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エンジニアリングツール · 水処理

UV消毒設計

入力した UVT 容量の参照点から、リアクター数、予備機数、運転電力をスクリーニングします。

都市飲料水の浄化段階 05 — Disinfection
状態
公開中
PROJECT · OPTIONAL

Project metadata

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..

このエンジニアリングツールは現在、英語版のみ提供しています。

01

エンジニアリングの根拠

方法

入力された外部 UVT/容量参照点から稼働・予備リアクター数を算定し、既定では完全一致点を使用します。補間は、対象リアクターと運転範囲について外部資料が明示的に認める場合のみ可能です。外挿や規制用量クレジットの自動判定は行いません。

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.

範囲 / 制限事項

  • 既定では入力値と完全一致する参照点を使います。線形補間は外部資料で許可されていることをユーザーが記録した場合のみ、範囲内で行えます。外挿や検証済み UV 線量の認定は行いません。
  • 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

エンジニアリングパス

上流の前提

  • 対象を定めた高度処理の基準 特定の水質目標が裏付ける場合に限り、吸着または酸化バリアへ進みます。

このツールでの設計判断

  • UV消毒設計 入力した UVT 容量の参照点から、リアクター数、予備機数、運転電力をスクリーニングします。

下流の設計ステップ

  • 浄水池・貯留水の更新設計 選択した消毒方式を貯留と最終水質確認に合わせます。スクリーニング結果は規制クレジットではありません。