Northwest Renewable Energy

Northwest Renewable Energy – Energy Strategy 2030 The Energy Strategy 2030 (Strategy) sets out the Government of the Northwest Territories’ (GNWT) long-term approach to supporting secure, affordable and sustainable energy in the NWT. The policy will be implemented alongside the Climate Change Framework Framework¬†(CCSF) and the NWT Carbon Tax.

The 2030 Energy Strategy provides guidance for the development of secure, affordable and sustainable energy in the NWT for transport, heat and electricity. This includes support for energy efficiency and maintenance programs, regional renewable and alternative energy solutions, and energy projects.

Northwest Renewable Energy

Along with ensuring that energy in the NWT is secure and affordable, many initiatives under the 2030 Energy Strategy are focused on reducing greenhouse gas (GHG) emissions, contributing to the primary goal of the GNWT’s Climate Change Strategy to reduce GHG emissions . Reducing electricity costs and increasing the use of alternative and renewable energies are priorities of the 19th Legislative Assembly. The mandate commits the GNWT to implement the NWT Climate Change Strategy 2030 and the Energy Strategy 2030 by implementing the action plans set out in these strategies.

Northwest Clean Energy Atlas

The strategy was developed through public engagement, which included community workshops with residents, communities, businesses, Indigenous governments and other stakeholders across the NWT. What we have heard is that we need to address climate change, energy affordability and the development of the NWT’s energy.

For the process to be successful, GNWT and its partners – including utilities, governments, communities, residents, businesses, industry and non-governmental organizations – must work together, facilitate and seek funding and investment opportunities.

By 2030, the NWT will have a secure, affordable and sustainable energy system that does not rely on fossil fuels, and that contributes to the economic, social and environmental well-being of the region and its residents. GNWT will achieve this vision by following guiding principles in decision-making that include shared responsibility, indigenous and community involvement, leading by example, and transparency and accountability.

The process takes a consistent approach to these strategic goals, which are reassessed after five years to make sure they represent what is possible with a new technology. Strategic goals are achieved through actions and initiatives undertaken by GNWT and its partners.

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The GNWT will prepare and publish annual public reports on its activities and progress in relation to the process.

To learn about initiatives completed during this fiscal year, you can view the 2020-2021 Energy Initiatives Report.

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To learn about the GNWT’s integrated approach to tackling climate change, visit the Department of Environment and Natural Resources website. Wind Turbine Engineer Salary The road to becoming a Wind Turbine Engineer doesn’t have to be long.

After only 6 months in our program you will be ready to apply for positions all over the country. The wind power industry is growing; There is currently a huge demand for engineers as the world becomes a ‘green energy’ hub.

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Wind Turbine Technician – Installation $56,230, Maintenance and Repair Services – $48,750 All Services – $41,950

Wind turbine engineers often learn their trade by attending and graduating from a technical school like NWREI. After they are hired, they receive additional training on the job. While most turbine engineers work full time, many are also on call for emergencies during weekends and evenings. When a wind turbine malfunctions, these specialized engineers work to find the problem and make repairs as quickly as possible.

Bureau of Labor Statistics, US Department of Labor, Workbook Handbook, Wind Turbine Technicians, at (visited on 13 May August, 2021).

Wind Turbine Job Outlook According to the US Department of Labor, the need for qualified wind turbine engineers is expected to double over the next eight years.

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Recent information published in the Career Outlook Handbook states that the need for wind turbine service engineers is expected to grow 61% from 2019 to 2029.

NWREI partners with the wind energy industry to meet the demand for trained wind turbine engineers. Employers call us because they like our degrees. We have long-term relationships with air force employers that let us know about the company’s training requirements. Based on their input, we constantly adapt our training to stay ahead of the demands of the industry.

There are several reasons why the number of wind turbines is growing so quickly. Two big reasons are the government policy that aims to have wind account for 20% of the country’s energy supply by 2030 (we are currently at about 7%)¬†and private investment. In recent years, more than 100 billion dollars have been invested in wind energy.

“Currently there are more jobs than we have graduates. The demand has never been higher. I have employers calling me every day looking for entry-level engineers and telling me that their needs will increase significantly in the coming years.

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“Hey guys, this is my friend James. He’s an aerospace engineer, which is one of the fastest growing jobs in the country. Watch this video to learn more.

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My name is James Van Dyken. I am a wind turbine engineer, and I work at Tule Wind Farm with Avangrid Renewables. The traditional way for this job is generally [that] you go to a turbine engineering school. It can be from six weeks to two years. My job is basically operations and maintenance. The hardest part of this job will be working near the blades. Of course, it is a dangerous job. Work in complex environments; it can be 115 degrees. It was

Critical is that you have good communication skills. The best part of my job is that I get to climb every day, [and] have a fantastic view. The aerospace industry is growing very fast. Opportunities are available across the United States. For all those who are interested in this work.

Contact us with any questions you may have. You can also drive to the park and talk to the engineers. When I entered this company, I started to be proud of what I do and I know that every day I am making a difference and helping our future generations.

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Interested in learning about our Wind Turbine and Communications Engineer training program? Fill out the form below to contact us! Washington State has a plan to reduce greenhouse gas emissions at the rate and speed that the climate crisis demands

The Clean Energy Transition Center and our partners were selected to provide technical assistance to the Washington State Department of Commerce to develop and design the State’s 2021 State Energy Strategy.

This project has allowed us to develop a statement on the specific policies and actions needed to decarbonize the buildings, transportation, electricity and industrial sectors in the next decade and beyond, not only in Washington , but in the North-West.

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Washington State Energy Executive Summary of Key Actions Section B – Deep Decarbonization Modeling Final Economic Report of the Deep Decarbonization Pathway Model Pacific Northwest National Laboratory Presentation to the CET Institute of Washington Policy Brief History

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From March to December 2020, the CETI team provided technical analysis to the Washington State Department of Commerce in support of a series of policies and actions to meet Washington’s greenhouse gas goals and achieve decarbonization in the state.

Conduct a meta-analysis of available empirical studies and strategies and inventory Washington’s policies, programs, strategies, investments and tools.

Conducting decarbonization modeling and analysis, building on existing efforts and guided by the technical advisory process and advisory board decisions

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Work with Business to create communication materials, including the design and preparation of the final report and supporting documents to launch the final State Energy Policy 2021.

The Clean Energy Transition Center facilitated the technical consultation, design and development process of the Washington State Energy Policy 2021 from March to December with the following consultants:

The Institute’s Northwest Clean Energy Atlas Project uses Tableau data visualization software to create an interactive atlas that explores energy data relevant to deep decarbonization in the Northwest. The challenges for the rapid energy transition are complex and constantly evolving. Having access to detailed, up-to-date and transparent energy system data is essential for policy makers, businesses, advocates and the public to make informed decisions and track the progress of the clean energy transition.

The Northwest Clean Energy Atlas was developed using a variety of data visualization tools, particularly Tableau’s platform of data analysis, graphing, and dashboarding tools. Atlas users see visuals with stories that explain the different sources and uses of energy in the Northwest over time.

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The model shows that the least expensive way to deep decarbonization in the Northwest involves coordination and cooperation between all states in the region. Currently, tracking and comparing how states produce, buy and use energy requires collecting data from different sources with different levels of information, accessibility and transparency. North west

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