Solution for Smart Pump House for Secondary WatΩ→πer Supply

Deeply delving into the field β★δ>of secondary water supp‌← 'ly, based on a deep understandin£γλ✔g of the secondary water ±€€♥supply industry, combin$>↔→ed with rich experience in≈₽ project implementation and model enginee€‌ring, we aim to achieve a truly ±'€♣"standardized, systematic, and turnkey" wor÷®kflow, ensuring sufficient water supp→♥ly and stable water pressure, an↑&←δd ensuring the safety and stability of wateγ'‍↔r use for residents. Provide us∑♦ers with customized, tail₩≈ored, and end-to-end solutions for₩£& smart pump rooms for secondary©₹ water supply.

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Overview of the plan Customer Challenges Core advantages

Overview of the plan

Deeply delving into the field of seα∏∏≤condary water supply, based on a d£λeep understanding of the secondary wate←÷≠r supply industry, combined with rich experiencε™≈e in project impleme​& ntation and model engineering, we ai∞≥→λm to achieve a truly "standardized, syst≥>ematic, and turnkey" workf∏σ♥low, ensuring sufficient water supply and stable >∏water pressure, and ensuring t∏→✘‍he safety and stabili✔γ→♣ty of water use for residents. Prov£<σ♠ide users with customized, tailored,&♥₽' and end-to-end solutions for sm÷σart pump rooms for secondary water supply.

Overview of the plan

1

Unreasonable design

Parameter values rely on "experience↓₽♣'" without standards, layout is unreason∑'able, and operational practicality is not co★©αnsidered

2

Installation not standardized

There is no professionalλ$ construction team, the construction ₩≤ process is not up to standard, pipelin εβ es are installed randomly, and water leaks

3

Low level of informatization

Low security level ca"δ‍‌n easily cause safety ac•&¶$cidents, lack of installation and ma→§&±intenance work order process tracking, and inab™‍ility to accurately Ω<×collect and analyze operationa©¶l data

4

Delayed operation and maintenance

Lack of preventive alarm measures, inabilδ₩ity to convey alarm messages, inability of §↑ operation and maintenance perso★"©nnel to determine the fault situation,βπ& resulting in inability tε♠→✘o solve the problem on site,π↑©φ delayed response and spe↕&£ed of operation and maintenance↔₽'

Core advantages

Design product standar'♣♣dization

The design parameter values should be comb₹£♦≈ined with actual situatio$§≈≈ns, continuously collecting operational&®∞ data from operation and ₹©maintenance research and in®™formation technology data, and establ αishing a value model. Fully o♠$≈ptimize the layout ofβ÷•™ space to ensure that equipment, wa" ter storage facilities,εγ and electrical facilities are rel'✘↕∑atively independent. Utiliz±​ e BIM technology, fully consider♥ ♦ pipeline layout avoidance and install•¶‌ation of maintenance '&§channels. Strictly control the product produc•♦♦♣tion line, 3D laser cutting, robot automaticββ  welding, and unify the fixture to ensγ ure process lean;

Parallel installation and decoratio λγn

The design parameter values should be combine↑≥d with actual situations, continuously collecting±±∏ operational data from operation and maintenance ≥α​€research and information technolo​←gy data, and establi≈δshing a value model. Fully optimize the layout of×☆ space to ensure that equipment, water sto♣φ rage facilities, and electrical §®facilities are relatively inde♥ ♠pendent. Utilize BIM technol γogy, fully consider pipeline layout avoid♣ ance and installation ♥ of maintenance channels. Strictly control¥$ the product production line, 3D laser ≥↕cutting, robot automatic welding, and un↑¶↔™ify the fixture to ensure proce 'ss lean;

Intelligent data operation

Clarify the top-level design of♣£ data collection and analysis, dete←₽rmine the docking protocol and address encoding,÷εΩ visualize the opera<λλαtional data, and then provi≤ ₽de easy to understand warning and a"∑larm information. When connecting with ♥&£↕data from other platforms, adopt a fully op¥♦πen data communication mode to av™β¶oid information silos.

Unmanned operation and maintenance

Operations and maintenance a×£€re divided into remote operations∏Ω✔ and on-site operations. Remote operations aΩ±•nd maintenance have p™∞÷₽reventive measures in ter<↔ms of time and space. When vulnerable parts‌→$λ reach their service l↔λ₽®ife or there are changes in ∞↑εspace, timely warnings are issued, and the prφπ§₹ogress of work orders is t£←←racked in real time to locate the nearest operat™₽±ions and maintenance engineer for repair×"♣. During on-site operation and maintγ∞enance, engineers will deε☆≠termine the cause of the fault based oσ↑n the warning and accurately c ✔arry fault resolution tools. After the '>♠operation and maintenance> ↔ are completed, the ←♥©∏work order and fault analysis will be backedφ© up and sent to the customeγ×↓✔r.