Sudan Wastewater Battery Storage 100kW+215kWh | Mars Solar

プロジェクト情報

月々の電気料金節約額
$7,000 / Month
Diesel Generator Rate
$0.45 / kWh
回収期間
12 Months
システム全体の投資額
$60,000~$70,000
プロジェクトを開始する

プロジェクト概要

This 100kW 215kWh battery storage Sudan installation powers a municipal wastewater treatment plant operating 24/7 year-round. The system supports critical processes including submersible sewage pumps, aeration blowers, sludge dewatering, UV disinfection, and SCADA controls. The facility consumes 30,000–50,000 kWh monthly, making reliable power essential for compliance and public health.

Sudan’s grid suffers from frequency fluctuations, voltage drops, and seasonal outages. The 100kW 215kWh battery storage Sudan system provides three key functions: peak shaving to reduce diesel costs, power quality correction to protect equipment, and seamless backup power during outages.

Mars Solar dispatched 2 senior engineers for 8-day on-site installation. The team profiled load curves using EMS loggers, calibrated BMS parameters to match pump cycles, and integrated the storage cabinet with existing switchboards. The 215kWh capacity absorbs 100kW pump surges and provides 2+ hours backup for critical processes.

The project delivers $7,000 monthly savings at Sudan’s $0.45/kWh diesel rate. With $84,000 investment, payback is achieved in 12 months. The system includes iOS/Android apps for real-time monitoring, automatic monthly reports via WhatsApp and email, and 10-year warranty coverage.

利点

Engineered for extreme heat (up to 55°C ambient) — built-in thermal management system ensures stable battery performance in Sudan’s hot climate
Sand-dust and humidity resistant enclosure (IP55-rated) — designed for Sudan’s arid climate and seasonal khamsin dust storms
Engineer-adapted to wastewater treatment equipment — BMS parameters and dispatch algorithm calibrated to plant’s specific pump, aerator, and blower load profile for seamless integration
Mobile APP real-time monitoring (iOS & Android) — plant manager can check battery status, load profile, and system alerts from anywhere, with automatic monthly reports via WhatsApp and email
Factory pre-tested + 72-hour continuous stability check before shipment — plug-and-play containerized solution for fast on-site installation with zero downtime
On-site engineer installation — 2 senior Mars Solar engineers dispatched to Sudan for full commissioning, load profiling, BMS calibration, and local operations training

よくある質問

Why does a wastewater treatment plant in Sudan need a 100kW + 215kWh battery storage system?

Wastewater treatment plants are among the most energy-intensive municipal facilities — running large submersible pumps, aeration blowers, sludge dewatering equipment, and UV disinfection systems 24/7. A plant of this size in Sudan typically consumes 30,000–50,000 kWh per month. Sudan’s grid experiences frequent voltage fluctuations and seasonal outages, particularly during summer peak demand. Any interruption to aeration can cause biological treatment failure within hours, risking regulatory violations and environmental harm. The 100kW / 215kWh battery system addresses all three challenges: peak shaving to reduce demand charges, power quality correction to protect motor drives and VFDs, and seamless backup power to ensure zero process interruption — protecting both operations and public health.

How did Mars Solar engineers adapt the storage system to the wastewater plant’s specific equipment?

The Mars Solar engineering team spent the first two days on-site profiling the plant’s actual load curve — logging pump motor starts, aeration blower cycles, and dewatering equipment draw — before calibrating the Battery Management System (BMS) and dispatch algorithm. The 215kWh storage capacity was configured to absorb peak pump surge currents (up to 100kW instantaneous), sustain critical aeration loads during grid disturbances, and provide 2+ hours of full backup for the plant’s most critical treatment processes. This site-specific adaptation is what distinguishes a Mars Solar installation from a standard battery deployment — the system is not just connected, it is integrated.

What does Mars Solar’s on-site engineer installation include for this Sudan wastewater project?

Mars Solarが出荷されました 2 senior engineers (1 lead electrical engineer + 1 field service technician) from China to the plant site in Sudan. Our on-site team handled: electrical connection and switchboard integration, BMS parameter configuration to match the plant’s load profile, grid synchronization and protective relay testing, inverter commissioning, EMS network configuration, mobile APP setup on the facility manager’s phone, and final acceptance testing. The full installation was completed in 8 days — with zero downtime to the treatment plant’s operations. The plant’s operations director confirmed full commissioning and the facility manager received hands-on training via the mobile app.

How does the battery system handle Sudan’s extreme heat and dust conditions?

The Mars Solar 100kW / 215kWh storage cabinet is engineered for harsh climate operation with a built-in precision air conditioning and ventilation thermal management system rated for ambient temperatures up to 55°C — well above typical peak temperatures in central Sudan. The enclosure is rated IP55 for protection against sand-dust ingress and driving rain, critical for the khamsin dust storm season (March–June). Battery cells are arranged with sufficient spacing and active airflow to prevent thermal runaway, and the BMS enforces strict temperature limits on charge and discharge rates during extreme heat events. The EMS also logs thermal events for predictive maintenance planning.

What warranty and after-sales service are provided for this Sudan installation?

The lithium battery storage system includes a 10年保証 (or 6,000 charge/discharge cycles, whichever comes first). Mars Solar’s standard service package for international installations includes: factory pre-testing and 72-hour continuous stability check before shipment, on-site installation by 2 senior engineers in 8 days with zero downtime, BMS calibration to the plant’s specific load profile, grid synchronization and protective relay testing, EMS commissioning and mobile APP setup, operator training, and ongoing remote monitoring with monthly performance reports delivered via WhatsApp and email. The plant manager has praised the seamless integration and the reliability of real-time mobile monitoring for ensuring continuous treatment compliance.

Can the battery storage system be expanded or combined with solar PV in the future?

Yes. The Mars Solar hybrid inverter in this installation supports grid-tied, off-grid, and hybrid operating modes — meaning the storage system can be paired with solar PV in the future without hardware replacement. If the wastewater plant decides to add rooftop or ground-mount solar panels in the future, the existing 100kW / 215kWh battery system can be integrated as part of a solar+storage microgrid. Mars Solar’s engineering team can provide a full system expansion feasibility study and design, building on the existing infrastructure and EMS platform already commissioned in this project.

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