説明
ZW-3.3/70 Nitrogen Compressor – Ultra-High-Pressure Oil-Free N2 Booster for 7.00 MPa Demanding Applications
Engineered to deliver 3.3 m³/min at 7.00 MPa discharge pressure, the ZW-3.3/70 is a two-stage, two-row oil-free piston nitrogen compressor designed for ultra-high-pressure nitrogen injection, gas cylinder filling, and critical petrochemical process applications. Zero oil contamination, heavy-duty construction, and optimized for continuous-duty operation at extreme pressure.

製品概要
の ZW-3.3/70 nitrogen compressor represents the pinnacle of our oil-free piston compressor engineering, purpose-built for applications where ultra-high discharge pressure is the absolute requirement. With a rated capacity of 3.3 m³/min そして並外れた 7.00 MPa discharge pressure, this unit occupies a specialized niche in the industrial gas compression landscape, serving the most demanding nitrogen boosting requirements in heavy industry.
What distinguishes the ZW-3.3/70 from all alternatives is its 完全にオイルフリーの圧縮経路 combined with extreme pressure capability. The piston rings and rider bands are fabricated from advanced self-lubricating PTFE composite materials specifically formulated for ultra-high-pressure service. This design ensures the nitrogen stream remains completely uncontaminated by hydrocarbons even at 7.00 MPa, where oil contamination would be most concentrated and most difficult to remove. For operators in oil & gas, aerospace, and critical manufacturing, this native oil-free certification eliminates the need for complex and expensive downstream purification trains.
コンプレッサーのアーキテクチャは 二段二列 (二列二级) configuration that is thermodynamically essential for managing the extreme pressure ratio required to achieve 7.00 MPa from typical inlet conditions. Each stage is independently cooled through high-efficiency intercoolers, ensuring gas temperatures remain within safe operating envelopes and preserving the integrity of the PTFE sealing elements under the most severe thermal stress. The reinforced frame construction and heavy-duty crankshaft assembly are engineered for a minimum service life of 10万時間 標準的な保守手順に従って。

Technical Specifications – ZW-3.3/70
| パラメータ | 価値 | ユニット |
|---|---|---|
| モデル | ZW-3.3/70 | – |
| パターン | 二段二列 (二列二级) | – |
| 容量 | 3.3 | m³/分 |
| 吐出圧力 | 7.00 | MPa |
| コンプレッサーのサイズ(長さ×幅×高さ) | 1920 × 1900 × 2580 | mm |
| 重さ | 3.97 | t |
| 力 | 75 | kW |
| 電圧 | 380 | V |
| ガス媒体 | 窒素(N₂) | – |
| 潤滑 | オイルフリー | – |
* すべての仕様は標準基準条件(ISO 1217、附属書C)に基づいています。実際の性能は、設置場所の標高、周囲温度、および吸気条件によって異なる場合があります。
主な特長とエンジニアリング上の利点
1. Ultra-High-Pressure Oil-Free PTFE Sealing Technology
The ZW-3.3/70 employs a proprietary 自己潤滑ピストンリングおよびライダーバンドアセンブリ manufactured from ultra-high-performance PTFE composites specifically engineered for 7.00 MPa service. These rings are reinforced with high-density glass fiber and bronze particulates to achieve a coefficient of friction below 0.05 without any external hydrocarbon lubrication. At 7.00 MPa discharge pressure, the partial pressure of oil vapor would be approximately 23 times higher than at 0.30 MPa, making oil contamination catastrophic and virtually impossible to remove downstream. The ZW-3.3/70’s native oil-free design delivers ISO 8573-1 クラス0準拠 without any downstream filtration, a feat that is technically impossible for lubricated compressors at this pressure level. The PTFE formulation is rated for continuous operation at temperatures up to 200°C, ensuring sealing integrity under the extreme thermal stress of ultra-high-pressure compression.
2. Two-Stage Compression for Extreme Pressure Ratios
の 2段階圧縮アーキテクチャ of the ZW-3.3/70 is not merely preferred but absolutely mandatory for achieving 7.00 MPa from typical inlet pressures of 0.05–0.10 MPa. The overall pressure ratio of approximately 70:1 to 140:1 is split between a low-pressure cylinder and a high-pressure cylinder, with each stage operating at a thermodynamically manageable pressure ratio. A high-capacity shell-and-tube intercooler between stages removes the substantial heat of compression, maintaining discharge temperatures below 170°C and preventing thermal degradation of the PTFE sealing elements. Without staged compression, the theoretical discharge temperature would exceed 350°C, far beyond the safe operating limit of any known sealing material. The two-stage design also improves volumetric efficiency by reducing the re-expansion losses that would plague a single-stage machine at such extreme pressure ratios.
3. Heavy-Duty Reinforced Frame for Ultra-High-Pressure Loads
メインフレームは鋳造されています GG25 グレー鋳鉄 with substantially reinforced wall sections, additional ribbing, and integral cooling water passages. The high-pressure cylinder features wall thicknesses approximately 40% greater than standard cylinders, with stress-relieving heat treatment after machining. The two-row opposed-cylinder arrangement provides natural first-order force cancellation, which is critical for ultra-high-pressure compressors where the peak gas forces on the pistons can exceed 50 tonnes per cylinder. This mechanical advantage reduces the unbalanced inertia forces transmitted to the foundation by over 80%, permitting installation on a reinforced concrete inertia block of 6–8 tonnes rather than the 12+ tonnes that would be required for a single-row design of equivalent pressure capability.
4. Standard 380V Industrial Motor Drive with High-Torque Design
The ZW-3.3/70 is driven by a 75 kW, 380V, 50Hz three-phase induction motor conforming to IEC 60034-1 efficiency class IE3, with a high-torque design optimized for the starting loads of ultra-high-pressure piston compressors. The standard low-voltage configuration integrates directly into existing 380V industrial distribution panels without requiring medium-voltage infrastructure. The motor is oversized relative to the running power requirement to provide the high starting torque necessary to overcome the initial compression resistance when starting against 7.00 MPa discharge pressure. This electrical simplicity makes the ZW-3.3/70 accessible to a wide range of industrial facilities regardless of their electrical infrastructure scale.

アプリケーションシナリオ
Ultra-High-Pressure Nitrogen Cylinder Filling
The ZW-3.3/70 is purpose-built for filling industrial and medical nitrogen cylinders to 15–20 MPa through a staged compression system. While the compressor’s 7.00 MPa discharge pressure does not reach cylinder filling pressure directly, it serves as a highly efficient first-stage booster that dramatically reduces the compression ratio required of the downstream high-pressure filling compressor. By boosting nitrogen from 0.05–0.10 MPa to 7.00 MPa, the ZW-3.3/70 reduces the filling compressor’s required pressure ratio by approximately 60%, improving overall system efficiency and extending the life of the expensive high-pressure stage. The oil-free design is absolutely mandatory for cylinder filling because any oil contamination would be trapped in the cylinders and delivered to end-users, potentially contaminating their processes and violating gas quality standards.

Oil & Gas Well Nitrogen Injection
In upstream oil and gas operations, the ZW-3.3/70 nitrogen booster provides high-pressure nitrogen for enhanced oil recovery (EOR), well stimulation, and gas lift operations. The 7.00 MPa discharge pressure is sufficient to inject nitrogen into reservoir formations at depths up to 2,000 meters, where reservoir pressures typically range from 5–15 MPa. The oil-free design is critical in oilfield applications because any oil contamination in the nitrogen would alter the wettability of the reservoir rock, reducing oil recovery efficiency and potentially causing formation damage. The compact footprint and 3.97-tonne weight allow the unit to be mounted on mobile skids for deployment to remote well sites.
Aerospace Pressure Testing & Component Validation
Aerospace manufacturers and testing facilities require ultra-high-pressure nitrogen for pressure testing of aircraft components, hydraulic system validation, and fuel tank inerting system testing. The ZW-3.3/70’s 7.00 MPa discharge pressure is adequate for hydrostatic and pneumatic testing of fuselage sections, landing gear components, and fuel system hardware. The oil-free certification ensures that test nitrogen meets the stringent cleanliness requirements of aerospace standards (AS9100, NADCAP), where even trace oil contamination could interfere with non-destructive testing or leave residues that affect component performance.

High-Pressure Chemical Synthesis & Process Inerting
In chemical process industries, the ZW-3.3/70 provides ultra-high-pressure nitrogen for high-pressure reactor inerting, catalyst bed preservation, and supercritical fluid extraction processes. The 7.00 MPa discharge pressure is sufficient to maintain inert atmospheres in high-pressure reactors operating at 5–6 MPa, providing a safety margin above the process pressure. The oil-free design is mandatory for chemical synthesis because oil contamination would poison catalysts, contaminate reaction products, and potentially create hazardous conditions in oxygen-sensitive reactions. The 3.3 m³/min capacity can support multiple high-pressure reactors operating in parallel within a single process unit.
材料と構造
The ZW-3.3/70 is constructed from premium materials selected for ultra-high-pressure nitrogen compatibility, extreme thermal resistance, and maximum structural integrity:
| 成分 | 材料 | 仕様 |
|---|---|---|
| シリンダーブロック(LP) | ねずみ鋳鉄 | GG25 / HT250, standard wall thickness |
| シリンダーブロック(HP) | ねずみ鋳鉄 | GG25 / HT250, reinforced wall + heavy ribbing, stress-relieved |
| クランクシャフト | 鍛造合金鋼 | 42CrMo4, Q&T, ISO 1940 G2.5 dynamically balanced |
| ピストンリング | Ultra-High-Pressure PTFE Composite | High-density glass fiber + bronze, 200°C rated, 7 MPa certified |
| ライダーバンド | PTFE複合材 | ピストンガイド、耐摩耗性、摩耗率 <0.03 mm/1000h |
| バルブプレート | ステンレス鋼 | SS316、超高圧同心円リング設計 |
| コネクティングロッド | 鍛造鋼製、バビットメタルベアリング使用 | Heavy-duty, precision-machined, oil-lubricated big end |
| インタークーラー | 炭素鋼製シェル/SS316製チューブ | ASME VIII Div.1、1.5倍の耐圧試験、30分間保持 |
| アフタークーラー | 炭素鋼製シェル/SS316製チューブ | 高圧フィン付きチューブ、冷却水温度32℃対応 |
| 高圧配管 | シームレスステンレス鋼 | SS316, ANSI Class 900 flanges, 100% X-ray inspected |
すべての圧力支持部品は、以下の基準に厳密に従って設計および製造されています。 ASME BPVC セクション VIII ディビジョン 1 or Chinese GB 150 standards. Every weld joint undergoes 100% radiographic inspection (RT) per ASME Section V, Article 2, and each completed pressure vessel is subjected to a hydrostatic pressure test at 1.5 times the maximum allowable working pressure (MAWP) for a minimum hold period of 30 minutes. High-pressure piping systems are fabricated from seamless SS316 with ANSI Class 900 flanged connections and are 100% X-ray inspected to ensure leak-tight integrity at 7.00 MPa operating pressure.

設置およびメンテナンスに関するガイドライン
基礎および構造要件
The ZW-3.3/70 has a dry weight of 3.97 tonnes and a center of gravity approximately 800 mm above the baseplate. A 6~8トンの鉄筋コンクリート慣性ブロック is required for stable operation, mounted on heavy-duty elastomeric vibration isolators (natural frequency 6–8 Hz). The two-row opposed-cylinder design cancels first-order inertial forces, but the ultra-high-pressure gas loads generate substantial frame stresses that require a robust foundation. Minimum clearance requirements: 1.2 m on the non-drive side for valve access, 1.0 m on the drive side for motor maintenance, and 1.8 m overhead for crane access. The high-pressure discharge piping must be properly supported with spring hangers and expansion joints to accommodate thermal expansion and prevent vibration-induced fatigue at 7.00 MPa.
冷却水システムの設計
冷却水の需要は約 15 m³/h at an inlet temperature not exceeding 32°C. The water distribution circuit supplies the cylinder jackets and intercooler in parallel, with the intercooler receiving priority flow allocation due to its critical role in thermal management. Given the extreme pressure ratio, the intercooler must remove a substantial quantity of heat between stages to prevent thermal damage to the high-pressure cylinder’s PTFE sealing elements. Water quality specifications: pH 6.5–8.5, total dissolved solids < 500 mg/L, chloride content < 30 mg/L (strict limit for SS316 corrosion protection at high pressure), suspended solids < 20 mg/L, and total hardness < 250 mg/L as CaCO₃. A closed-loop cooling tower with side-stream filtration and chemical treatment is strongly recommended.
予防保守スケジュール
| 間隔 | サービス項目 | 対応が必要 |
|---|---|---|
| 毎日 | 運用検査 | Check vibration, abnormal noise, cooling water flow, discharge pressure, temperature, leak detection |
| 200時間 | バルブプレートの点検 | 吸入弁/吐出弁を取り外し、カーボン堆積物、スプリング疲労、亀裂、シート摩耗などを点検する。 |
| 800時間 | ピストンリング摩耗評価 | リング溝のクリアランスを測定し、クリアランスが0.18mmを超える場合はリングを交換してください。 |
| 2,500時間 | 中間オーバーホール | Replace all piston rings, rider bands, and valve plate assemblies; inspect cylinder bores |
| 5,000時間 | 大規模な改修 | クランクシャフトジャーナルを点検し、メインベアリングクリアランスを測定し、0.06 mmを超える場合はベアリングを交換する。フレームを点検する。 |
The oil-free design of the ZW-3.3/70 dramatically simplifies maintenance compared to lubricated alternatives, though the ultra-high-pressure operation demands more frequent inspection than lower-pressure models. There are no oil changes, no oil analysis, no filter replacements, and no separator cartridge changes. The primary consumable wear items are the PTFE製ピストンリングおよびライダーバンド, which typically achieve 2,500–4,000 hours of service life under clean nitrogen conditions at 7.00 MPa. The high-pressure valve plates require more frequent inspection due to the extreme mechanical stress, with replacement intervals of 2,000–3,000 hours.

法令遵守および安全認証
The ZW-3.3/70 nitrogen compressor is designed, manufactured, and tested to meet or exceed the following international standards and regulatory frameworks:
ASME BPVC セクション VIII Div.1、GB 150-2011、PED 2014/68/EU モジュール A
IEC 60034-1(IE3効率)、IEC 60204-1、ISO 12100機械安全規格
ISO 8573-1 クラス0(油分含有量)、TÜVラインランドによる独立試験済み
ISO 9001:2015、ISO 14001:2015
Nitrogen is classified as a simple asphyxiant gas. At 7.00 MPa discharge pressure, the stored energy in the compressed gas and the risk of rapid gas release are extreme. All ZW-3.3/70 installations must incorporate: (1) Continuous oxygen deficiency monitoring in the compressor room and all adjacent areas; (2) High-pressure discharge piping equipped with pressure relief valves rated at 110% of MAWP and rupture discs as secondary protection; (3) Emergency isolation valves on both suction and discharge that close automatically on alarm; (4) Ventilation systems maintaining ambient oxygen above 19.5% per OSHA 29 CFR 1910.146; (5) Emergency shutdown interlocks activating at 19.5% O₂ (alarm) and triggering hard isolation at 18.0% O₂; (6) Personnel trained in ultra-high-pressure gas safety protocols before operating or maintaining this equipment. All high-pressure piping must be inspected annually for corrosion, erosion, and mechanical damage.

パフォーマンスと効率の分析
The ZW-3.3/70 achieves a specific power consumption of approximately 22.73 kW per m³/min of nitrogen delivered at 7.00 MPa discharge pressure. This specific power figure reflects the substantial thermodynamic work required for ultra-high-pressure compression from atmospheric inlet. Within the ultra-high-pressure oil-free compressor segment (discharge pressure >5.00 MPa), this efficiency is highly competitive. For comparison, diaphragm compressors—the primary alternative for oil-free ultra-high-pressure service—typically consume 25–35 kW/m³/min at equivalent pressures, while oil-lubricated reciprocating compressors consume 20–25 kW/m³/min but introduce unacceptable oil contamination.
Over an 8,000-hour annual operating cycle, the ZW-3.3/70’s efficiency advantage versus diaphragm compressors yields approximately 60,000–120,000 kWh of annual energy savings. At $0.08/kWh, this represents $4,800–$9,600 in direct electricity cost reduction per year. However, the primary economic driver for ZW-3.3/70 selection is typically the combination of oil-free certification, higher capacity, and lower capital cost compared to diaphragm alternatives. A diaphragm compressor with equivalent oil-free certification and 3.3 m³/min capacity would cost 4–6 times more than the ZW-3.3/70 and occupy significantly more space.
の 超高圧窒素圧縮装置の総所有コスト is dominated by capital cost, maintenance labor, and equipment availability rather than marginal energy differences. The ZW-3.3/70’s piston design offers superior maintainability compared to diaphragm compressors, with shorter overhaul times and lower spare parts costs. The absence of oil eliminates the need for expensive high-pressure oil-filtration systems that would be mandatory with lubricated alternatives at 7.00 MPa.
カスタマイズおよびOEM対応
We offer comprehensive customization options to adapt the ZW-3.3/70 to specific site conditions, integration requirements, and end-user specifications:
- スキッドマウント型ターンキーパッケージ: Pre-assembled compressor, motor, high-pressure coolers, instrumentation, control panel, and safety systems on a structural steel skid with integrated lifting lugs. Factory pre-testing of all high-pressure systems before shipment.
- Mobile Trailer Units: The ZW-3.3/70 can be mounted on a road-legal trailer with integrated diesel generator, closed-loop cooling system, and high-pressure nitrogen storage, creating a fully mobile ultra-high-pressure nitrogen supply unit for oilfield services, pipeline maintenance, and emergency response.
- 危険区域構成: ATEX Zone 2 and IECEx compliant motor and electrical enclosures for oil & gas installations. Integrated gas detection, automatic ventilation, and emergency isolation interlocks.
- 高度なプロセス制御: Optional Siemens S7-1200 PLC with HMI touchscreen, high-pressure safety interlocks including automatic unload on overpressure, emergency isolation valves, and remote monitoring via Modbus TCP/IP or OPC-UA.
- 環境保護: C5-M marine-grade coatings for offshore installations; tropicalized electrical components for 55°C ambient; IP54-rated acoustic enclosures reducing noise from 85 dB(A) to 72 dB(A) at 1 meter.
- OEMおよびプライベートブランド: Custom paint schemes, branded nameplates, and localized documentation for gas equipment distributors and system integrators.
カスタム構成は以下から入手可能です 最小注文数量:1個. Engineering proposals are typically delivered within 5–7 business days. Standard delivery time is 12–14 weeks; expedited delivery within 10 weeks is available for qualifying orders.

Case Study: Oilfield Nitrogen Injection for Enhanced Recovery
クライアント: An independent oil & gas operator in the Middle East with mature oil fields requiring enhanced recovery
チャレンジ: The operator needed to inject nitrogen into reservoir formations at 6–8 MPa to maintain pressure and improve oil recovery in a mature field where natural pressure had declined. The existing solution involved purchasing liquid nitrogen, vaporizing on-site, and boosting with rental compressors—a logistics-intensive approach costing $2.5 million annually with unreliable supply during peak demand periods. The operator required a permanent, oil-free nitrogen compression solution that could operate continuously in a desert environment with ambient temperatures reaching 50°C.
解決: 私たちは供給しました ZW-3.3/70 oil-free nitrogen compressor paired with a small VPSA nitrogen generator (99.5% purity, 5 m³/min) on a common skid. The ZW-3.3/70 boosted the VPSA product from 0.08 MPa to 7.00 MPa for direct injection into the reservoir through existing wellhead connections. The skid was equipped with tropicalized electrical components, C5-M marine-grade coatings, and a closed-loop cooling tower with sand filtration for the desert environment. A Siemens S7-1200 PLC provided remote monitoring and automatic wellhead pressure control.
36か月後の定量的な結果:
- Nitrogen supply cost: Reduced by 68% versus liquid nitrogen purchase and rental compressors ($2.5M to $800K/year)
- Oil recovery improvement: +12% incremental recovery due to consistent nitrogen injection pressure and purity
- Supply reliability: 99.2% uptime over 36 months, zero production interruptions due to nitrogen shortage
- Oil contamination in injected nitrogen: <0.01 mg/m³, ensuring no formation damage
- Payback period: 2.8 years based on nitrogen cost savings alone; additional revenue from increased oil recovery
“The ZW-3.3/70 has transformed our nitrogen injection program from a logistical nightmare into a reliable production tool. The oil-free design gives us confidence that we’re not damaging our reservoir, and the cost savings have exceeded our projections. We’ve already ordered two additional units for our other fields.” — Reservoir Engineering Manager, Oil & Gas Operator

よくある質問と選択ガイド
関連製品およびソリューション
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当社の包括的な概要については、 工業用窒素圧縮機 オイルフリー酸素圧縮機、水素圧縮機、二酸化炭素圧縮機、および特注設計の特殊ガスソリューションを含む製品ポートフォリオの詳細については、当社のアプリケーションエンジニアリングチームにお問い合わせいただくか、オンライン製品カタログをご覧ください。
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