Sun Metals Solar Farm

Last updated

Sun Metals Solar Farm
Sun Metals Solar Farm
CountryAustralia
Location Townsville, Queensland
Coordinates 19°26′14″S146°41′46″E / 19.437318°S 146.696015°E / -19.437318; 146.696015
StatusOperational
Commission date May 2018
Owner(s) Sun Metals
Solar farm
Type Flat-panel PV
Collectors Over 1 million
Site area120 hectares (300 acres)
Power generation
Nameplate capacity 124 MW

The Sun Metals Solar Farm is a photovoltaic solar power station near Townsville in the Australian state of Queensland. It supplies some of the electricity consumed by the nearby Sun Metals (a subsidiary of Korea Zinc) zinc refinery as well as exporting to the National Electricity Market. When the Sun Metals Solar Farm started exporting electricity to the grid in May 2018, it took over from Clare Solar Farm as the largest capacity solar farm in Queensland. [1]

Construction was undertaken by RCR Tomlinson. [1] The solar farm is connected to the refinery's existing 33/132kV substation and consists of over 1 million solar panels. [2]

The photovoltaic cells are thin-film with single axis tracking. [3]

Related Research Articles

Photovoltaics Method to produce electricity from solar radiation

Photovoltaics (PV) is the conversion of light into electricity using semiconducting materials that exhibit the photovoltaic effect, a phenomenon studied in physics, photochemistry, and electrochemistry. The photovoltaic effect is commercially utilized for electricity generation and as photosensors. The power system is controlled using power electronics.

Solar panel Assembly of photovoltaic cells used to generate electrical power

A solar cell panel, solar electric panel, photo-voltaic (PV) module or solar panel is an assembly of photo-voltaic cells mounted in a framework for installation. Solar panels use sunlight as a source of energy to generate direct current electricity. A collection of PV modules is called a PV panel, and a system of PV panels is called an array. Arrays of a photovoltaic system supply solar electricity to electrical equipment.

Solar power in Australia Overview of solar power in Australia

Solar power in Australia is a fast growing industry. As of 2021, Australia's over 3.04 million solar PV installations had a combined capacity of 25,321 MW photovoltaic (PV) solar power, of which at least 4,613 MW were installed in the preceding 12 months. In 2019, 59 solar PV projects with a combined capacity of 2,881 MW were either under construction, constructed or due to start construction having reached financial closure. Solar accounted for 9.9% of Australia's total electrical energy production in 2020.

Solar power in Germany Overview of solar power in Germany

Solar power in Germany consists almost exclusively of photovoltaics (PV) and accounted for an estimated 8.2 percent of the country's gross-electricity generation in 2019. About 1.5 million photovoltaic systems were installed around the country in 2014, ranging from small rooftop systems, to medium commercial and large utility-scale solar parks. Germany's largest solar farms are located in Meuro, Neuhardenberg, and Templin with capacities over 100 MW.

Solar power in the United Kingdom Overview of solar power in the United Kingdom

Solar power represented a very small part of electricity production in the United Kingdom until the 2010s when it increased rapidly, thanks to feed-in tariff (FIT) subsidies and the falling cost of photovoltaic (PV) panels.

Solar power Conversion of energy from sunlight into electricity

Solar power is the conversion of renewable energy from sunlight into electricity, either directly using photovoltaics (PV), indirectly using concentrated solar power, or a combination. Photovoltaic cells convert light into an electric current using the photovoltaic effect. Concentrated solar power systems use lenses or mirrors and solar tracking systems to focus a large area of sunlight to a hot spot, often to drive a steam turbine.

Photovoltaic system Power system designed to supply usable electric power from solar energy

A photovoltaic system, also PV system or solar power system, is an electric power system designed to supply usable solar power by means of photovoltaics. It consists of an arrangement of several components, including solar panels to absorb and convert sunlight into electricity, a solar inverter to convert the output from direct to alternating current, as well as mounting, cabling, and other electrical accessories to set up a working system. It may also use a solar tracking system to improve the system's overall performance and include an integrated battery.

Energy in Queensland Overview of the production, consumption, import and export of energy and electricity in Queensland

Queensland's energy policy is based on the year 2000 document called the Queensland Energy Policy: A Cleaner Energy Strategy. The Queensland Government assists energy development through the Department of Energy and Water Supply. The state is noted for its significant contribution to coal mining in Australia. The primary fuel for electricity generation in the state is coal with coal seam gas becoming a significant fuel source. Queensland has 98% of Australia's reserves of coal seam gas. An expansion of energy-intensive industries such as mining, economic growth and population growth have created increased demand for energy in Queensland.

Solar power in California Overview of solar power in the U.S. state of California

Solar power in California includes utility-scale solar power plants as well as local distributed generation, mostly from rooftop photovoltaics. It has been growing rapidly because of high insolation, community support, declining solar costs, and a Renewable Portfolio Standard which requires that 33% of California's electricity come from renewable resources by 2020, and 60% by 2030. Much of this is expected to come from solar power via photovoltaic facilities or concentrated solar power facilities.

Solar power in Hawaii Overview of solar power in the U.S. state of Hawaii

The energy sector in Hawaii has rapidly adopted solar power due to the high costs of electricity, and good solar resources, and has one of the highest per capita rates of solar power in the United States. Hawaii's imported energy costs, mostly for imported petroleum and coal, are three to four times higher than the mainland, so Hawaii has motivation to become one of the highest users of solar energy. Hawaii was the first state in the United States to reach grid parity for photovoltaics. Its tropical location provides abundant ambient energy.

Rooftop solar power

A rooftop solar power system, or rooftop PV system, is a photovoltaic (PV) system that has its electricity-generating solar panels mounted on the rooftop of a residential or commercial building or structure. The various components of such a system include photovoltaic modules, mounting systems, cables, solar inverters and other electrical accessories.

Grid-connected photovoltaic power system

A grid-connected photovoltaic system, or grid-connected PV system is an electricity generating solar PV power system that is connected to the utility grid. A grid-connected PV system consists of solar panels, one or several inverters, a power conditioning unit and grid connection equipment. They range from small residential and commercial rooftop systems to large utility-scale solar power stations. When conditions are right, the grid-connected PV system supplies the excess power, beyond consumption by the connected load, to the utility grid.

Photovoltaic power station Large-scale photovoltaic system

A photovoltaic power station, also known as a solar park, solar farm, or solar power plant, is a large-scale grid-connected photovoltaic power system designed for the supply of merchant power. They are differentiated from most building-mounted and other decentralised solar power because they supply power at the utility level, rather than to a local user or users. The generic expression utility-scale solar is sometimes used to describe this type of project.

Solar power in Illinois has been increasing, as the cost of photovoltaics has decreased. As of the end of 2020, Illinois had 465 megawatts (MW) of installed photovoltaic and concentrated solar power capacity combined employing over 5,200 jobs. Illinois adopted a net metering rule which allows customers generating up to 40 kW to use net metering, with the kilowatt hour surplus rolled over each month, and lost at the end of either April or October, as selected by the customer. In 2011, the limit was raised to 2 MW, but is not net metering, as the term is commonly known, as it uses two meters for systems larger than 40 kW.

Solar power in New Zealand Overview of solar power in New Zealand

Solar power in New Zealand is on the rise, but there are no of subsidies or intervention from the New Zealand Government. As at the end of December 2021, New Zealand has 186.7 MW of grid-connected photovoltaic (PV) solar power installed, of which 72.4 MW (8.8%) was installed in the preceding 24 months. In the year to December 2020, 159,000 megawatt-hours of electricity was generated by solar power, or 0.37% of all electricity generated in the country.

In 2018 Chile produced about 7% of its electricity from solar power. As of year end, it had 2137 MW of solar PV capacity. In July 2020 installed solar capacity had risen to 3104 MW, with another 2801 MW under construction. At the end of 2021 Chile was the 22nd country in the world in terms of installed solar energy.

Gannawarra Solar Farm is a photovoltaic solar power station in the Gannawarra Shire, 13 kilometres (8.1 mi) west of Kerang in the Australian state of Victoria. It generates up to 60 MWdc electricity and exports up to 50.61 MWAC to the National Electricity Market at 66 kV.

Darling Downs Solar Farm is a 110MW photovoltaic solar power station in Queensland, Australia developed by APA Group 45 km west of Dalby in the Darling Downs region next to the Darling Downs Power Station. All of the power it produces will be sold to Origin Energy until 2030. It connects to the national electricity grid through Powerlink's Braemar substation. It has approximately 430,000 solar panels on an area of approximately 250 hectares.

Emerald Solar Park is a photovoltaic solar power station near Emerald in Queensland, Australia. It was developed by RES Australia who then sold it to Lighthouse Solar Fund. It delivers up to 72 MW AC of electricity to the National Electricity Market. The entire production of the solar farm is contracted to be supplied to Telstra.

References

  1. 1 2 "Queensland's biggest solar farm starts generating to grid". RenewEconomy . 31 May 2018. Retrieved 4 August 2018.
  2. "Sun Metals Solar Farm". RCR Tomlinson . Retrieved 4 August 2018.
  3. "Sun Metals Townsville Solar Farm". POWER PLANTS. Retrieved 27 July 2018.