Drives and Control Solutions

Motors, Control Solutions, Power Transmission and Advanced Motion Technology                                                                 

October 15, 2019

How can society meet its increasing demand for energy while reducing carbon emissions? Swedish utility Mälarenergi has achieved something significant as it faces this challenge head-on with its waste-to-energy plant Unit 6, one of the biggest in the world.

Mälarenergi’s waste preparation facility, boiler and smoke stack sit alongside Lake Mälaren’s pristine waters. The lake spreads out, still as glass, to the far horizon. On its shore lies Västerås, Sweden’s fifth largest city and home to 150,000 people.

Unit 6 is a highly efficient facility, with the capacity to generate 150 megawatts (MW) of energy a year, of which 50 MW is electricity and 100 MW is district heating – that’s enough to heat more than 50 percent of the buildings in Västerås. The low-carbon system distributes heat or hot water from a centralized location through insulated pipes. Hundreds of ABB variable speed drives and motors keep this state-of-the-art plant operating reliably and efficiently without unplanned, costly downtime that could leave Vasterås without heat during the long, cold Swedish winters.

“We first prepare the waste by taking out metals, glass and anything else that we don’t want to burn in the boiler. The metals and glass go to recycling, and then we burn the what is left in the boiler to make heat and electricity,” says Martin Eriksson, Mälarenergi Operations Manager. “This makes Unit 6 at Mälarenergi one of the most efficient and largest waste-to- energy plants in the world.”

Nearly 300 ABB low and medium voltage motors are installed in Unit 6, along with over 200 ABB variable speed drives. The drives control the speed of electric motors to match the task in hand, saving power and improving perfomance.

“Unit 6 is a very complex facility and has a lot of critical components,” says Martin Eriksson. “Reliability and energy efficiency are very important. ABB meets our high standards. We have a big responsibility for the future so what we’re doing here at Mälarenergi is, I believe, the right thing.”

Owned by the city, Mälarenergi has provided Västerås with district heating since the 1960s. Traditionally, the plant burned coal and oil, but in 2014 commissioned its waste-to-energy unit.  In 2016, Mälarenergi  announced  the removal of all fossil fuels from its mix by 2020 as it works towards a lower-carbon energy system. Mälarenergi -- which now burns recycled wood, tree-toppings and waste that would otherwise go to the landfill -- has reduced its CO₂ emissions to 250,000 tonnes per year from an average of 600,000 tonnes.

“It’s gratifying to know that we are playing a role in helping Mälarenergi reach their sustainability goals,” says Anders Annell, Global Power Generation Segment Manager, ABB Motion. “This is a great example of how our variable speed drives, combined with our high-efficiency motors can drive efficiency across applications while ensuring the highest reliability and safety standards.”

“We’ve chosen to go with the waste-to-energy concept because we think it’s a good thing to take care of the resources that we have in the society and make something good out of it,” says Magnus Eriksson, Mälarenergi Manager for the Heating Business. “We have to reduce, to reuse and, after that, we have to take care of the waste that is left.”

Source


Editor's Pick: Featured Article


DCS Put to the Ultimate Test Part 1 Torsion Tests by HELUKABEL 1 400x275

Cables and wires in industrial robots and other moving machine parts are often required to withstand extreme stresses caused by torsion. Constant repetitive movements put materials under considerable strain. At the same time, operators expect components to function perfectly and reliably throughout their entire service life to avoid disruptions, outages and safety hazards.

For this reason, at HELUKABEL, we simulate intensive and continuous torsion stresses under realistic conditions with our high-tech testing equipment in Windsbach. We have several types of apparatus for doing this because some of our customers, for example those in the automotive industry, have very precise specifications for how a torsion test is carried out. The tests show that our cables and wires withstand speeds up to 1,000°/s, accelerations up to 2,000°/s² and torsion angles up to 720°. Hence, we make sure that each product always meets our customers’ high standards, and that they receive the impeccable quality they rightly expect from us as a leading supplier of cables, wires and accessories for more than 40 years.

What Is Torsion?

 

To learn the answer, click here 

 


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DCS Festo Didactic at the Forefront of Developing Canadas Future Workforce 1 400x275

With Canadian manufacturing suffering from a growing labour shortage, the participation of industry in skills development is emerging as a vital component in hiring and retention.

The needs are stark: The Canadian Exporters and Manufacturers Association says almost 40% of its members have jobs they can’t fill. Five years from now, 60% expect to be short-staffed, especially when it comes to skilled trades. Statistics Canada forecasts the country’s labour force growth rate will remain below 0.2% for the rest of the decade, below replacement levels.

This growing shortage is affecting companies of all sizes. Already, some manufacturers acknowledge losing out on contracts because they can’t find the manpower to fulfill them.

In reality, the challenge is two-fold: to replenish and expand the workforce to help close the gap between the number of job seekers and vacancies through 2030 when the last baby boomers reach age 65, and ensure workers get opportunities throughout their careers to upgrade or add to their skillset as current technologies evolve and new ones emerge. Festo, through Festo Didactic, one of the world leading provider of equipment and solutions for technical education, intends to help Canada meet this challenge on both fronts. In essence, the approach Festo has always taken is that the learning never stops.

 

Read more here


 

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Emerson recently introduced the ASCO™ Series 209 proportional flow control valves, which offer the highest standards of precision, pressure ratings, flow characteristics and energy efficiency available in a purpose-built, compact architecture. With this combination of size and performance, Series 209 valves allow users to precisely regulate the flow of fluid in a wide range of devices that require exacting performance, like those found in the medical equipment, food and beverage, and heating, ventilation and air conditioning (HVAC) industries. 

Accuracy, response time and repeatability are critical in high-precision flow control applications, such as controlling tool speed in dental chairs, the flow of steam in coffee makers, water flow in cooling systems and hydrogen flow in fuel cells. Series 209 valves have low hysteresis (less than or equal to 5%), excellent repeatability (less than or equal to 1%) and high sensitivity (less than or equal to 0.2%) that contribute to their precision. 


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DCS Teledyne Announces New Ladybug6 Cameras for High Accuracy 1 400x275 

Teledyne FLIR Integrated Imaging Solutions is pleased to announce the all new Ladybug6— the latest addition to its field proven Ladybug series. Ladybug6 is the leading high-resolution camera designed to capture 360-degree spherical images from moving platforms in all-weather conditions. Its industrial grade design and out-of-the-box factory calibration produces 72 Megapixel (MP) images with pixel values that are spatially accurate within +/- 2 mm at 10-meter distance.

“The new Teledyne Ladybug6 is designed for mobile mapping and all-weather inspection projects requiring excellent image quality and high resolution,” said Mike Lee, Senior Product Manager at Teledyne FLIR. “With the addition of Ladybug6, we are now pleased to offer a wider variety of spherical cameras with higher resolutions ranging from 30 MP to 72 MP.”

 

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