Chongqing, China · Marine

Chongqing Chuandong marine nitrogen project

The project record lists two STD1400/95 marine nitrogen units with a combined design capacity of 2,800 Nm³/h.

01 / CONTEXT

Project overview

The project record lists two STD1400/95 marine nitrogen units with a combined design capacity of 2,800 Nm³/h.

02 / PROBLEM

Operational challenge

Restricted vessel space, vibration, inclination, salt exposure and continuous duty require layout, maintenance access and class documentation to advance together.

Marine footprint, safety, vibration, continuous supply and class-rule compliance.

03 / ENGINEERING

Engineered solution

Two STD1400/95 units provide redundancy, with interfaces, vibration isolation, ventilation and safety interlocks engineered to the vessel and controlled project documents.

Engineering, manufacturing and acceptance documents follow vessel, class and project requirements.

04 / VALUE

Project value

The vessel receives continuous, switchable nitrogen capacity, reducing shore-supply dependence and improving autonomous support for inerting or process demand.

PROJECT RECORD

A project record from system configuration to operational handover.

The record follows three evidence lines: configuration, manufacturing and integration, then installation and commissioning. Images come from existing equipment, integration or commissioning records; text is tied to the confirmed location, industry, model and quantity.

Nitrogen equipment manufacturing and assembly record
01Nitrogen equipment manufacturing and assembly record

Engineering record

System configuration and scope

The model, quantity and duty define the nitrogen unit, buffer storage, online analysis, controls and safety protection as one complete system.

Two STD1400/95 units provide redundancy, with interfaces, vibration isolation, ventilation and safety interlocks engineered to the vessel and controlled project documents.

System integration and dispatch preparation record
02System integration and dispatch preparation record

Engineering record

Manufacturing, integration and factory checks

Assembly, piping, electrical inspection and system testing follow controlled drawings. Packing, lifting, logistics and interfaces are reviewed for remote projects.

Engineering, manufacturing and acceptance documents follow vessel, class and project requirements.

Commissioning and service-access record
03Commissioning and service-access record

Engineering record

Commissioning and operational handover

Site work proceeds through hook-up, energisation, individual checks, integrated start-up, purity and flow verification, operator training and handover.

The vessel receives continuous, switchable nitrogen capacity, reducing shore-supply dependence and improving autonomous support for inerting or process demand.

PROJECT DELIVERY

From duty confirmation to stable production

Technical boundaries, delivery responsibilities and acceptance criteria are defined early to prevent interface rework on site.

  1. 01

    Duty analysis

    Confirm flow, purity, pressure, dew point, operating hours, peaks and current gas cost.

  2. 02

    Engineering and tender

    Define scope, select equipment, model energy use and support technical tender documents.

  3. 03

    Detailed design

    Confirm utilities, interfaces, controls, safety interlocks, civil works and piping.

  4. 04

    Manufacturing and inspection

    Build to controlled drawings and inspect key components, assembly, leakage, electrical and performance.

  5. 05

    Logistics and installation

    Coordinate packing, transport, lifting, piping, power and site readiness.

  6. 06

    Commissioning and acceptance

    Complete checks, integrated start-up, purity and flow verification, training and acceptance records.

  7. 07

    Production and warranty

    Track operating data and maintenance, with one-year contractual warranty and remote support.

ECONOMICS

Return-on-investment model

Model, quantity and design capacity come from the project record. The table uses only the provided RMB 0.35/m³ on-site cost and RMB 0.90–1.20/m³ delivered price to calculate an auditable annual cost spread.

Annual nitrogen volume12,740,000 m³
On-site generation costRMB 0.35 / m³
Delivered bulk nitrogenRMB 0.90–1.20 / m³
LOAD × HOURS65% × 7,000 h
Delivered unit priceAnnual delivered costAnnual on-site costAnnual cost spread
RMB 0.90 / m³RMB 11,466,000RMB 4,459,000RMB 7,007,000
RMB 1.05 / m³Midpoint scenarioRMB 13,377,000RMB 4,459,000RMB 8,918,000
RMB 1.20 / m³RMB 15,288,000RMB 4,459,000RMB 10,829,000

FORMULA

Full calculation

  1. Annual volume = design capacity × planned load × annual operating hours
  2. Annual delivered cost = annual volume × delivered nitrogen price
  3. Annual on-site cost = annual volume × RMB 0.35/m³
  4. Annual cost spread = delivered cost − on-site cost
  5. Annual net saving = cost spread − electricity adjustment − maintenance − finance and tax
  6. Simple payback = total tax-inclusive investment ÷ annual net saving; 5-year ROI = [5 × annual net saving − total investment] ÷ total investment × 100%

Contract value and actual customer gas bills are not public, so this page does not invent investment, payback or ROI. Provide total investment, local power price, operating hours and maintenance budget for a formal calculation.

By submitting, you agree that we may contact you only for this sizing and quotation.Final parameters and ROI are subject to verified site duty and written proposal.