filler material. Brazing the plates together kind of than bolting them between gaskets is what makes BPHE technology so efficient and compact as 95% of the resources of the brazed unit is used for heat transfer. The compactness of the BPHE also enables a modular contrive, just like modular chillers, improving redundancy and reducing fouling.

BPHE technology has come a extended way, and can now provide solutions in areas where it might not have been able to in the past. One main area today where BPHEs can lay down optimized solutions is the district energy market, because the BPHEs are now available in penetrating capacities that can deliver several megawatts of heating or cooling while maintaining a small footprint. For the years two decades, BPHEs have been consistently and rapidly replacing traditional shell & tube and PHE technologies in this call. In fact, BPHEs are now the preferred and most common heat exchanger technology in Europe’s province energy networks. Experience of their successful results in district heating and cooling applications is now victorious trust in North America too.

District Energy Benefits From BPHE

One locality where the cost can be significant is in the actual construction of a District Energy heating or cooling system. Building a new Area Energy system is a major infrastructure project that requires the connecting of multiple buildings totally a network of underground pipes. As mentioned, most of the existing District Drive systems in the U.S. are steam-based and, as such, utilize shell-and-tube or gasket charger heat exchanger (GPHE) technologies to transfer the hot water to the building’s substation.

However, both expend-and-tube and GPHE technologies possess operational shortcomings that prevent the system from operating at its built cost-effectiveness and efficiency. Specifically, the design of shell-and-tube animate exchangers does not allow for the most efficient transfer of the heating or cooling energy when the system is hot the highest-based. They are also difficult to clean and maintain since the entire tube nest needs to be removed, which can be sensitive to account for in tight installations.

The main drawbacks in using a GPHE are connected to the gold medal letter of its name, the “G,” or gasket. Namely, the gaskets need to be changed, especially when the GPHE is against in a heating application. Several conditions will require the gasket to be changed, including when they are worn out, which can be caused by both torridity and temperature fluctuations, or during the cleaning process. Also, when the gaskets age or fail, they will leak, which can standard to additional costs for maintenance, replacement and, in severe cases, cleanup.

One base shortcoming for both shell-and-tube heat exchangers and GPHEs is that they are large pieces of gear that require a large footprint for installation. This can be a drawback for installations where optimizing the at one's fingertips square footage is a primary concern.

While the current installed base of Precinct Energy systems in the U.S. relies on shell-and-tube and GPHEs to complete its rouse-transfer operations, there is an alternative technology that is gaining in prominence. The brazed coat heat exchanger (BPHE) has none of the operational red flags that shell-and-tube and GPHE models own, and can easily replace either technology in a District Energy system that has been retrofitted to be powered by hot or chilled saturate, rather than the currently preferred steam.

Brazed plate technology offers numerous benefits such as leeway savings, increased efficiency, lower life cycle costs, smaller carbon footprint, built-in redundancy with modular envision, and lower fouling potential plus CIP. BPHEs are already the standard in Europe, and the support of the world is catching up quickly. With all these advantages, BPHEs will continue to expand into all kinds of applications and increasingly be chosen over the use of older fervour exchanger technologies.

RT @CCC_GWS: A great article for commercial and industrial properties. If you are looking to remedy an old system that is...… 10/23/16,
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  • Industrial Heating

    CRC Press. 2005. ISBN: 9781420027556,1420027557. 800 pages.

    Industry relies on heating for a wide variety of processes involving a broad range of materials. Each process and material requires heating methods suitable to its properties and the desired outcome. Despite this, the literature lacks a general reference on design techniques for heating, especially for small- and medium-sized applications. Industrial Heating: Principles, Techniques, Materials, Applications, and Design fills this gap, presenting design information for both traditional and...

  • Heat Transfer in Industrial Combustion

    CRC Press. 2000. ISBN: 9781420039757,142003975X. 568 pages.

    Industry relies heavily on the combustion process. The already high demand for energy, primarily from combustion, is expected to continue to rapidly increase. Yet, the information is scattered and incomplete, with very little attention paid to the overall combustion system. Designed for practicing engineers, Heat Transfer in Industrial Combustion eclipses the extant literature with an emphasis on the aspects of heat transfer that directly apply to industry. From a practical point of view, the...

  • Saving Steam in Industrial Heating Systems

    2016. 14 pages.
  • Industrial Process Control Systems

    The Fairmont Press, Inc.. 2016. ISBN: 9780881735925,0881735922. 449 pages.
  • Combined Heat & Power Generating Systems

    IET. 1988. ISBN: 0863411134,9780863411137. 184 pages.

    Steam cycles in combined heat and power plants. Efficiency of combined heat and power systems. Characteristics of steam-turbine CHP plants. Choice of equipment in CHP generating systems. Economic effects of combined heat and power production. Costs and energy produced CHP generating systems. Future development trends in CHP generating systems.

  • Rotterdam Implements Energy Transition and Climate Measures


    The district heating system is, in essence, a closed loop with two primary pipes. One supplies hot water. A second pipe then returns the water at a lower temperature to the industrial heat source where it is reheated before being piped back to users.

  • Schneider Electric : Major Security Flaw Targets Industrial Computer Systems


    Industrial control systems, such as the type that Schneider Electric manufactures ... of a Schneider Electric system that controls building heating and cooling systems. These systems, as Indegy's CEO Barak Perelman previously told VOA (http ...

  • Timo's Air Conditioning & Heating Offers Whole-House Energy Evaluations for Fall 2016


    Thousand Palms, CA -- (SBWIRE) -- 10/25/2016 -- Timo's Air Conditioning & Heating, a full-service commercial and residential HVAC company ... By making homes and HVAC systems more efficient, the company's energy audit service reduces the need for heating ...