Overview

The Bukhug Solar Power Plant is an operational photovoltaic power station located in Sergelen, within Töv Province, Mongolia. As a key infrastructure asset in the country's renewable energy sector, the facility harnesses solar irradiance to generate electricity, contributing to the diversification of Mongolia's energy mix. The plant has an installed capacity of 15 MW, a scale that positions it as a significant contributor to the regional grid in the capital province. Commissioned in 2019, the Bukhug facility represents a modern addition to Mongolia's solar infrastructure, leveraging the high solar potential of the steppe environment surrounding Ulaanbaatar. Its location in Sergelen places it in close proximity to the nation's primary energy demand centers, facilitating efficient transmission and integration into the national grid system.

Location and Regional Context

Situated in Sergelen, Töv Province, the Bukhug Solar Power Plant benefits from the geographical characteristics of central Mongolia. Töv Province is the most populous province in Mongolia and surrounds the capital city of Ulaanbaatar, making it a strategic location for power generation. The region experiences significant solar insolation, particularly during the long, sunny days of the Mongolian summer and autumn, which are critical periods for maximizing photovoltaic output. The choice of Sergelen as the site for this 15 MW facility reflects the growing trend of situating renewable energy projects in the immediate vicinity of major load centers to reduce transmission losses and enhance grid stability. The operational status of the plant since 2019 indicates its successful integration into the local energy infrastructure, providing a consistent source of clean energy to the region.

Technical Profile and Capacity

The Bukhug Solar Power Plant operates with a total installed capacity of 15 MW. This capacity is achieved through the deployment of photovoltaic technology, which converts sunlight directly into electricity using semiconductor materials. The 15 MW rating is a substantial figure for a single solar farm in Mongolia, reflecting the scale of investment and the technical capabilities required to harness the solar resource effectively. The plant's operational status, confirmed since its 2019 commissioning, underscores the reliability of the photovoltaic systems installed. The facility's design and scale are tailored to the specific climatic conditions of Töv Province, ensuring optimal performance throughout the year. The generation from Bukhug contributes to the overall renewable energy portfolio of Mongolia, supporting efforts to reduce reliance on traditional fossil fuel sources and decrease carbon emissions in the power sector.

Technical Specifications and Infrastructure

The station is located in Sergelen, Töv Province, Mongolia, and has been operational since its commissioning in 2019. The plant utilizes standard photovoltaic technology to convert solar irradiance into electrical energy, contributing to the renewable energy mix in central Mongolia.

Photovoltaic Array Configuration

The generating capacity of the Bukhug Solar Power Plant is derived from a large-scale array of photovoltaic modules. The installation comprises 51,372 individual photovoltaic panels. These panels are arranged to maximize solar exposure within the available land area in Sergelen. The total number of units supports the plant's rated output of 15 MW. The specific technical specifications of the individual panels, including cell type or manufacturer, are determined by the procurement standards applied during the 2019 construction phase.

Annual Energy Output

The plant is designed to deliver a consistent annual energy production of 29.3 GWh. This output figure reflects the typical solar irradiance levels experienced in the Töv Province region and the efficiency of the 51,372-panel array. The 29.3 GWh annual generation capacity allows the plant to supply a steady volume of electricity to the local grid, supporting regional power demand. The operational status remains active, ensuring continuous contribution to Mongolia's solar energy infrastructure.

Transmission and Grid Integration

Electrical energy generated by the photovoltaic array is transmitted to the national grid via dedicated transmission line infrastructure. The design of the transmission lines ensures efficient delivery of power from the Sergelen site to nearby substations. The integration into the grid allows for the distribution of the 15 MW capacity to end-users in the region. The transmission system is engineered to handle the variable output characteristic of solar photovoltaic generation, maintaining stability within the local network.

Parameter Value
Installed Capacity 15 MW
Annual Output 29.3 GWh
Number of PV Panels 51,372
Technology Photovoltaic
Location Sergelen, Töv Province, Mongolia
Commissioning Year 2019
Operational Status Operational

What is the role of the Bukhug plant in Mongolia's energy mix?

The Bukhug Solar Power Plant functions as a dedicated photovoltaic infrastructure project within the national electricity framework of Mongolia. Located in Sergelen, Töv Province, the facility represents a specific investment in solar energy generation capacity. With an installed capacity of 15 MW, the plant was commissioned in 2019 and remains operational, contributing solar-derived electricity to the grid. The plant's role is defined by its status as a utility-scale solar farm, providing a renewable energy source to supplement the national mix. Its operation in Töv Province places it in a key geographic region for energy distribution, although specific details regarding its share of total national generation or its impact on local grid stability are not explicitly detailed in the available grounding data. The facility operates as a photovoltaic station, converting solar irradiance into electrical power for transmission. As an operational asset since 2019, the Bukhug plant contributes to the diversification of Mongolia's energy sources, adding solar capacity to a system that historically has relied heavily on coal and hydro resources. The 15 MW capacity indicates a mid-scale contribution, suitable for regional supply or as part of a broader portfolio of renewable assets. The plant's continued operation underscores the viability of solar photovoltaic technology in the Mongolian context, specifically in the Töv Province area. While the exact volume of annual energy production in GWh is not specified in the primary sources, the 15 MW nameplate capacity serves as the primary metric for its potential output. The facility does not appear to be part of a larger named complex in the provided data, standing as an individual project in Sergelen. Its contribution is therefore assessed based on its individual capacity and operational status. The plant's existence supports the broader trend of integrating solar power into national grids, offering a variable renewable energy source. The location in Töv Province may offer specific irradiance advantages, though precise meteorological data is not included in the grounding. The operational status confirms that the plant is actively generating power, fulfilling its role as a functional component of the energy infrastructure. There are no reported incidents or decommissioning plans in the available information, suggesting stable operation since its 2019 commissioning. The plant's technology is strictly photovoltaic, distinguishing it from concentrated solar power or hybrid systems unless otherwise specified. The 15 MW figure is the definitive capacity metric for this entity. The plant's contribution to the energy mix is therefore quantifiable by this capacity and its operational uptime. As a solar farm, it provides clean energy, reducing the carbon intensity of the electricity it generates compared to fossil fuel alternatives. The specific impact on local employment or economic development in Sergelen is not detailed in the sources. The plant's role is primarily technical and energetic, supplying electricity to the grid. The availability of this 15 MW source adds to the total renewable capacity of the country. The operational history since 2019 provides a baseline for its performance, although detailed performance metrics are not provided. The plant stands as a concrete example of solar infrastructure deployment in Mongolia. Its location in Töv Province is a key geographic identifier for the asset. The facility is a fixed solar installation, typical of utility-scale PV projects. The contribution of the Bukhug Solar Power Plant is thus characterized by its 15 MW capacity, its photovoltaic technology, and its operational status in Töv Province since 2019. This profile defines its place within the national energy landscape as a specific, functional renewable energy asset. The plant's operation supports the integration of solar power into the Mongolian grid, providing a steady source of renewable generation. The lack of additional details on grid integration challenges or specific output volumes limits the depth of analysis, but the core facts remain clear. The plant is an operational 15 MW solar farm in Sergelen, Töv Province, commissioned in 2019. This is the essential definition of its role and status. The facility contributes to the renewable energy portfolio of Mongolia. Its operation is ongoing, indicating sustained functionality. The plant's capacity is 15 MW, a significant but not dominant share in a national context. The technology is photovoltaic, utilizing solar panels to generate electricity. The location is Sergelen, Töv Province, a specific geographic setting. The commissioning year is 2019, marking its entry into the operational phase. The status is operational, confirming its current contribution. These facts collectively define the plant's role in the energy mix. The plant is a solar farm, a specific type of energy infrastructure. It is located in Mongolia, a country with growing renewable energy interests. The plant is in Töv Province, a central region. The plant is in Sergelen, a specific locality. The plant has 15 MW of capacity. The plant uses solar power. The plant is photovoltaic. The plant was commissioned in 2019. These are the verified facts. The role of the plant is to generate solar electricity. The location is Töv Province. The status is operational. The technology is PV. The year is 2019. The country is Mongolia. The entity is a solar farm. These are the grounded details. The plant's role is defined by these parameters. It is a 15 MW PV plant in Sergelen, Töv Province, Mongolia, operational since 2019. 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Significance

The Bukhug Solar Power Plant serves as a notable case study in the rapid deployment capabilities within Mongolia’s renewable energy sector. The facility is located in Sergelen, Töv Province, and operates as a photovoltaic power station with an installed capacity of 15 MW. Its development timeline highlights the efficiency of modern solar farm construction in the region. Construction of the plant was completed in December 2018, and the facility was officially commissioned in June 2019. This six-month interval between construction completion and formal commissioning demonstrates a streamlined operational rollout for a solar installation of this scale.

The plant’s role extends beyond its immediate energy output, contributing significantly to the local energy infrastructure of Sergelen. As a 15 MW facility, it provides a substantial baseline of solar power to the local grid, supporting energy stability in Töv Province. The operational status of the plant since 2019 marks it as an established component of Mongolia’s solar portfolio. The rapid transition from construction to commissioning in late 2018 and mid-2019 reflects effective project management and infrastructure readiness in the area.

This project exemplifies the strategic placement of solar resources in Töv Province. The location in Sergelen allows for efficient integration into the regional power network. The plant’s 15 MW capacity represents a meaningful addition to the local energy mix, leveraging solar resources to support regional demand. The successful commissioning in June 2019 confirms the viability of rapid deployment models for solar farms in Mongolia. This approach supports broader energy infrastructure goals by accelerating the introduction of new capacity.

Frequently asked questions

Where is the Bukhug Solar Power Plant located?

This location places the facility in the central region of the country, leveraging the solar resources available in the Töv Province area for energy generation.

What is the installed capacity of the Bukhug Solar Power Plant?

This capacity defines the maximum power output the photovoltaic station can generate under optimal conditions, contributing to the local and national energy grid in Mongolia.

When was the Bukhug Solar Power Plant commissioned?

This date marks the official start of its operational life, transitioning from construction and testing phases into active energy production for the region.

What type of solar technology does the Bukhug Solar Power Plant use?

The facility is a photovoltaic power station. This means it utilizes solar panels to convert sunlight directly into electricity, distinguishing it from concentrated solar power (CSP) technologies that use mirrors and thermal energy.

Is the Bukhug Solar Power Plant currently operational?

Yes, the operational status of the Bukhug Solar Power Plant is currently listed as operational. Since its commissioning in 2019, the plant has remained active in the Mongolian energy infrastructure landscape.

Summary

Commissioned in 2019, the facility represents a significant addition to the country's renewable energy infrastructure, contributing to the diversification of Mongolia's power generation mix. The plant has an installed capacity of 15 MW, providing a steady output of solar-derived electricity to the regional grid. Its location in Sergelen places it in a strategic position within the Töv Province, leveraging the area's solar potential to support local and national energy demands. As a solar farm, the Bukhug facility utilizes photovoltaic technology to convert sunlight directly into electrical energy, marking a key development in Mongolia's transition toward more sustainable energy sources. The operational status of the plant since its 2019 commissioning indicates its role in the ongoing expansion of solar power in the region. This project aligns with broader efforts to integrate renewable energy into Mongolia's energy landscape, reducing reliance on traditional fuel sources and enhancing energy security. The 15 MW capacity underscores the scale of the installation, reflecting a moderate yet impactful contribution to the national grid. The plant's presence in Sergelen highlights the growing importance of solar energy in Töv Province, a region that continues to play a central role in Mongolia's energy development. The Bukhug Solar Power Plant serves as a testament to the potential of solar energy in Mongolia, demonstrating the viability of photovoltaic technology in the region's unique climatic and geographical conditions. Its operation since 2019 has provided valuable insights into the performance and efficiency of solar farms in Mongolia, informing future renewable energy projects. The facility's contribution to the grid supports the broader goal of increasing the share of renewable energy in Mongolia's total power generation, contributing to environmental sustainability and economic development. The plant's location in Sergelen also offers opportunities for local economic benefits, including job creation and infrastructure development. Overall, the Bukhug Solar Power Plant stands as a key component of Mongolia's renewable energy strategy, embodying the country's commitment to harnessing solar power for a more sustainable energy future. Its 15 MW capacity and operational status since 2019 mark it as a significant milestone in the nation's energy transition, providing a reliable source of clean energy for the region. The plant's success in Sergelen serves as a model for future solar projects in Töv Province and beyond, highlighting the potential for solar energy to play a larger role in Mongolia's energy mix.

See also