#boiler operator
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And so it begins yall, Black Seal baybee
#captains log#hvac shit#black seal high pressure steam#black seal in charge fireman's#BOHP#boiler operator high pressure#women in trades#studyblr#boiler operator#HVAC#hvac#trades
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the thems. the capitalisms.
Left to right: The Boiler, VP, CFO, CLO, Vice-Legal, CEO, COO, and the Chairman
#theyre so special these are my designs and yes they all coexist even the boiler#toontown#toontown corporate clash#ttcc#do i tag ttr for this? for the boiler#toontown boiler#eh tag for herself and no others#tw scars#tw burns#for thomas#speaking of:#senior vice president of sales#chief financial officer#chief legal officer#Witness Stand In#Vice Legal#chief executive officer#chief operating officer#the chairman#allan bravecog#chris dolair#diane morsecode#atticus wing#craig edgar oilcan#thomas saggs#robert cyger#and Kelvin <3 (i think kelvin would be a cute name for them)#also they all have fun quirks in their designs please ask about those
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🎷New Book📕, If you're interested,🌹🌹 I'll send you PDF file now ...🌹🌹🌹
#books and reading#books & libraries#books#california#usa#brazil#chicago#england#engineering#boiler room#operation true love
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mike works in a paper mill thats a few hundred yrs old its sooo weird and big and has so many strange dreamy areas. look at these pix he sent me yesterday
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w hyy is the boiler out as soon as it starts to get below freezing I'm gonna kill
#also that'd be really expensive for us to fix if it's anything worse than the pilot light mouth being clogged :///#so I really hope it's just that and not actually broken#yeah the energy price hike wasn't enough I guess. god sorry for spiralling so frequently on here these days but#kinda sucks how a lot of experiencing life is just hang around until some other garbage goes wrong again#very relieved I'm not on my own here/ have to try and relight because christ I don't know how anyone can feel comfortable doing that#a manual gas boiler would be a dealbreaker in my own place#“press to release gas into the pilot light hole. light a match and insert it. keep pressing the switch down until the flame turns blue” no?#no thank you ?????#god I hate gas appliances so much why is operating them just a game of “release a bit of gas near a naked flame. but not too much!!!”#boilers and ovens suck dude why do we just have objects in the house that can explode if they want to#we already got stuck with the appendix we didn't have to invent more
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How Much Boiler Operator Training Is Important for the Boiler Handlers?
Boiler operator training is paramount for individuals operating and maintaining boiler systems efficiently and safely. This steam boiler training course will focus on correct operation and routine maintenance to maintain boiler plant efficiency and minimize operating costs. The boiler instructional class gives members the prescribed procedures and systems of boiler activity and support.
Trained boiler operators can conduct routine inspections, identify potential issues, and perform preventive maintenance tasks. This helps prevent costly breakdowns, minimize downtime, and ensure boiler equipment's longevity. Effective boiler operation requires understanding the nuances of combustion, fuel efficiency, water treatment, and heat transfer. Proper training equips the boiler operators with the knowledge and skills to optimize boiler performance, reduce energy consumption, and lower operational costs.
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Improper boiler training can pose significant risks like explosions, fires, and environmental contamination. Adequate training reduces the likelihood of accidents by instilling best practices, hazard awareness, and effective risk management strategies among boiler handlers. Boiler technology and industry best practices evolve. Ongoing training programs enable boiler operators to stay updated with the latest advancements, refine their skills, and adapt to changing requirements, fostering a culture of continuous improvement within organizations.
This steam boiler instructional class will convey standards through formal talks, videos, and intelligent work models. Boiler training courses indicate that a boiler operator can enhance their overall operation and maintenance knowledge. They can also work on advanced steam boiler control and greater protection systems by utilizing the best practices in fault-finding techniques, inspections, and procedures to reduce costly downtime. They also enhance the boiler's adaptability to shifting technology by utilizing the best operation practices, which reduce fuel costs and carbon emissions.
Boiler technology and industry best practices evolve. Ongoing training programs enable boiler operators to stay updated with the latest advancements, refine their skills, and adapt to changing requirements, fostering a culture of continuous improvement within organizations.
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Little P.Eng. Engineering: Leading the Way in CRN Registration Engineering Services
In the vast realm of engineering, specialization is key. Engineers with niche specializations can offer unique services that meet specific demands within the industry. One such niche is CRN (Canadian Registration Number) registration engineering services, and at the forefront of this field is Little P.Eng. Engineering. This article will dive deep into understanding CRN registration, the crucial role it plays in Canadian industries, and how Little P.Eng. Engineering has established itself as a go-to service provider in this domain.
1. Understanding CRN Registration
Before delving into the specifics of Little P.Eng. Engineering's services, it's essential to understand what CRN registration is and its significance in Canada.
1.1 What is CRN?
The Canadian Registration Number (CRN) is a number given to designs for pressure vessels, fittings, and boilers in Canada. Each province or territory in Canada has its safety authority responsible for giving out these numbers. The CRN ensures that the design meets the specified Canadian standards, which vary from province to province.
1.2 Why is CRN Important?
Having a CRN means a design has undergone rigorous scrutiny and adheres to Canadian safety standards. Manufacturers and industries looking to operate in Canada need to ensure their pressure equipment conforms to these standards, thus safeguarding both the equipment's end-users and the environment.
2. The Little P.Eng. Engineering Advantage
Established with a vision to bridge the gap between complex pressure equipment design standards and their implementation, Little P.Eng. Engineering has become synonymous with CRN registration services. Here's what makes them stand out:
2.1 Expertise and Knowledge
Having catered to a multitude of industries – from oil and gas to renewable energy – the team at Little P.Eng. Engineering is adept at understanding specific requirements and tailoring solutions accordingly. Their deep-rooted knowledge of Canadian standards, combined with a practical approach to design and verification, ensures optimal results.
2.2 Comprehensive Services
Beyond just CRN registration, Little P.Eng. Engineering provides a suite of services that cover the entire lifecycle of a pressure equipment design project. These include:
Preliminary design consultations
Detailed design drafting
CRN submission and documentation
Post-approval support
2.3 Client-Centric Approach
The focus is always on delivering value. Little P.Eng. Engineering’s client-centric approach ensures that every project is handled with utmost dedication, keeping the client's objectives and constraints in mind.
3. The CRN Registration Process with Little P.Eng. Engineering Embarking on a journey with Little P.Eng. Engineering means simplifying the otherwise convoluted CRN registration process. Here's a step-by-step guide: 3.1 Initial Consultation
The process begins with an in-depth consultation to understand the client’s needs, project scope, and specific requirements.
3.2 Design and Documentation
Based on the initial discussion, the team undertakes the design drafting phase, ensuring it aligns with the respective Canadian standards.
3.3 CRN Application Submission
Once the design is ready, it's time to submit it for CRN registration. The team at Little P.Eng. Engineering ensures all documentation is accurate and complete, eliminating any chances of rejection.
3.4 Post-Approval Support
After obtaining the CRN, Little P.Eng. Engineering continues its support, assisting clients in implementing the design and ensuring its long-term viability.
4. Case Studies: Little P.Eng. Engineering in Action
Over the years, Little P.Eng. Engineering has successfully undertaken numerous CRN registration projects. A few noteworthy ones include:
4.1 Renewable Energy Sector
For a client in the renewable energy sector, Little P.Eng. Engineering developed a unique pressure vessel design to be used in wind energy conversion. The design not only secured CRN registration but also set a precedent in the industry for its innovation.
4.2 Oil and Gas Industry
A leading oil and gas company approached Little P.Eng. Engineering with a complex requirement. The team, with its extensive expertise, managed to design a fitting that not only met the industry's stringent standards but also optimized the client's operational efficiency.
5. Conclusion: The Future of CRN Registration with Little P.Eng. Engineering
The world of pressure equipment design and its associated standards is ever-evolving. As industries advance, the demand for specialized engineering services, particularly in domains like CRN registration, will only increase. Little P.Eng. Engineering, with its proven track record, expertise, and commitment to excellence, is perfectly poised to lead this change. For industries operating or looking to set foot in Canada, partnering with Little P.Eng. Engineering means ensuring their designs not only meet but exceed the stringent Canadian standards, paving the way for a safer, more efficient future.
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Little P.Eng. Engineering
operational efficiency
industry standards
Canadian Registration Number
CRN application
pressure vessels
documentation
boiler design
CRN Registration
Canadian standards
renewable energy
fitting design
design lifecycle
detailed design drafting
client-centric approach
safety authority
pressure equipment
design approval
preliminary design consultation
CRN submission
environmental standards
post-approval support
design verification
optimal results
initial consultation
comprehensive services
equipment lifecycle
industrial safety
province-specific standards
oil and gas
Engineering Services
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Located in Calgary, Alberta; Vancouver, BC; Toronto, Ontario; Edmonton, Alberta; Houston Texas; Torrance, California; El Segundo, CA; Manhattan Beach, CA; Concord, CA; We offer our engineering consultancy services across Canada and United States. Meena Rezkallah.
#Little P.Eng. Engineering#operational efficiency#industry standards#Canadian Registration Number#CRN application#pressure vessels#documentation#boiler design#CRN Registration#Canadian standards#renewable energy#fitting design#design lifecycle#detailed design drafting#client-centric approach#safety authority#pressure equipment#design approval#preliminary design consultation#CRN submission#environmental standards#post-approval support#design verification#optimal results#initial consultation#comprehensive services#equipment lifecycle#industrial safety#province-specific standards#oil and gas
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Industrial Electric Boiler Costs in India
Explore the intricate details of industrial electric boiler costs with Thermodyne, we delve into the various factors that contribute to the pricing of industrial electric boilers, providing you with valuable insights for informed decision-making. we understand the significance of cost considerations in the industrial sector. Our commitment to transparency extends beyond the manufacturing floor, as we break down the cost components associated with industrial electric boilers. From initial investments to long-term operational expenses, this exploration aims to empower businesses with a nuanced understanding of financial implications. For more information contact us at https://www.thermodyneboilers.com/electra-electrode-type-boilers/
#Industrial electric boiler#Boiler cost analysis#Electric boiler pricing#Cost factors#boiler investment#operational costs
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Utility engineering company in Maharashtra
Welcome to Veda Engg, your trusted partner for comprehensive engineering solutions in Maharashtra. As a premier EPC (Engineering, Procurement, and Construction) company, we specialize in utility engineering, serving a diverse range of industries. Explore our expertise as an authorized Thermax dealer, steam boiler and thermic fluid heater supplier, hot water generator manufacturer, cooling tower specialist, and provider of steam accessories and systems, along with reliable operation and Manning services throughout Maharashtra.
EPC Company in Pune, Maharashtra:
Veda Engg stands as a leading EPC company in Pune, Maharashtra, offering end-to-end engineering solutions. Our expertise spans across diverse sectors, providing innovative and customized solutions to meet the unique requirements of our clients.
Utility Engineering Company in Maharashtra:
With a commitment to excellence, Veda Engg excels as a utility engineering company in Maharashtra. Our solutions are tailored to optimize utility systems, enhancing efficiency, sustainability, and overall operational performance for industries across the region.
Authorized Thermax Dealer in Maharashtra:
As an authorized Thermax dealer, Veda Engg brings you cutting-edge technologies and solutions from one of the industry leaders. Our partnership with Thermax ensures that you receive high-quality products and services, meeting the highest standards of performance and reliability.
Steam Boiler Supplier/Manufacturer in Maharashtra:
Veda Engg takes pride in being a trusted steam boiler supplier and manufacturer in Maharashtra. Our steam boilers are designed to deliver optimal performance, efficiency, and safety, making them the ideal choice for various industrial applications.
Thermic Fluid Heater Supplier/Manufacturer in Maharashtra:
Count on Veda Engg as your reliable thermic fluid heater supplier and manufacturer in Maharashtra. Our heaters are crafted with precision, ensuring the smooth operation of your industrial processes with efficient heat transfer capabilities.
Hot Water Generator Supplier/Manufacturer in Maharashtra:
Experience uninterrupted hot water supply with Veda Engg as your preferred hot water generator supplier and manufacturer in Maharashtra. Our generators are designed to meet the diverse hot water requirements of industries, ensuring reliability and energy efficiency.
Cooling Tower Supplier/Manufacturer in Pune, Maharashtra:
For top-tier cooling tower solutions in Pune, Maharashtra, turn to Veda Engg. Our cooling towers are engineered to deliver superior heat dissipation, optimizing the performance of your industrial processes.
Steam Accessories & System in Maharashtra:
Veda Engg offers a comprehensive range of steam accessories and systems in Maharashtra, enhancing the efficiency and reliability of your steam-based operations. Trust us for cutting-edge solutions that meet the highest industry standards.
Operation & Manning Services in Maharashtra:
Ensure seamless operations with Veda Engg's operation and Manning services in Maharashtra. Our experienced team is dedicated to providing reliable and efficient services to keep your systems running smoothly.
Conclusion:
Choose Veda Engg as your preferred engineering partner in Maharashtra. With our expertise as an EPC company, authorized Thermax dealer, and supplier/manufacturer of various industrial solutions, we are committed to delivering excellence in every aspect of your project. Elevate your engineering experience with Veda Engg - where innovation meets reliability.
9130099434
#EPC company in Pune Maharashtra#Utility engineering company in Maharashtra#Thermax dealer in Maharashtra#Steam boiler supplier/manufacturer in maharashtra#Thermic fluid heater supplier/manufacturer in maharashtra#hot water generator supplier/manufacturer in maharashtra#Cooling tower supplier/manufacturer in pune maharashtra#Steam Accessories & System In Maharashtra#Operation & Manning Services in maharashtra
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Operating Pressure Control Switch | Boiler Demand Control | Auto Cycling
Operating Pressure Control Switch | Boiler Demand Control | Auto Cycling
When the boiler stays in the off position at the running time that means no demand exists in the plant. This condition means no steam is used in a process system. At the moment This switch activated it shut down the boiler.
How much time does it latch shut down condition?
It shut down depending on the time it depends on plant demand. When processing plants use steam quickly boiler pressure is reduced. At a certain limit reach the Operating Pressure Control Switch exchange it switch contract position.
Operating Pressure Control Switch part
It has a Maximum limit range that positions at the moment this switch off the boiler condition.
Another part it maintaining how much pressure goes down it resetting the condition arising this is called differential limit or start position.
Grap of it Mechanism
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What Benefits a Boiler Operation Course and Certificate Offer?
This Steam Boilers training course will focus on correct operation and routine maintenance to maintain boiler plant efficiency and minimize operating costs. The instructional class gives members the prescribed procedures and systems of boiler activity and support. They even get a boiler operation certificate when they complete their course.
This instructional class aims to guarantee members gain a thorough comprehension of business, modern, and utility Boiler frameworks. This Steam Boilers instructional class covers the guideline of the activity of steam boilers, types, and the fundamental parts of steam boilers. The testing of operating controls, boiler inspections, maintenance, and troubleshooting will all be discussed. Additionally, the burner management system and protection will be discussed.
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Generally speaking, this Steam Boilers instructional class is intended to assist with boosting security, steadfastness, and proficiency, broadening Boiler life, further developing boiler effectiveness, and saving energy costs for the business.
A boiler operation certificate course includes:
Combustion cycle and a draft framework for steam boilers
Boilers types and parts
Boiler control and insurance frameworks
Routine activity and crisis systems
Issues and support of Steam Boilers
At the end of the Steam Boilers instructional class, you will figure out how to:
Figure out the significance of the draft framework for appropriate activity
Work on comprehension of control and insurance framework
Figure out the best practice activity strategies
Clear knowledge of the boiler management system
Understand and support methods This steam boilers instructional class will be conveyed standards with formal talks, videos, and intelligent worked models. A boiler operator certificate identifies that a boiler operator can enhance the overall boiler operation and maintenance knowledge. They can also work on the steam boiler control and protection systems by utilizing the best practices in fault-finding techniques, inspections, and procedures to reduce costly downtime. They also enhance the boiler's adaptability to shifting technology by utilizing the best operation practices, which reduce fuel costs and carbon emissions.
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Okay so if I get it correct then it's like the bottom option here, and not the top one that I was originally working with.
I can work with that.
Now I honestly expect you not to have an answer one way or the other, but I've been hyperfixating on Sunless Skies again, and with that comes my foolish endeavour to try and somehow figure out how the Locomotives might work, and look. And the main question I come up against is, how "locomotive-esque" are the locomotives actually.
Or well pretty much, is the large cylindrical structure an actual full size boiler with crew space delegated to the "cab"in the back, or is it more like a submarine zubmarine, and the cylinder is a hollow space with room for habitation inside? Because both options seem, possible (even tho the first is more interesting in my eyes).
But yeah I don't know if there is an answer, but if anyone does know, it's probably you guys. And if not, I'll gladly just keep throwing vaguely accurate engineering at it until it starts to sound believable myself.
Yeah, the locos are more like a zubmarine, with a boiler but also crew quarters!
#I've been generally operating on the assumption that an average size loco is going to sit somewhere in the like#maybe about 50m length range?#which I know is ridiculous for an actual train but these aren't trains theyre spaceships#and a figure like that worked well with my original assumption of “boiler barrel is all boiler” as it still left like 10 m of cab#for habitation#as well as room below the boiler for a cargo hold#but the inside of the barrel indeed has habitation space as well#it might get a bit smaller#should i fully work this out and post it on Tumblr?
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What is Dataflow?
This post is inspired by another post about the Crowd Strike IT disaster and a bunch of people being interested in what I mean by Dataflow. Dataflow is my absolute jam and I'm happy to answer as many questions as you like on it. I even put referential pictures in like I'm writing an article, what fun!
I'll probably split this into multiple parts because it'll be a huge post otherwise but here we go!
A Brief History
Our world is dependent on the flow of data. It exists in almost every aspect of our lives and has done so arguably for hundreds if not thousands of years.
At the end of the day, the flow of data is the flow of knowledge and information. Normally most of us refer to data in the context of computing technology (our phones, PCs, tablets etc) but, if we want to get historical about it, the invention of writing and the invention of the Printing Press were great leaps forward in how we increased the flow of information.
Modern Day IT exists for one reason - To support the flow of data.
Whether it's buying something at a shop, sitting staring at an excel sheet at work, or watching Netflix - All of the technology you interact with is to support the flow of data.
Understanding and managing the flow of data is as important to getting us to where we are right now as when we first learned to control and manage water to provide irrigation for early farming and settlement.
Engineering Rigor
When the majority of us turn on the tap to have a drink or take a shower, we expect water to come out. We trust that the water is clean, and we trust that our homes can receive a steady supply of water.
Most of us trust our central heating (insert boiler joke here) and the plugs/sockets in our homes to provide gas and electricity. The reason we trust all of these flows is because there's been rigorous engineering standards built up over decades and centuries.
For example, Scottish Water will understand every component part that makes up their water pipelines. Those pipes, valves, fitting etc will comply with a national, or in some cases international, standard. These companies have diagrams that clearly map all of this out, mostly because they have to legally but also because it also vital for disaster recovery and other compliance issues.
Modern IT
And this is where modern day IT has problems. I'm not saying that modern day tech is a pile of shit. We all have great phones, our PCs can play good games, but it's one thing to craft well-designed products and another thing entirely to think about they all work together.
Because that is what's happened over the past few decades of IT. Organisations have piled on the latest plug-and-play technology (Software or Hardware) and they've built up complex legacy systems that no one really knows how they all work together. They've lost track of how data flows across their organisation which makes the work of cybersecurity, disaster recovery, compliance and general business transformation teams a nightmare.
Some of these systems are entirely dependent on other systems to operate. But that dependency isn't documented. The vast majority of digital transformation projects fail because they get halfway through and realise they hadn't factored in a system that they thought was nothing but was vital to the organisation running.
And this isn't just for-profit organisations, this is the health services, this is national infrastructure, it's everyone.
There's not yet a single standard that says "This is how organisations should control, manage and govern their flows of data."
Why is that relevant to the companies that were affected by Crowd Strike? Would it have stopped it?
Maybe, maybe not. But considering the global impact, it doesn't look like many organisations were prepared for the possibility of a huge chunk of their IT infrastructure going down.
Understanding dataflows help with the preparation for events like this, so organisations can move to mitigate them, and also the recovery side when they do happen. Organisations need to understand which systems are a priority to get back operational and which can be left.
The problem I'm seeing from a lot of organisations at the moment is that they don't know which systems to recover first, and are losing money and reputation while they fight to get things back online. A lot of them are just winging it.
Conclusion of Part 1
Next time I can totally go into diagramming if any of you are interested in that.
How can any organisation actually map their dataflow and what things need to be considered to do so. It'll come across like common sense, but that's why an actual standard is so desperately needed!
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So the radiator in our bathroom is fucked, right. Years back when it was installed, the plumber didn't tighten the top valve enough, and the then-slow drip of water made the cap over it rust in place. Now, years later, the cap is fixed, so we can't get to the valve to tighten it now that the drip is more of a steady stream. But losing that much water daily means having to re-pressurise the boiler every day.
Exhibit A:
So I needed to do SOMETHING. I did consider grouting it, but the problem is, there's too much water - grout, sealant etc all need to dry to become waterproof.
However I am an intelligent tool-using creature with great tits, so I decided to stop it up today with simple items from around my home.
Behold, my tools:
Because! As we know! Condoms are waterproof, and about the right size for a snug radiator fit, and then I just need to duct tape it in place for the Ultimate Seal. Duct tape does anything. I'm a genius and there are no flaws in this plan.
I will, however, admit that this bit looked A Bit Silly
BUT, it's fine. Duct tape, as ever, saves the day.
My finished, fixed radiator:
Operation: Radiator Bondage is now complete.
My sister's response was "I have three radiator engineers in my house right now, I'm going to go and ask them what you should do instead."
I think this is Unsupportive
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I don’t give a fuck about billionaire romances WHERE ARE the KU romances about welders and train dispatchers and rail signallers and boiler operators and aircraft mechanics and plumbers and line cooks and
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"Heat stored underground in caverns can be set aside in Finland’s summer months to be re-used during frigid winters thanks to a state-of-the-art ‘seasonal energy’ storage facility.
Slated for construction this summer near Helsinki, it will be the largest in the world by all standards and contain enough thermal energy to heat a medium-sized city all winter.
Thermal exchange heating systems, like those built underground, or domestic heat pumps, are seen as the most effective way available of reducing the climate-impact of home heating and cooling.
Their function relies on natural forces or energy recycling to cool down or heat up water and then using it to radiate hot or cold energy into a dwelling.
In Vantaa, Finland’s fourth largest city neighboring the capital of Helsinki, the ambitious Varanto seasonal energy storage project plans to store cheap and environmental friendly waste heat from datacenters, cooling processes, and waste-to-energy assets in underground caverns where it can be used to heat buildings via the district heating network whenever it is needed.
In Finland and other Nordic countries, the heat consumption varies significantly between seasons. Heat consumption in the summertime is only about one-tenth of the peak load consumption during the cold winter months.
Varanto will utilize underground caverns equal in space to two Maddison Square Gardens—over a million cubic meters��filled with water heated by this waste heat and pressure that will allow the water to reach temperatures of up to 300 degrees Fahrenheit without the water boiling or evaporating.
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“The world is undergoing a huge energy transition. Wind and solar power have become vital technologies in the transition from fossil fuels to clean energy,” says Vantaa Energy CEO Jukka Toivonen.
“The biggest challenge of the energy transition so far has been the inability to store these intermittent forms of energy for later use. Unfortunately, small-scale storage solutions, such as batteries or accumulators, are not sufficient; large, industrial-scale storage solutions are needed. Varanto is an excellent example of this, and we are happy to set an example for the rest of the world.” ...
“Two 60-MW electric boilers will be built in conjunction with Varanto,” adds Toivonen. “These boilers will be used to produce heat from renewable electricity when electricity is abundant and cheap. Our heat-producing system will work like a hybrid car: alternating between electricity and other forms of production, depending on what is most advantageous and efficient at the time.”
... Construction of the storage facility’s entrance is expected to start in summer 2024, while it could be operational as early as 2028."
-via Good News Network, April 12, 2024. Video via VantaanEnergia, March 10, 2024
#solarpunk#heat pump#renewable energy#heating#finland#energy transition#climate change#climate hope#good news#hope#helsinki#clean energy#Youtube
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