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freyrenergyservice · 1 year
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By 2050, Solar panels could be the world's No.1 Source of Power - FreyrEnergy:
What a world it would be!
Solar energy could replace fossil fuels entirely to become the world’s power source by 2050.
For more information related to solar please visit the website: FreyrEnergy
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contendresolar · 2 months
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Benefits of Solar Panels for Factories, Warehouses, and Industries
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Solar panels offer numerous benefits for factories, warehouses, and industries, making them an increasingly popular choice for businesses looking to reduce their carbon footprint and operating costs. One of the key advantages is the potential for significant cost savings on electricity bills. By harnessing the power of the sun, businesses can generate their own clean energy, reducing their reliance on the grid and lowering their electricity expenses. Additionally, solar panels can help businesses mitigate the impact of volatile energy prices, providing a more stable and predictable energy source.
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myfeedsworld · 1 year
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Portable Solar Power Bank | Gosun
Solar power banks are portable battery chargers that use solar energy as their main source of power. They are a great way to stay connected and keep your devices charged when you’re away from traditional power sources. Solar power banks are generally lightweight and highly durable, making them perfect for use in outdoor activities such as camping, hiking, and more. They are also an environmentally friendly option since they do not require any fuel.
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ibsolar01 · 2 years
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Advantages of Solar Energy have long been an attractive alternative to fossil fuels because it emits no pollution and doesn't run out like oil or coal. It's also one of the most cost-effective ways to power our world — with no fuel costs, solar can provide more bang for your buck than any other source of electricity.
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earthtooz · 1 year
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imagine you have an 'eat the rich' mindset except you're literally dating reo mikage, ceo of a multiBILLION dollar company, so instead of eating the rich, you now manipulate the rich.
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banga-solar · 3 months
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jupitersolar · 6 months
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How Conduction Occurs in a Solar Water Heater
How Conduction Occurs in a Solar Water Heater
A solar water heater is a device that uses the sun's energy to heat water for domestic or industrial purposes. How conduction occurs in a Solar Water Heater? Solar water heaters can be classified into two types: active and passive. Active systems use pumps and valves to circulate water through the collectors, while passive systems rely on natural convection to move water from the collectors to the storage tank.Buy a solar water heater in Bangalore,Karnataka from Jupiter Solar, www.jupitersolars.in .
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The Role of Conduction in Solar Water Heating
Conduction is the process of heat transfer by direct contact between two objects or substances. In a solar water heater, conduction occurs in several places:
In the collector, where the metal tubes or plates are in direct contact with the solar radiation and the air molecules. The metal absorbs the solar energy and transfers it to the air and the water inside the tubes or plates.
In the storage tank, where the hot water from the collector is in direct contact with the cold water in the tank. The hot water transfers some of its heat to the cold water, raising its temperature.
In the pipes, where the water flows from the collector to the tank and from the tank to the faucet. The pipes are in direct contact with the water and the surrounding air. The water transfers some of its heat to the pipes and the air, losing some of its temperature.
https://jupitersolars.in/faq.php
The Advantages of Conduction in Solar Water Heating
Conduction is an important mechanism for solar water heating because it allows for efficient heat transfer between different components of the system. Conduction ensures that:
The collector can capture as much solar energy as possible and transfer it to the water.
The storage tank can store as much hot water as possible and keep it warm for later use.
The pipes can deliver hot water to the faucet with minimal heat loss.
The Limitations of Conduction in Solar Water Heating
Conduction is not the only mechanism for heat transfer in a solar water heater. Convection and radiation are also involved in different stages of the process. Convection is the process of heat transfer by the movement of fluids (such as air or water) due to differences in density and temperature. Radiation is the process of heat transfer by electromagnetic waves (such as light or infrared) that do not require any medium to travel.
Conduction has some limitations compared to convection and radiation, such as:
Conduction requires direct contact between objects or substances, which may not always be possible or desirable. For example, if there is a gap or air pocket between the metal tube and the water, conduction will be reduced.
Conduction depends on the thermal conductivity of the materials involved, which may vary widely. For example, metals have high thermal conductivity, while plastics have low thermal conductivity. This means that metals can transfer heat faster than plastics, but also lose heat faster than plastics.
Conduction is affected by external factors such as ambient temperature, wind speed, and humidity. For example, if the air temperature is lower than the water temperature, conduction will cause more heat loss from the collector to the air.
Conclusion
Conduction is a vital process for solar water heating, but it is not sufficient by itself. A good solar water heater design should take into account all three modes of heat transfer: conduction, convection, and radiation. By optimizing these factors, a solar water heater can provide hot water for various applications with minimal energy consumption and environmental impact.
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mytravelfreak · 8 months
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Top Ten Advantages Of Solar Energy
Solar energy offers numerous advantages, making it an increasingly popular and sustainable source of power. Here are ten key advantages of solar energy: Renewable and Sustainable: Solar energy is a renewable resource, meaning it is inexhaustible as long as the sun exists. This makes it a sustainable long-term energy solution. Reduces Greenhouse Gas Emissions: Solar power generation produces…
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electronalytics · 11 months
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Vanadium Flow Battery (VFB) Store Energy Market Demand Key Growth Opportunities, Development and Forecasts to 2017-2032
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The global vanadium flow battery (VFB) energy storage market has witnessed significant growth in recent years, driven by the increasing demand for reliable and sustainable energy storage solutions.
VFBs are a type of rechargeable flow battery that utilize vanadium ions in different oxidation states to store and release electrical energy.
These batteries offer several advantages over traditional lithium-ion batteries, such as longer lifespan, high energy efficiency, and the ability to discharge and recharge simultaneously.
The VFB market is experiencing growing adoption in various sectors, including renewable energy integration, grid-scale energy storage, and off-grid applications.
The market is characterized by the presence of several key players, technological advancements, and ongoing research and development efforts to enhance battery performance and reduce costs.
Key points:
Growing renewable energy integration: The increasing penetration of renewable energy sources, such as solar and wind, has led to a higher demand for energy storage solutions. VFBs are well-suited for storing excess renewable energy for later use, contributing to grid stability and minimizing curtailment.
Grid-scale energy storage applications: VFBs are deployed in large-scale energy storage projects to provide grid stability, peak shaving, load balancing, and backup power. These batteries can store and release energy over extended durations, making them ideal for utility-scale applications.
Off-grid and remote applications: VFBs are also used in off-grid and remote areas, where a reliable power supply is crucial. They can be employed in microgrids, island communities, and remote industrial sites to ensure uninterrupted power availability.
Long cycle life: VFBs have a longer cycle life compared to other battery technologies, such as lithium-ion batteries. They can sustain thousands of charge-discharge cycles without significant degradation, resulting in reduced maintenance costs and improved overall economics.
Scalability and modular design: VFB systems offer scalability, allowing capacity expansion by adding more electrolyte tanks and stacks. Their modular design facilitates easy customization based on specific energy storage requirements.
Demand points:
Growing need for renewable energy integration: With the increasing deployment of renewable energy sources worldwide, there is a rising demand for energy storage technologies like VFBs to efficiently store and utilize intermittent renewable energy.
Grid resilience and stability: The need for grid stability and resilience is driving the demand for energy storage systems, including VFBs. These batteries can help mitigate fluctuations in energy supply and demand, reducing the risk of blackouts and ensuring reliable power delivery.
Characteristics points:
High energy efficiency: VFBs offer high round-trip energy efficiency, typically above 80%. This means that a significant portion of the stored energy can be efficiently retrieved when needed.
Deep discharge capability: VFBs can be discharged to a very low state of charge without adversely affecting their performance or cycle life. This feature makes them suitable for applications where occasional deep discharges are required.
Chemical stability and safety: VFBs utilize non-flammable electrolytes, primarily based on vanadium, which enhances their chemical stability and safety compared to some other battery chemistries.
Temperature resilience: VFBs can operate effectively over a wide range of temperatures, allowing them to be deployed in various climates and environments.
Eco-friendly and recyclable: VFBs are considered environmentally friendly as they use non-toxic and abundant vanadium electrolytes. Additionally, the majority of their components, including the electrolyte, can be recycled, reducing environmental impact and supporting a circular economy.
We recommend referring our Stringent datalytics firm, industry publications, and websites that specialize in providing market reports. These sources often offer comprehensive analysis, market trends, growth forecasts, competitive landscape, and other valuable insights into this market.
By visiting our website or contacting us directly, you can explore the availability of specific reports related to this market. These reports often require a purchase or subscription, but we provide comprehensive and in-depth information that can be valuable for businesses, investors, and individuals interested in this market.
“Remember to look for recent reports to ensure you have the most current and relevant information.”
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Market Segmentations:
Global Vanadium Flow Battery (VFB) Store Energy Market: By Company • Rongke Power • VRB Energy • Shanghai Electric • State Grid Yingda • Invinity Energy Systems • CellCube • Australian Vanadium • StorEn Technologies • Stryten Energy • VFlowTech • Sumitomo Electric • Largo Global Vanadium Flow Battery (VFB) Store Energy Market: By Type • Full-fluorinion Ion Exchange Membrane • Non-fluorinion Ion Exchange Membrane Global Vanadium Flow Battery (VFB) Store Energy Market: By Application • Power Generation • Grid • Electricity Global Vanadium Flow Battery (VFB) Store Energy Market: Regional Analysis All the regional segmentation has been studied based on recent and future trends, and the market is forecasted throughout the prediction period. The countries covered in the regional analysis of the Global Vanadium Flow Battery (VFB) Store Energy market report are U.S., Canada, and Mexico in North America, Germany, France, U.K., Russia, Italy, Spain, Turkey, Netherlands, Switzerland, Belgium, and Rest of Europe in Europe, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, China, Japan, India, South Korea, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), and Argentina, Brazil, and Rest of South America as part of South America.
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#Vanadium Flow Battery (VFB) Store Energy Market Demand Key Growth Opportunities#Development and Forecasts to 2017-2032#The global vanadium flow battery (VFB) energy storage market has witnessed significant growth in recent years#driven by the increasing demand for reliable and sustainable energy storage solutions.#VFBs are a type of rechargeable flow battery that utilize vanadium ions in different oxidation states to store and release electrical energ#These batteries offer several advantages over traditional lithium-ion batteries#such as longer lifespan#high energy efficiency#and the ability to discharge and recharge simultaneously.#The VFB market is experiencing growing adoption in various sectors#including renewable energy integration#grid-scale energy storage#and off-grid applications.#The market is characterized by the presence of several key players#technological advancements#and ongoing research and development efforts to enhance battery performance and reduce costs.#Key points:#Growing renewable energy integration: The increasing penetration of renewable energy sources#such as solar and wind#has led to a higher demand for energy storage solutions. VFBs are well-suited for storing excess renewable energy for later use#contributing to grid stability and minimizing curtailment.#Grid-scale energy storage applications: VFBs are deployed in large-scale energy storage projects to provide grid stability#peak shaving#load balancing#and backup power. These batteries can store and release energy over extended durations#making them ideal for utility-scale applications.#Off-grid and remote applications: VFBs are also used in off-grid and remote areas#where a reliable power supply is crucial. They can be employed in microgrids#island communities#and remote industrial sites to ensure uninterrupted power availability.
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sunnovation4567677 · 1 year
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sleepy-writes-stuff · 2 months
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DP X DC PROMPT #26
(I'm feeling angsty today.)
(#) = Notes at the end of post
(*) = Just me building off of other ideas.
Going Supernova
The GIW have discovered his identity, and they don't waste time on using this knowledge to their advantage. They spent the last six months creating a weapon that not only hurts ghosts but absolutely obliterates them down to their very cores. After testing it for so long on minor ghosts and then discovering the local ghostly menace's secret, they have the bright idea to make an example out of Danny.
They ambush him as he's fighting the invading ghost of the day. Their first shot misses and hits the ghost they're fighting. As soon as the shot lands, the ghost freezes in place with a look of dread and horror.
They look up at Danny with tears in their eyes and has only a few precious seconds to say, "Run," before their skin cracks and they shatter, the miniscule shards evaporating into nothingness.
Danny is petrified and grief-stricken over what he just witnessed that he doesn't have the time to even twitch before the GIW lock their sights back onto him and shoot him in the back.
Agony consumes him. His chest burns, and his ribs rattle with the effort it takes for him to breathe through the pain. The civilians who were still on the scene gasped in horror as they watched their local hero's chest start to crack and glow from within.
What the GIW didn't know was that Danny had just recently elevated to Ancient status due to helping Clockwork with the timestream. That and with his status as a halfa, what they did will end in nothing but disaster. (1)
Danny spots his parents, sister, and friends in the crowd. His parents watched in awe and excitement while his Jazz, Sam, and Tucker looked at him with horror-stricken disbelief. Knowing what's to come and not having enough time to explain, he gives them a wobbly smile.
"I'm so sorry."
He whips around and rockets straight up into the sky. He breaks through the atmosphere in a matter of seconds and continues to fly at breakneck speed away from the little green-blue planet he calls home. He has to get away. He can't destabilize so close to them. He has to go even further.
His form is steadily breaking off into pieces as his human and ghost half fight and fail to keep him together. He can feel his human half dying and his ghost half barely holding on by a thread. He can't stop, though. If he stops here, the Earth will be destroyed from the backlash.
He had no worry for himself. After all, stars die all the time. That doesn't mean that's the end for them. They just take on a new form or even help breathe new planets and galaxies into life.
'A star's death is not the end!' He comforts himself.
He only makes it a few light-years further before his energy fades out to nothing, and he slows to a halt. It's only then that Danny starts to panic alone in the vacuum of space. The furthest he's even been from home and the comfort of his friends and family.
"No. No, no, no, no." He repeats over and over. "Not far enough. Not far enough! I'm still too close!!" (2)
His stuttering heart rabbits inside his chest along with his crumbling core. He hugs himself tight with the false hope that maybe that would stop himself from falling apart. He cries for his family, his friends, his planet. His life and lives he's about to take through no fault of his own.
Because for a star to give life, they must first destroy. (3)
"I'm sorry. I-I'm so sorry! Please!"
He sobs into his hands as the light of his core pulses one final time.
"Please." He whispers brokenly.
His core shatters, and he screams for the entire cosmos to hear. His form expands with immeasurable force and shakes the very foundations of creation. His desperate attempt to spare the Earth from his self-destruction was in vain as the waves of his shattered core ravaged the solar system and destroyed everything within its path.
The countless people and other creatures on Earth didn't even have time to blink before they were completely eradicated. Quick and painless but nonetheless gone.
It took centuries for everything to settle again.
It wasn't until countless millennium passed that the solar system began to take shape again. However, everything was reshaped and put back together as though with a child's memory of what it used to be from so long ago. Some things were bound to be different, like how Mars gained its own population of intelligent humanoid creatures. How Earth's own population started to develop extraordinary abilities and magic was able to be used more freely outside of supernatural species.
Soon, there were heroes popping up all over the universe of all shapes, sizes, and species. Some people were even reborn. They started remembering a life that, as far as they knew, never actually existed. How could it? None of the people they were before showed up in any records. There were records, of course. They just, unfortunately, no longer existed.
No one knew why, either. At least not until a magic user stumbled upon a tome belonging to what they knew as the Underworld. It told the story of a young boy who died too young and was destroyed from what he became afterward. How his destruction also destroyed the world despite the boy's efforts to save it.
This story was shared with the masses of people experiencing these memories of other lives, including the heroes who took up the mantle of keeping the Earth and other corners of the galaxy safe. They mourned the loss of a life so young, so bright and full of potential. They hoped that wherever the child ended up, that they were at peace.
Little did they know, the child was part of the universe itself, his very being woven into the fabric that makes up the night sky and everything that lays beyond. They can't see or hear him, but that precious child--the Ancient of Space--laid curled around the Milky Way itself with Earth cradled gently in his trembling hands.
(1) Because of his status as the new Ancient of Space and the fact that he is half human/alive is the reason his destabilization took longer than the ghost he was previously fighting. An Ancient has immense power of the aspect of reality they control, and his human half was desperately trying to keep him alive. He can't live without his ghost half, though. It was also the power of his Ancient status that made his destabilization so explosive and damaging. However, him being a halfa is also what saved his existence in the end and allows him to still continue to be the Ancient of Space, as Space itself is always in a state of dying and rebirth. It just took several thousands of years to pull himself back into a semblance of what he previously was, but obviously irrevocably changed.
(2) According to scientists a supernova would have to be within 30-50 light-years to trigger a mass extinction on Earth. To be actually completely safe from one, however, it'd have to be 160 or more light-years away. Danny didn't even make it to 20 light-years before his core self-destructed, which is why he was panicking.
(3) As I'm sure most of you know, supernovae are essential to creating life, but that life is preceded by the death of said star.
(*) I haven't really thought of who would be reborn into which character. I originally thought of Jack Fenton being reborn as Bruce Wayne, but Bruce only disguises himself as a himbo while Jack actually is one. The only reason I thought it would work out it because 1) Jack's paranoia about ghosts and translating into Bruce's own paranoia 2) him regaining his past memories would explain his propensity to collect black-haired, blue eyed children because of his loss of Danny and 3) him and his relationship with Jason after he came back as Red Hood.
Other than that, I can't think of who any of the other characters might be. You can decide!
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freyrenergyservice · 1 year
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Solar panels are tougher than you think! - FreyrEnergy:
They are designed to withstand strong winds, hail and more. So don't let myths about solar panel fragility hold you back from switching to clean, renewable energy.
Contact us today to learn more about the benefits of solar energy!
For more information related to solar please visit the website: FreyrEnergy
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alloneindia · 2 years
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5 Great Reasons To Harness Solar Power
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myfeedsworld · 1 year
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GOSUN ELCAT Solar Electric Boat | GoSun
A Solar Electric Boat is a type of watercraft that utilizes the power of solar energy to move through the water. This type of boat is powered by a combination of solar energy and electric motors. It is a clean, renewable, and cost-effective way to get around in the water. The solar panels on the boat collect energy from the sun to charge the batteries, which are then used to power the electric
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ibsolar01 · 2 years
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Advantages of Solar Energy
Advantages of Solar energy is a renewable source of energy that is free, reliable, environmentally friendly, and clean. According to solar energy experts, solar energy has some major advantages over conventional sources such as fossil fuels.
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reasonsforhope · 10 days
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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
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