الوصف
ضاغط النيتروجين DW-100/8 – معزز نيتروجين فائق السعة وخالٍ من الزيت للبنية التحتية الصناعية للغازات ذات المتطلبات العالية
Engineered to deliver 100 m³/min at 0.80 MPa discharge pressure, the DW-100/8 is a two-stage, two-row oil-free piston nitrogen compressor purpose-built for mega-scale cryogenic air separation, high-pressure VPSA booster stations, and critical petrochemical pipeline distribution networks. Zero lubricant contamination, continuous-duty rated, and designed for 24/7 industrial reliability at the highest flow capacities.

نظرة عامة على المنتج
ال DW-100/8 nitrogen compressor represents the pinnacle of our oil-free piston compressor engineering, occupying the ultra-high-capacity segment of our industrial nitrogen booster portfolio. With an extraordinary 100 m³/min capacity paired with a robust 0.80 MPa discharge pressure, this unit is engineered to serve the most demanding nitrogen distribution requirements in mega-scale industrial gas infrastructure worldwide.
What fundamentally distinguishes the DW-100/8 from all conventional alternatives is its completely oil-free compression pathway. The piston rings and rider bands are fabricated from proprietary self-lubricating PTFE composite materials that operate without any hydrocarbon lubricants whatsoever. This intrinsic oil-free architecture guarantees the nitrogen product stream remains absolutely uncontaminated, achieving شهادة ISO 8573-1 من الفئة 0 without any downstream purification equipment. For operators across food processing, pharmaceutical manufacturing, electronics fabrication, and petrochemical processing, this eliminates both the capital investment and ongoing operational burden of oil-filtration systems.
The compressor utilizes a two-stage, two-row (二列二级) configuration that optimally distributes the substantial pressure ratio across two compression cylinders. This staged thermodynamic approach is critical for managing the thermal loads inherent to 0.80 MPa discharge pressure while preserving the dimensional integrity of the PTFE sealing elements. Each stage incorporates an independent high-efficiency intercooler, ensuring gas temperatures remain well within safe operating envelopes even during sustained maximum-capacity operation. The massive cast-iron frame and dynamically balanced forged steel crankshaft are rated for an exceptional service life of 120,000+ hours under rigorous industrial maintenance protocols.

Technical Specifications – DW-100/8
| المعلمة | قيمة | وحدة |
|---|---|---|
| نموذج | DW-100/8 | – |
| نمط | مرحلتين، صفين (二列二级) | – |
| سعة | 100 | م³/دقيقة |
| ضغط التفريغ | 0.80 | ميجا باسكال |
| حجم الضاغط (الطول × العرض × الارتفاع) | 5456 × 3518 × 2535 | مم |
| وزن | 13.00 | ت |
| قوة | 600 | كيلوواط |
| الجهد االكهربى | 6 آلاف أو 10 آلاف | V |
| وسط غازي | النيتروجين (N₂) | – |
| تشحيم | خالٍ من الزيوت | – |
* جميع المواصفات مصنفة وفقًا لظروف مرجعية قياسية (ISO 1217، الملحق ج). قد يختلف الأداء الفعلي بناءً على ارتفاع الموقع ودرجة الحرارة المحيطة وظروف المدخل.
الميزات الرئيسية والمزايا الهندسية
1. Ultra-High-Capacity Oil-Free Compression
The DW-100/8 employs a proprietary نظام حلقات المكبس ذاتية التشحيم ونظام حزام التوجيه manufactured from advanced PTFE composites reinforced with glass fiber and bronze particulates. This material formulation achieves a coefficient of friction below 0.06 without any external hydrocarbon lubrication, completely eliminating the risk of oil vapor carryover into the nitrogen product stream. At 100 m³/min capacity, even trace oil contamination would represent a massive quality failure. The DW-100/8’s native الامتثال لمعيار ISO 8573-1 الفئة 0 eliminates the need for downstream oil-filtration equipment that would be physically enormous and energy-intensive at this flow scale. The PTFE rings are specifically engineered for the elevated discharge temperatures associated with 0.80 MPa operation, maintaining dimensional stability up to 180°C.
2. Two-Stage Thermodynamic Optimization for High Pressure
ال two-stage compression architecture of the DW-100/8 is thermodynamically optimized for the demanding 0.80 MPa discharge pressure target. By dividing the substantial overall pressure ratio between a large-bore low-pressure cylinder and a high-pressure cylinder, the compressor achieves a significantly lower mean effective temperature per stage. A massive high-efficiency shell-and-tube intercooler between stages removes the heat of compression, maintaining discharge temperatures below 155°C even at maximum continuous load. This thermal management is absolutely critical for preserving PTFE ring integrity at this capacity and pressure combination, and extends valve plate service life by approximately 40% compared to single-stage designs attempting equivalent pressure ratios.
3. Massive Cast-Iron Frame with Force Balance Engineering
الهيكل الرئيسي مصبوب من حديد الزهر الرمادي GG25 (equivalent to ASTM A48 Class 30B) with integral cooling water passages. The two-row opposed-cylinder arrangement provides natural first-order force cancellation, reducing the unbalanced inertia forces transmitted to the foundation by over 80% compared to single-row designs. Despite the unit’s substantial 13.00-tonne weight, this mechanical advantage permits installation on a reinforced concrete inertia block of approximately 20 tonnes—significantly lighter than would be required for a single-row compressor of equivalent capacity. The massive frame dimensions of 5456 × 3518 × 2535 mm reflect the engineering requirements of handling 100 m³/min flow while maintaining the precision clearances necessary for oil-free piston operation.
4. High-Power Medium-Voltage Motor Drive
The DW-100/8 is driven by a 600 kW medium-voltage induction motor available in either 6kV or 10kV configurations, conforming to IEC 60034-1 efficiency class IE3. At this power level, medium-voltage drive is not merely preferred—it is essential. A 380V motor would require impractical cable sizes (exceeding 400 mm² cross-section) and massive low-voltage switchgear. The 6kV or 10kV configuration integrates directly into industrial medium-voltage distribution networks, reducing electrical infrastructure costs, minimizing I²R losses in power cabling, and improving overall system energy efficiency. For mega-scale industrial facilities where 6kV or 10kV bus systems are standard, the DW-100/8 offers seamless electrical compatibility.

سيناريوهات التطبيق
Mega-Scale Cryogenic Air Separation Plants
In mega-scale cryogenic ASU facilities producing 5,000–15,000 Nm³/h of gaseous nitrogen, the DW-100/8 serves as the primary high-capacity nitrogen booster between the cold box and the distribution header. Its 100 m³/min capacity matches the output of the largest single-train ASUs, while the 0.80 MPa discharge pressure provides sufficient head for long-distance pipeline distribution to downstream consumers across vast industrial complexes. The oil-free design is absolutely critical in these applications because any oil contamination would compromise nitrogen purity across the entire distribution network, affecting multiple downstream processes including semiconductor manufacturing, pharmaceutical production, and food processing facilities served by the same header.

Large VPSA Nitrogen Booster Stations
For large VPSA nitrogen generators producing 99.5–99.9% purity nitrogen at near-atmospheric pressure, the DW-100/8 nitrogen booster compresses the low-pressure product to 0.80 MPa for high-pressure distribution across extensive industrial campuses. The 100 m³/min capacity can serve multiple large VPSA trains simultaneously, or provide redundancy for critical nitrogen supply systems. The oil-free compression path is non-negotiable in VPSA service because hydrocarbon contamination would irreversibly poison the carbon molecular sieve adsorbent, degrading separation efficiency across the entire generator system and necessitating costly adsorbent replacement that could exceed $200,000 for large installations.
Petrochemical Complex High-Pressure Nitrogen Distribution
In integrated petrochemical complexes, the DW-100/8 provides the backbone of the high-pressure nitrogen distribution infrastructure. The 0.80 MPa discharge pressure is sufficient to overcome pipeline friction losses across multi-kilometer distribution networks, serving dozens of process units including ethylene crackers, polyethylene reactors, aromatics complexes, and sulfur recovery units. The 100 m³/min capacity can support simultaneous nitrogen demands from multiple process units during startup, shutdown, and emergency inerting procedures. The oil-free certification is mandatory because nitrogen contacts catalyst beds, enters process streams, and provides blanketing for sensitive chemical storage—all of which must remain absolutely hydrocarbon-free.

LNG Liquefaction & Regasification Terminal Nitrogen Supply
LNG terminals require enormous volumes of nitrogen for pipeline purging, tank inerting, and emergency nitrogen injection into cryogenic storage tanks. The DW-100/8’s 100 m³/min capacity can maintain nitrogen supply during the most demanding operational scenarios, including full-terminal nitrogen purge operations that may require continuous high-flow nitrogen for several days. The 0.80 MPa discharge pressure provides adequate head to overcome the hydrostatic pressure of LNG storage tanks and maintain positive inert gas pressure throughout the terminal’s distribution network. The oil-free design prevents hydrocarbon contamination of LNG product, which would compromise cryogenic properties and violate LNG quality specifications.
المواد والإنشاءات
The DW-100/8 is constructed from premium materials selected for nitrogen compatibility, high-pressure service, and extended operational life at ultra-high capacity:
| عنصر | مادة | مواصفة |
|---|---|---|
| كتلة الأسطوانات | حديد الزهر الرمادي | GG25 / HT250, integral cooling water jackets |
| عمود المرفق | فولاذ سبيكي مطروق | 42CrMo4, Q&T, ISO 1940 G2.5 dynamically balanced |
| حلقات المكبس | مركب من البرونز والزجاج وPTFE | Self-lubricating, high-temp rated to 180°C |
| أساور رايدر | مركب PTFE | Piston guidance, anti-scuffing, wear rate <0.04 mm/1000h |
| صفائح الصمامات | الفولاذ المقاوم للصدأ | SS316, concentric ring spring-loaded design |
| أذرع التوصيل | فولاذ مطروق مع محامل بابيت | طرف كبير مصنّع بدقة ومُشحّم بالزيت |
| مبرد داخلي | غلاف من الفولاذ الكربوني / أنابيب من الفولاذ المقاوم للصدأ 316 | ASME VIII القسم 1، اختبار هيدروديناميكي 1.5×، تثبيت لمدة 30 دقيقة |
| مبرد لاحق | غلاف من الفولاذ الكربوني / أنابيب من الفولاذ المقاوم للصدأ 316 | Finned tube design, 32°C cooling water rated |
| الإطار الأساسي | الفولاذ الإنشائي | Welded fabrication, vibration-damped mounting pads |
تم تصميم وتصنيع جميع المكونات التي تتحمل الضغط وفقًا لمعايير صارمة. ASME BPVC القسم الثامن القسم 1 أو معايير GB 150 الصينية. تخضع كل وصلة لحام لفحص بالأشعة السينية 100% (RT) وفقًا للقسم الخامس، المادة 2 من ASME، ويخضع كل وعاء ضغط مكتمل لاختبار ضغط هيدروستاتيكي عند 1.5 ضعف أقصى ضغط تشغيل مسموح به (MAWP) لمدة لا تقل عن 30 دقيقة.

إرشادات التركيب والصيانة
متطلبات الأساس والهيكل
The DW-100/8 has a dry weight of 13.00 tonnes and a center of gravity approximately 1,000 mm above the baseplate. Despite its massive scale, the two-row opposed-cylinder design minimizes unbalanced forces, permitting installation on a reinforced concrete inertia block of 20–25 tonnes. The block must be mounted on heavy-duty elastomeric vibration isolators (natural frequency 5–7 Hz) to prevent vibration transmission to adjacent structures and sensitive instrumentation. Minimum clearance requirements: 2.0 m on the non-drive side for valve access, 1.5 m on the drive side for motor maintenance, and 2.5 m overhead for crane access during major overhauls. Given the unit’s dimensions of 5456 × 3518 mm, the compressor house must provide adequate clearance on all sides for safe operation and maintenance.
تصميم نظام مياه التبريد
يبلغ الطلب على مياه التبريد ما يقارب 100 m³/h at an inlet temperature not exceeding 32°C. The water distribution circuit supplies the cylinder jackets, intercooler, and aftercooler in parallel branches with individual flow control valves. Water quality specifications: pH 6.5–8.5, total dissolved solids < 500 mg/L, chloride content < 50 mg/L (to prevent SS316 tube corrosion in the coolers), suspended solids < 30 mg/L, and total hardness < 300 mg/L as CaCO₃. Given the massive cooling water requirement, a dedicated closed-loop cooling tower with side-stream filtration, chemical treatment, and a 10 m³ buffer tank is strongly recommended. The cooling water system must be designed with redundancy to ensure continuous operation during cooling tower maintenance.
جدول الصيانة الوقائية
| فاصلة | بند الخدمة | الإجراء المطلوب |
|---|---|---|
| يوميًا | التفتيش التشغيلي | Check vibration levels, abnormal noise, cooling water flow, discharge temperature, motor current |
| 250 ساعة | فحص صفيحة الصمام | Remove and inspect suction/discharge valves for carbon deposits, spring fatigue, or cracking |
| 1000 ساعة | تقييم تآكل حلقات المكبس | Measure ring groove clearance; replace rings if clearance exceeds 0.25 mm |
| 4000 ساعة | إصلاح متوسط | استبدل جميع حلقات المكابس، وأشرطة التوجيه، ومجموعات صفيحة الصمامات. |
| 8000 ساعة | إصلاح شامل رئيسي | افحص محاور عمود المرفق، وقم بقياس خلوص المحامل الرئيسية، واستبدل المحامل إذا كان الخلوص أكبر من 0.08 مم |
The oil-free design of the DW-100/8 dramatically reduces maintenance complexity compared to lubricated alternatives at this scale. There are no oil changes to schedule (which would require 500+ liters of lubricating oil per change), no oil analysis to perform, no filter elements to replace, and no separator cartridges to monitor. The primary consumable wear items are the حلقات مكابس PTFE وأحزمة تثبيت, which typically achieve 4,000–6,000 hours of service life under clean nitrogen conditions. At 100 m³/min capacity, the elimination of oil-related maintenance represents annual savings of $50,000–$80,000 compared to lubricated alternatives.

شهادات الامتثال والسلامة
The DW-100/8 nitrogen compressor is designed, manufactured, and tested to meet or exceed the following international standards and regulatory frameworks:
ASME BPVC القسم الثامن Div.1، GB 150-2011، PED 2014/68/EU الوحدة A
معايير السلامة الميكانيكية IEC 60034-1 (كفاءة IE3)، IEC 60204-1، ISO 12100
ISO 8573-1 الفئة 0 (محتوى الزيت)، تم اختباره بشكل مستقل بواسطة TÜV Rheinland
ISO 9001:2015 (Quality Management), ISO 14001:2015 (Environmental Management)
Nitrogen is classified as a simple asphyxiant gas. Given the DW-100/8’s massive 100 m³/min capacity, the potential for rapid oxygen displacement in enclosed spaces is severe. All installations must incorporate continuous oxygen deficiency monitoring with multiple sensor locations throughout the compressor house and adjacent areas. Ventilation systems must be engineered to maintain ambient oxygen concentrations above 19.5% volume per OSHA 29 CFR 1910.146, with emergency ventilation capacity sufficient to handle full nitrogen flow in the event of catastrophic discharge. Emergency shutdown interlocks should activate at 19.5% O₂ (alarm) and trigger automatic compressor isolation at 18.0% O₂ (hard shutdown). Personnel entry procedures into enclosed compressor rooms must include portable oxygen monitors, buddy-system protocols, and lockout/tagout procedures.

تحليل الأداء والكفاءة
The DW-100/8 achieves a specific power consumption of approximately 6.00 kW per m³/min of nitrogen delivered at 0.80 MPa discharge pressure. This efficiency metric is exceptional for an ultra-high-capacity oil-free piston compressor operating at an elevated pressure ratio. For context, oil-lubricated screw compressors in similar mega-scale applications typically consume 6.5–7.5 kW/m³/min, while attempts to use multiple smaller compressors in parallel introduce additional inefficiencies from part-load operation and distribution losses.
Over a standard 8,000-hour annual operating schedule, the DW-100/8’s efficiency advantage generates approximately 400,000–1,200,000 kWh of annual energy savings compared to less efficient alternatives or parallel compressor arrangements. At an average industrial electricity tariff of $0.08/kWh, this represents $32,000–$96,000 in direct operating cost reduction per year. When combined with the complete elimination of oil-related consumables (which would be massive at 100 m³/min scale), the التكلفة الإجمالية لامتلاك نظام ضغط النيتروجين is reduced by an estimated 25–35% over a 10-year operational life.
The absence of oil in the compression path eliminates the energy penalty and physical space requirements of downstream oil-removal equipment. At 100 m³/min, a typical oil-lubricated compressor would require multiple large coalescing filters, activated carbon adsorber vessels, and continuous oil monitoring instrumentation that would collectively consume 3–5% of the compressor’s power output and occupy significant floor space. The DW-100/8’s oil-free design removes this parasitic load and spatial burden entirely.
إمكانيات التخصيص وتصنيع المعدات الأصلية
We offer comprehensive customization options to adapt the DW-100/8 to specific mega-scale site conditions, integration requirements, and end-user specifications:
- حزم جاهزة للتسليم مثبتة على قاعدة انزلاقية: The compressor, motor, intercooler, aftercooler, instrumentation, and control panel are pre-assembled on a massive structural steel skid with integrated lifting lugs and anchor bolt templates. Factory pre-testing of all systems reduces field commissioning time by approximately 60% and minimizes startup risks.
- تكوينات المناطق الخطرة: ATEX Zone 2 and IECEx compliant motor and electrical enclosures are available for installations in petrochemical facilities where explosive atmospheres may occasionally be present. Integrated gas detection and automatic ventilation interlocks can be incorporated into the control system.
- التحكم المتقدم في العمليات: Optional Siemens S7-1500 or Allen-Bradley ControlLogix PLC with 15-inch HMI touchscreen, remote monitoring via Modbus TCP/IP or OPC-UA, and seamless integration with plant DCS/SCADA systems. Automatic load/unload control and variable frequency drive (VFD) compatibility optimize part-load efficiency and reduce mechanical wear during startup.
- Environmental Protection Systems: C5-M marine-grade coating systems for coastal or offshore installations; tropicalized electrical components for ambient temperatures up to 55°C; and IP54-rated acoustic enclosures that reduce noise emission from 88 dB(A) to 75 dB(A) at 1 meter, suitable for installations near administrative buildings.
- OEM & Private Label Programs: Custom paint colors, branded nameplates, and localized documentation packages are available for gas equipment distributors and system integrators. Technical manuals, spare parts lists, and maintenance procedures can be supplied in multiple languages.
تتوفر التكوينات المخصصة من الحد الأدنى للطلب: وحدة واحدة. Engineering review and proposal generation typically require 7–10 business days given the complexity of mega-scale installations. Standard delivery time is 14–16 weeks; repeat orders are delivered in 10–12 weeks from order confirmation.

Case Study: Mega-Scale Petrochemical Complex Nitrogen Infrastructure
عميل: A world-scale integrated petrochemical complex in the Middle East with ethylene, polyethylene, and aromatics units
تحدي: The complex’s nitrogen supply was provided by three aging oil-lubricated compressors (European brand, 20+ years in service) operating in parallel to achieve the required 90 m³/min flow. The system was experiencing chronic oil carryover (5.1 mg/m³ average), causing catalyst poisoning in the ethylene cracker, product contamination in polyethylene pelletizing, and frequent unplanned shutdowns for oil-related repairs. Total maintenance costs had reached $180,000/year, and the 0.60 MPa pressure was insufficient for new high-pressure reactor inerting requirements.
حل: لقد قمنا بتوريد DW-100/8 oil-free nitrogen compressor as the primary nitrogen supply, replacing two of the three aging compressors. The unit was configured on a custom skid with integrated intercooler, aftercooler, and a Siemens S7-1500 PLC control panel with full SCADA integration. The 0.80 MPa discharge pressure met all new high-pressure inerting requirements, while the 100 m³/min capacity provided redundancy margin above the complex’s peak demand of 85 m³/min. A 10 m³ surge vessel was installed upstream to buffer demand fluctuations from multiple process units.
Quantified Results After 30 Months:
- Nitrogen oil content: Reduced from 5.1 mg/m³ to <0.01 mg/m³, achieving ISO 8573-1 Class 0 certification
- Ethylene cracker catalyst poisoning incidents: تم القضاء عليه تمامًا, extending catalyst life from 24 months to 36 months
- Annual maintenance cost: Reduced by 48% ($180,000 to $93,600) through elimination of oil-related repairs
- Energy consumption: Improved by 8.2% versus the replaced compressors, saving approximately $38,400/year
- توقف غير مخطط له: Zero events in 30 months of continuous operation
- Compressor count: Reduced from three units to one primary unit plus one standby, simplifying operations and reducing spare parts inventory by 60%
“The DW-100/8 has been a game-changer for our nitrogen infrastructure. The single high-capacity unit replaced three aging compressors, eliminated oil contamination completely, and reduced our maintenance team workload by half. The payback period was 16 months—far better than our initial projections.” — Chief Operations Officer, Petrochemical Complex

الأسئلة الشائعة ودليل الاختيار
المنتجات والحلول ذات الصلة
ضواغط النيتروجين ذات السعة الكبيرة من سلسلة LW
ضواغط مكبسية عالية التدفق وخالية من الزيت (20-130 م³/دقيقة) لتوفير الطاقة الاحتياطية لوحدات فصل الهواء المبردة، وتعزيز ضغط الهواء المتغير الضغط، وتوزيع خطوط الأنابيب الصناعية. ضغوط التفريغ من 0.30 إلى 0.80 ميجا باسكال.
ضواغط سلسلة ZW متعددة المراحل خالية من الزيت
Vertical, multi-stage oil-free compressors for oxygen, nitrogen, hydrogen, and specialty gases. Discharge pressures up to 9.00 MPa for high-pressure gas filling, cylinder charging, and chemical process applications.
ضواغط الضغط المتوسط من سلسلة MW
Medium-pressure oil-free compressors (1.0–4.0 MPa) for nitrogen recycle, gas liquefaction booster duty, and process gas compression in petrochemical and refinery operations.
للحصول على نظرة عامة شاملة عن ضاغط نيتروجين صناعي للاطلاع على محفظتنا، بما في ذلك ضواغط الأكسجين الخالية من الزيت، وضواغط الهيدروجين، وضواغط ثاني أكسيد الكربون، وحلول الغازات المتخصصة المصممة حسب الطلب، يرجى الاتصال بفريق هندسة التطبيقات لدينا أو تصفح كتالوج منتجاتنا عبر الإنترنت.
Ready to Transform Your Mega-Scale Nitrogen Infrastructure?
مهندسونا المتخصصون في التطبيقات على أهبة الاستعداد لتقييم متطلبات تدفق النيتروجين، وظروف السحب، وأهداف ضغط التفريغ، وقيود التكامل. نقدم عروضًا فنية مجانية، ورسومات تخطيطية للأساسات، ومخططات الأنابيب والأجهزة (P&IDs)، وتحليلات تفصيلية للتكلفة الإجمالية للملكية (TCO) خلال 48 ساعة من استلام استفسارك.
بريد إلكتروني: [email protected] الرد خلال 24 ساعة