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엔지니어링 도구 · 수처리

UV 소독 설계

입력된 UVT 용량 기준점으로 반응기 수, 예비 장치와 운전 전력을 검토합니다.

도시 상수도 정수단계 05 — Disinfection
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PROJECT · OPTIONAL

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Optional report context; it does not change calculations.Edit detailsHide details

01 · USER INPUT

Design basis and inputs

Leave this off for exact entered reference points. When on, document the source above and confirm it covers this reactor/model, target/reference dose, UVT basis, lamp/configuration, and operating envelope. ATLAS does not independently verify the source or interpolation rule.

Entered reactor performance/reference data

Enter two or more unique UVT points for one reactor at the entered reference dose. Rows can be entered in any order.

UVT (%)Entered reference flow capacity (m3/h/reactor)Remove

Use UVT values at the same wavelength and optical path length as the entered external reference data; EPA UVDGM commonly uses 254 nm and 1 cm. No absorbance or path-length conversion is applied. Each UVT must be greater than 0% and no more than 100%. Each entered reference flow capacity must be positive. Duplicate UVT values are rejected.

Runs locally in this browser from entered reactor performance/reference data.

02 · CALCULATED RESULT

Engineering results

Enter a design basis and reactor performance/reference data, then calculate a screening result.

03 · REPORTING

Exports and verification

Exports include the entered external reference basis, performance points, and calculated reactor sizing.

Verification suite

Calculation revision 1.2

58 focused fixtures: The focused UV suite covers entered-point sizing, reactor counts, optional power, point normalization, traceability, readable reports, and extrapolation guards; R1 authorization regressions are maintained in the Stage 05 audit suite..

이 엔지니어링 도구는 현재 영어로만 제공됩니다.

01

엔지니어링 근거

방법론

입력된 외부 UVT/용량 참조점으로 운전 및 예비 반응기 수를 산정하며 기본은 정확히 일치하는 점입니다. 대상 반응기와 운전 범위에 대해 문서화된 외부 자료가 허용할 때만 보간하며, 외삽이나 규제 선량 인정을 자동으로 하지 않습니다.

At an exact design UVT match, capacity is taken from that exact entered reactor performance/reference point.

For an intermediate UVT, bounded linear interpolation is available only when the user confirms that the external validation/reference source permits this capacity relationship for the applicable reactor/model, target/reference dose, UVT basis, lamp/configuration basis, and operating envelope, and documents that source. This interpolation is user-authorized from entered external reference data; ATLAS does not independently validate it. No extrapolation is used.

EPA UV reactor validation is based on reactor-specific validated operating conditions. Dose/RED relationships with flow, UVT, lamp status/intensity, and other operating parameters depend on the reactor and validation method. ATLAS does not derive a generic UV dose-monitoring equation. Boundedness alone does not establish that linear interpolation is valid.

UVT values must use the same wavelength and optical path length as the entered external reference data; no absorbance or path-length conversion is applied.

Duty reactor count = ceiling(plant design flow / capacity per reactor from entered external reference data). Installed count = duty reactors + entered standby reactors.

Operating duty power = duty reactors x entered per-reactor electrical power. Standby reactors are not assumed energized.

The user-selected target dose must match the user-entered reference-dose value; neither dose value is calculated by this tool.

범위 / 제한사항

  • 기본값은 입력 기준점과 정확히 일치하는 값입니다. 외부 자료가 보간을 허용한다고 사용자가 문서화한 경우에만 제한된 선형 보간을 사용합니다. 외삽이나 검증된 UV 선량 크레딧은 산정하지 않습니다.
  • This is a screening calculation over user-entered reactor performance/reference data. The tool does not verify the external source or the entered data and does not establish regulatory UV dose credit.
  • Lamp power, flow, and UVT alone are not used to derive UV dose. The tool does not model reactor physics or CFD.
  • No theoretical fluence, RED, Validation Factor, pathogen dose requirement, organism-specific log inactivation, dose-monitoring equation, lamp/intensity physics, organism credit, manufacturer selection, or regulatory compliance logic is calculated.
  • Use the UVT wavelength and path length specified by the external source (EPA UVDGM examples commonly use 254 nm and 1 cm).
02

엔지니어링 경로

상류 맥락

  • 목표 기반 고도 처리 기준 명확한 수질 목표가 뒷받침하는 경우에만 흡착 또는 산화 장벽을 검토합니다.

현재 도구의 설계 결정

  • UV 소독 설계 입력된 UVT 용량 기준점으로 반응기 수, 예비 장치와 운전 전력을 검토합니다.

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