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bentley.com article

Plant Design Software | Bentley Systems

https://www.bentley.com/software/plant-design

# Plant Design. ## What is plant design software? Plant Design software is used to help plant engineers and designers to design and build models and digital twins in a 3D plant design environment to model piping, mechanical, HVAC, and electrical components primarily in mining, water and wastewater, process, and power generation, in an open, intuitive, and collaborative environment. ## What is the best Plant Design Software​? Improve your plant design, analysis, and collaborative operations process with comprehensive plant design and engineering software. Quickly create 3D designs of your plant piping, HVAC, and mechanical and electrical equipment in an open and collaborative digital twin environment. Plant Design WorkSuite is a collection of plant design software solutions that helps to deliver mechanical, electrical, and structural engineers and designers the tools to design virtually any process plant project. Bentley Plant Design software is used by design engineers and owners across all aspects of the plant lifecycle, from initial design through to construction and operations.

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psr-inc.com article

HERA - Hydropower and Environmental Resource Assessment - PSR Energy

https://www.psr-inc.com/en/software/hera

Home > Software > **HERA – Hydropower and Environmental Resource Assessment**. They organize the main topics of PSR’s activities in the energy sector. Hydropower and Environmental Resource Assessment. ### Complete support for the development of hydropower and pumped-hydro projects, including economic viability assessments, socio-environmental impacts, and integrated decision-making support. HERA is software that supports the **development of hydropower and pumped-hydro storage projects**. It evaluates the hydropower potential of river basins, considering the economic viability of projects, as well as **social and environmental impacts**. HERA contributes to the decision-making process among stakeholders, which is complex as it usually involves conflicting interests, seeking to balance energy production with conservation. ### Engineering design. ### Structure design. Its objective is to select hydropower and pumped-hydro storage (PSH) projects to be developed, also considering other benefits for the electrical system, such as the integration of variable renewable sources and socio-environmental constraints. Praia de Botafogo, 370, 1º andar – 22250-040. Botafogo – Rio de Janeiro/RJ – Brasil.

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ilf.com article

Hydropower Engineering | ILF.com

https://www.ilf.com/business-areas/energy-climate-protection/hydropower-engin…

# Hydropower. ## Hydropower Engineering. The expansion of hydropower as a reliable, sustainable and long-term cost efficient source of energy is experiencing a renaissance in many regions. In the last 35 years ILF has successfully planned and designed 130 hydropower projects with capacities of up to 1,400 MW around the world. As a one-stop shop ILF provides integrated, interdisciplinary services for hydropower projects from the initial study, through the design and tender phase to commissioning and start-up. The early integration of all relevant stakeholders to increase a project’s acceptance and likelihood of approval, and the diligent preparation of Environmental and Social Impact Assessments in line with international standards (e.g. IFC, equator principles) complement ILF’s range of services. ILF renders all services required to successfully implement hydropower engineering projects. Project Services for Hydropower Plants:. * Studies of alternatives for hydropower plants using ILF’s special in-house software. Technical Services for Hydropower Plants:. ## Hydropower Plants.

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hydro.digitaltwin.labworks.org article

Hydro Digital Twin Dashboard

https://hydro.digitaltwin.labworks.org

A digital twin can help modernize hydropower. A digital twin (DT) couples a virtual computational model with a real-world physical system—in this case a

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pnnl.gov official

Digital Twins for Hydropower | PNNL

https://www.pnnl.gov/projects/digital-twins-hydropower

+ Hydropower and the Electric Grid. * Grid Integration of Renewable Energy. The Department of Energy Water Power Technologies Office has developed the Digital Twins for Hydropower framework to create a virtual platform to accelerate technology development for the hydropower industry. As the electric power grid prioritizes reliability and resilience while valuing an evolving mix of variable renewable energy sources, hydropower technology requires the integration of control systems, analytics, simulation, and optimization to remain competitive. Digital twins address challenges by creating digital profiles of historical and current hydropower plants based on virtual and real-time data and feedback to optimize hydropower operations. A digital twin (DT) is a virtual representation of a physical entity, and it is created with various data sources, like sensors, simulations, and data. Sponsored by the Department of Energy’s Water Power Technologies Office, Pacific Northwest National Laboratory (PNNL), and Oak Ridge National Laboratory (ORNL), the launch of the Digital Twins for Hydropower framework will affordably modernize the nation’s hydropower plant fleet.

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hydrogrid.ai article

Hydropower Plant Digital Planning Software: How It Improves Planning

https://www.hydrogrid.ai/blog/why-hydropower-planning-breaks-down

You pull last night's inflow report, cross-reference it against a market forecast open in another tab, update the dispatch spreadsheet, check environmental constraints from a separate document, and try to build a plan that holds, usually before the morning meeting, usually working with data that's already a few hours old by the time the plan is done. A price window opens at 14:00 that wasn't there when you filed the morning plan. Each of those events means starting over, or deciding it's not worth it and living with a plan you know isn't optimal. When inflow forecasts, market signals, and compliance constraints are connected in a single planning engine, you can make better decisions faster, without spending the first half of your shift reconciling conflicting inputs. The practical meaning is this: your forecasting data, your market data, and your compliance constraints all need to feed into the same planning engine at the same time.

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