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openflow
Modeling Software for Sanitary and Combined Sewers If building and preparing your sewer models feels like a never-ending task, SewerGEMS software is for you. SewerGEMS streamlines the modeling process, so that you have more time for solving wastewater engineering problems, such as improving capacity and limiting sewer overflows, which ultimately enable utilities to comply with sewer regulations set by regulatory agencies. For more than three decades, SewerGEMS has provided utilities and wastewater professionals like you with advanced engineering tools to plan, design, maintain, and operate sanitary and combined sewer systems, including: Engineering decision guidance tools: Leverage SewerGEMS’ what-if scenario management tools to gain a better understanding of the behavior of your wastewater system, improving decision making and response time.Improved model accuracy: A well calibrated model decreases the risks of making poor decisions by ensuring that the model uses the best available data. SewerGEMS calibration tools such as SCADA integration enable you to rely on your model results.Increased information mobility: SewerGEMS’ full GIS, CAD, and SCADA interoperability enables the cost-effective sharing and flow of information between utilities’ design, engineering, GIS, and operation departments, and their consultants. You can leverage the data that the utility invested in once and reuse across departments.SewerGEMS is a superset of SewerCAD. CAPABILITIES Allocate and estimate sanitary loads Apply hydrographs, patterned loads, and unit loads using a comprehensive and customizable engineering library. Use the LoadBuilder module to leverage consumption, flow monitoring, land use, or census data in your GIS to automatically estimate and import sanitary loads for your sewer model.Allocate and estimate stormwater loads Load models with wet weather runoff flows derived from precipitation using the built-in rainfall distributions or user-defined rainfall events. Runoff flows are computed using the most appropriate runoff method for the project.Analyze hydraulics and combined sewer overflows Easily switch among multiple solvers according to the type of system you are analyzing: Saint Venant equations, convex/gradually varied flow solver (steady-state analysis for extreme flow conditions and extended period simulations), and rational/gradually varied flow solver.Analyze hydrogen sulfide formation Identify areas in your network that are at risk of damage from hydrogen sulfide (H2S) formation, which can lead to potential collapses if not addressed. Produce average concentration runs, display result maps of the network, and compare H2S formation according to various conditions such as temperature.Analyze inlet capacities Calculate the proportion of stormwater runoff that will enter an inlet versus the proportion that will be carried downstream in a gutter or pond on the road surface. Quickly confirm that the spread of flow in a gutter doesn’t exceed design requirements.Build and manage hydraulic models Jumpstart the model-building process and manage your model effectively, so that you can focus on making the best engineering decisions. Leverage and import virtually any external data format, which maximizes ROI on geospatial and engineering data, and automate terrain extraction and node allocation.Design and analyze culverts Select from a library of standard culvert shapes, materials, and entrance conditions, then compute culvert headwater and tailwater elevations using calculation methodologies outlined in Hydraulic Design Series Number 5 from the U.S. Federal Highway Administration.Design and analyze low impact development controls Model the effect that low impact development controls have in retaining runoff before it enters the stormwater system.Design and analyze pond and outlets Leverage PondMaker’s guiding process through the confusing maze of pond design steps by following the step-by-step process that provides constant feedback on how the design is progressing. Set the maximum outflow rate, estimate storage, and check the outlet design and final design.Design sanitary sewers Minimize capital investments by simply entering your design restrictions: velocities, slopes, cover depths, and pipe and manhole matching offsets. SewerCAD/SewerGEMS recommends the most cost-effective pipe sizes and invert elevations, avoiding unnecessary pipe trench excavation, while meeting design restrictions.Design stormwater systems Minimize capital investments by simply entering your design restrictions: velocities, slopes, cover depths, and pipe and inlet matching offsets. The software product recommends the most cost-effective pipe sizes and invert elevations, avoiding unnecessary pipe trench excavation, while meeting design restrictions.Simulate water quality Simulate the generation, inflow, and transportation and treatment of any number of user-defined pollutants, such as total suspended solids or heavy metals.
SewerGems Perpetual License- 1000 Pipe

INR 882507 INR 892507
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WaterGEMS provides you with a comprehensive yet easy-to-use decision-support tool for water distribution networks. The software helps improve your knowledge of how infrastructure behaves as a system, how it reacts to operational strategies, and how it should grow as population and demands increase. From fire flow and water quality simulations, to criticality and energy cost analysis, WaterGEMS has everything you need in a flexible multi-platform environment. Read more body content will visible when click on read more link Read more link to show and hide read more body content CAPABILITIES Analyze pipe and valve criticality Find the weak links in water distribution systems and assess the adequacy of isolation valves. Evaluate the ability to isolate portions of the system and serve customers using different valve locations. WaterCAD/WaterGEMS automatically generates network segments once the isolation valve data is supplied.Assess fire flow capacity Use a water distribution hydraulic model to access and identify where fire protection is inadequate. Design improvements such as the sizing and location of pipes, pumps, and tanks in order to meet fire-flow and protection requirements.Build and manage hydraulic models Jumpstart the model-building process and manage your model effectively, so that you can focus on making the best engineering decisions. Leverage and import virtually any external data format, which maximizes ROI on geospatial and engineering data, and automate terrain extraction and node allocation.Design water distribution networks Use hydraulic model results to help optimize the design of complex water distribution systems and utilize built-in scenario management features to keep track of design alternatives. Alternatively, WaterGEMS users can optimize the design for you using the built-in Darwin Designer network optimization tool.Develop flushing plans Optimize flushing programs with multiple conventional and unidirectional flushing events in a single run. Increase velocity in mains to flush out solids and stale water, with the primary indicator of the success of flushing being the maximum velocity achieved in any pipe during the flushing operation.Identify water leakage Conserve water and increase revenues by reducing water leakage. Leverage flow and pressure data to find locations for detailed sonic leak detection (WaterGEMS only). Study the amount by which you can expect to reduce leakage by reducing pressure and see the impact on customer service.Manage energy use Model pumps accurately using hydraulic modeling, including complex pump combinations and variable speed pumps, to understand the impact that different pump operational strategies have on energy usage. Minimize energy related to pumping costs while maximizing system performance.Prioritize pipe renewal Identify the pipes that should be considered for replacement or repair. Pipe links are ranked based on several aspects, including property- and performance-based criteria. Benefits that result include improved asset planning, increased distribution capacity, and maximum returns on capital expenditures.Simulate networks in real time Connect your calibrated hydraulic model to your SCADA system so that the initial boundary conditions for the model are automatically updated with the latest real-time data. Use this real-time model to keep an eye on the system and help ensure it is operating effectively.
WaterGEMS Perpetual License 1000 Pipes

INR 882507 INR 892507
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INR 882507 INR 892507
You Save: INR 10000 (1.12%)

INR 882507 INR 892507
You Save: INR 10000 (1.12%)

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