Rural water supply solutions

Understand the bottom line of ru££ral water supply quality, establish a water q→←uality ledger and update it in♣γ✔✘ a timely manner, better re≈‍✔flect the characteristics of rural €∞≥∏water supply demand, provide "pro☆αduct leading" comprehens₹γive, systematic, and customized solutionσ↓δ✔s, accelerate the construction of largεδ☆e-scale water supply en♥±₹♠gineering facilities in rural ar∏≠eas, and continuously improve ≤φthe level of rural water supply guarantee.

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Overview of the plan Customer Challenges Core advantages

Overview of the plan

Focusing on solving the problem of r&•>ural water supply quality, strenγ₩​✘gthening the protection o↑₽↓f rural drinking water source area∞δγs, supporting and impr €ε$oving purification and disinfection faciliti÷÷♠✔es and modular intelligent integrate∞☆λd equipment, establishing and i¶↔β€mproving a comprehensive water qualit≈✘y guarantee system from the sour☆≈ce to the leader, enhanc×≠ing and improving the long-term operation aΩ​©♣nd management mechanism of rural water supλ♠€>ply projects, and empowerinβα​∏g technology Continuously improve the¥÷ level of engineering management and pr‍₽otection to ensure the safety o≥♥λγf rural water supply qλ•☆™uality.

Overview of the plan

1

Rural water supply projects have a wide ran↔σ×ge and a large quantity

Rural residents present a considerab  ∑le geographical situation with multi™‌©ple points and wide distribution, and th↕∞★₩ere is still a gap between the investment in←♠ supporting infrastructure cons≥εtruction and actual dema₹•∞☆nd. There is a phenomenon of reconstruction and lσλφight management, low engineering γ construction standards, aε≠' nd incomplete supporting↓♦ facilities.

2

Uneven levels of operational manage≈​ment

The limitations of rural water supply project©✔¶s include multiple points£®€, wide areas, long linesβ÷'', and scattered distribution, incomplete inform ←∏ation and visualization foundatio&≤βns, strong reliance on ma ÷nual operation and mana≥¥gement, and a shortage of professiona↑¥>≤l personnel.

3

The information technology foundation is not yet ♥‍☆≥perfect

The design, construction, operation andφ‍↓ maintenance of small and medium-sized water p♠©¥lants are fragmented, and the inf₽¶ormationization level of water supply fφ£acilities is low, with poor inf ±∑£ormation exchange; The treatment process ÷≠∏is simple, with extenλ↓sive dosing, high dosage, high power consumpt✔‍>ion, and high operating costs.

Core advantages

Balancing urban and rural∞&←≤ areas for integrated development

Taking the city or county as a unit, we will makα™★e overall planning, adhere to the in' <tegration of water supply, water i ±☆ndustry, and construction mana®↓gement throughout the region, ←ε♠and build a stable and reliable water source♠α¥ with large-scale water supply as the main focε•→us, supplemented by small-scale wat✘★er supply projects, to help p&εromote the integrated developmπ÷↑<ent of urban and rural wate≠★♣r supply.

Comprehensive solution for∑ε$ the entire process

Provide a system solution for the entiγ$÷αre process of water supply from★ε÷ the water source to the₩€π​ faucet, provide a set of risk control plans or €✔plans that can predict various risks in advanceπ₽↓, establish a "one map" or "one network" for₩¶ water supply, connect the entire wat∏★er supply process, and achieve risk ma><nagement throughout the water s©&upply process.

Digitally empowering smart water s€™upply

Taking digitization, networking, and intellig©→↑ence as the main line, we have established importα≠☆ant links such as water sources, water plants, ✘₹ γand pipeline networks, as∞Ωε well as online monitoring  ∑> of key parameters such as water quantity, wate♦γ'≥r quality, water pressure, a♥'nd water intake metering, as well as the operati←£☆on status of major facilities and equ™∑ipment. We have strengthenε£‍βed the "operation and maintenance+supervisiε∏on+services" of the water supply indust"←δ↔ry, and established a systematic water supply •φ‍engineering construction based on oper​↔ation and maintenance.