Katja Gieseking | München, Bayern, Deutschland | Management Consultant bei Sofis AG | 0 Kontakt | Startseite, Profil, Aktivitäten, Artikel von Katja anzeigen. Werdegang von Katja Gieseking aus München: früher Vorstand der Gasag Berliner Gaswerk Aktiengesellschaft, früher Vorstand der citiworks AG. Sehen Sie sich das Profil von Katja Gieseking im größten Business-Netzwerk der Welt an. Im Profil von Katja Gieseking sind 5 Jobs angegeben. Auf LinkedIn.
Gieseking verlässt Gasag-VorstandKatja Gieseking | München, Bayern, Deutschland | Management Consultant bei Sofis AG | 0 Kontakt | Startseite, Profil, Aktivitäten, Artikel von Katja anzeigen. Katja Gieseking. Direktor. Mobil: +49 (0) 99 10 0. E-Mail: firstname.lastname@example.org Flexible Beratung - Unser Angebot Flexible Beratung PDF, . Sehen Sie sich das Profil von Katja Gieseking im größten Business-Netzwerk der Welt an. Im Profil von Katja Gieseking sind 5 Jobs angegeben. Auf LinkedIn.
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Franz Sebastian Welter. Dominik Spannheimer. Jan Wemmel. Anja Bock. Marcus Ewig. Johann Vetter. The local economy has also benefitted enormously, having capitalised on development opportunities, creating a pool of local expertise that is now in global demand and bringing competitive advantages for the city as an increasingly attractive place to do business.
It also makes sense for the customer. Stadtwerke München does not plan to impose any obligation on end-users to connect to the DHC network.
Instead, it will focus on providing the highest standards of comfort at a competitive price in order to convince end-users to choose District Energy on its merits.
Despite these compelling benefits, District Energy struggles to get the attention and investment it needs to make these statistics a reality.
This is often due to misconceptions about the cost and complexity of implementing a new heating infrastructure or a lack of understanding about the many advantages this unique heating concept offers.
By expanding existing networks this highly efficient technology can help us become energy independent — and protect our fragile environment.
This share is still relatively small compared to its competitors such as natural gas , which means there is a vast potential for expansion. Better technology and more plants are needed, especially as almost million tonnes of nonrecycled waste is deposited in landfills.
As with any large-scale engineering project, District Heating presents certain challenges. These include logistical and structural difficulties in linking networks with utility suppliers, power plants and other potential heat sources; developing an effective metering and tariff system; minimising disruption when laying down new infrastructure; and replacing individual boilers with compatible District Heating units.
Fortunately, with District Heating there is a lot of real-world experience available that can help illustrate how these challenges can be addressed, managed or even turned into advantages.
It is also important to view these challenges in the context of the alternatives: our heating infrastructure is old, inefficient and built around fossil fuels.
A look at the bigger picture helps to put this all in perspective. Over the longer term, District Heating systems are proven to be exceptionally cost-effective through a combination of reducing costly energy wastage and lowering the amount of expensive fuel the EU needs to import to make up for its energy deficit.
By doing so, District Heating systems would quickly pay for themselves and go on to deliver significant returns for the economy as a whole. In fact, at current energy import prices the direct socioeconomic payback is thought to be as little as two to three years.
Even more importantly, implementing District Heating will also transfer money from energy imports to investments in distribution pipelines, CHP plants, geothermal, solar thermal, industrial waste heat and waste incineration.
Not only does this all translate into major benefits for the environment doubling District Heating across 32 European countries could save million tons of CO2 a year, according to the European Commission , but a huge amount of local industry would be generated in the process, creating an estimated , new jobs over the next 35 years.
At a more local level, District Heating networks have the unique capability to build upon existing infrastructure, utilising the mesh of pipes and cables that already lie underneath cities.
Developers do not always take this into account, missing valuable opportunities to combine investment with integrated planning initiatives or utility upgrades, such as new phone lines, that would help share costs and limit disruption.
Local and national governments need to balance a huge range of competing issues when budgeting limited public funds.
Yet energy planning, at both municipal and higher levels, is fundamental to the growth and security of any industrialised economy. One of the great advantages of District Energy is that it can make a strong impact at a local level; it does not require nationwide upheaval.
Where possible, towns and communities can themselves elect a more efficient and sustainable way to heat homes and manage natural resources.
In this way, it is possible to implement District Heating both democratically and progressively, growing the network to include new cities and regions as benefits and savings begin to take effect.
With fossil fuel costs rising and supplies diminishing, the need to update our energy infrastructure is an unavoidable and inevitable fact.
We need systems that accommodate fuel plurality and especially the incorporation of renewable energy.
We also need to stop the wastage by recovering and reusing existing energy, regardless of source. To help achieve this, District Heating systems are becoming more commercially competitive to generate momentum with local authorities, investors and the general public.
This has been driven by a deeper understanding of the advantages District Energy can provide, which in turn has led to exploration of how implementation costs can be lowered via government grants and more integrated planning schemes, for example , how the system can generate a better rate of return for investors and how the benefits can be communicated to end-users.
In spite of the challenges that District Heating presents in its initial stages, it remains the best answer to many of the energy issues facing us today.
Its expansion and development will not only help us achieve greater energy efficiency, but will also make us less dependent on expensive energy imports, more economically competitive and a world leader in the fight against climate change.
Now more than ever, Danfoss is using its innovation leadership and engineering skill to create systems — including District Heating — that not only deliver superior performance but also environmental compatibility.
The founder of Danfoss, Mads Clausen, was a visionary entrepreneur who showed a great respect for natural resources.
And history has proved him right. Today, Danfoss products are used at the core of literally thousands of applications, buildings and projects worldwide, where they silently make a vital difference to efficiency, performance and the environment.
More specifically, our technologies help make comfort and modern convenience possible through: cooling and heating domestic and commercial buildings; preserving and transporting food; controlling speed in electric motors; automating industrial processes; controlling hydraulics for construction vehicles; and supporting the production of renewable energy — as well as countless other applications.
All while maximising efficiency and performance and reducing energy use and CO2. Originating in Scandinavia, Danfoss has come a long way from its humble beginnings; we now employ 24, dedicated professionals and have sales companies and 76 factories operating worldwide.
Launched in , Danfoss District Energy then called District Heating has been at the frontier of defining District Heating engineering for almost 25 years.
Our total solution approach, with local offices worldwide, enables us to offer a comprehensive range of systems from a single source.
We have a vision for the future of modern living; a sustainable future where a better standard of living goes hand in hand with care of the wider environment.
This vision drives our dedication to continuously improving the technologies and processes that make this future possible, not only for us but for communities across the globe.
District heating and cooling by Danfoss. I agree to receive information and news from Danfoss. Recycled energy Recycling heat in this way is the basic principle behind District Heating or District Energy , a system for centrally supplying residential and commercial heating.
Fuel plurality The engineering behind District Energy is remarkably simple and stable, making it highly flexible in terms of both scalability and compatibility with fuel sources.
Carbon targets Recycling heat, through District Energy networks, opens the way to massively reducing carbon emissions, particularly in urban centres, where heat demand is most intense.
Surplus energy. The Value Chain expand back. Scalability A District Energy network is extremely flexible and can be used to connect as few as houses.
Application At the end-user level, individual buildings are connected to the District Heating network. Pipes Once generated, heat is distributed as water or steam to commercial and residential buildings via a network of pre-insulated pipes, consisting of supply and return lines.
Flexible, Economic and safe A single District Energy network is able to provide heat to numerous end- users at the same time and even has the potential of storing energy through thermal storage facilities.
Leading the charge As the financial, environmental and political costs of fossil fuels increase, District Energy allows a smooth development towards greener alternatives.
It is estimated that if the current share of District Energy in the EU were to double, the following results would be achieved: Lower import dependency of 4.
The latest generation of District Heating technology makes use of a wide variety of energy resources, which typically include: Boilers using conventional or renewable fuels such as biomass Waste heat from industrial processes Heat from power generation such as a Combined Heat and Power plant Energy generated from municipal waste incineration Natural heat sources such as solar, geothermal or wind.
District Heating not only offers excellent opportunities for re- ducing environmental pollution, but also for achieving the goal of saving energy.
It is an extremely flexible technology which can make use of any fuel including the utilisation of waste energy, renewables and, most significantly, the application of combined heat and power CHP.
International Energy Agency The inherently global nature of our climate and energy challenges has quite naturally led to a focus on resolving the problem via high-level international governance.
Cities and counties looking for ways to cut energy use and save energy dollars can choose from a dizzying variety of alternatives.
As Gieseking's father had earned a living as a lepidopterist , Gieseking also devoted much time to the collecting of butterflies and moths throughout his life.
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