• 所有产品

      • 增压空气冷却器
        • 增压空气冷却器

          空气-水热交换器有助于提高发动机效率,并且减少海用和陆用固定式发动机的排放量。

      • 废气热交换器
        • 废气热交换器

          废气换热器专为从往复式发动机驱动的发电机组废气流中回收废热而设计。

      • 燃料冷却器
        • 燃料冷却器

          Bowman“无铜”燃料冷却器是一款紧凑、高效的换热器,适用于汽车测试行业的燃料调节装置

      • 上水箱换热器
        • 上水箱换热器

          船用推进器或固定式陆用发动机的水套水冷却。

      • 热水浴缸换热器
        • 热水浴缸换热器

          Bowman EC 80-5113-1T换热器为水疗池和热水浴缸提供了一种全新的解决方案,其所需的加热时间仅为传统电加热器所需时间的一小部分。

      • 液压油冷却器
        • 液压油冷却器

          用于冷却海用、陆用和深井液压系统的高效传热解决方案。

      • 板式换热器
        • 板式换热器

          Bowman管线内板式换热器是一个紧凑型、经济高效的传热方案。

      • 船用发动机冷却解
        • 船用发动机冷却解

          专为主要船舶设备制造商的热门船用发动机系列定制的冷却解决方案,包括换热器、增压空气冷却器以及组合式换热器与排气歧管,适用于冷却最大功率为1MW的船用发动机。

      • 变速器油冷却器
        • 变速器油冷却器

          却器系列。

      • 用于电力与混合动力系统的冷却器
        • 用于电力与混合动力系统的冷却器

          这款高效换热器适用于冷却电机、氢燃料电池、电池组、充电器、交流-直流转换器、直流-直流转换器、逆变器以及电力与混合动力船舶推进及充电系统的相关设备。

      • 管壳式换热器
        • 管壳式换热器

          高效的热传递方案,适和各种需要采用流体冷却空气和流体的应用。

      • 不锈钢换热器
        • 不锈钢换热器

          在许多应用场合都需要用到不锈钢管壳式换热器,Bowman提供的标准系列不锈钢换热器适用于冷却或加热各种流体。

      • 泳池换热器
        • 泳池换热器

          Bowman泳池换热器以其可靠性和高性能而著称。无论是采用传统的锅炉还是可再生能源加热泳池,Bowman换热器都是显而易见的最佳选择。

    • 所有应用

      • 汽车试验
        • 汽车试验

          优质换热器和油冷却器,用于在试验间应用中精准控制发动机温度。

      • CHP / 热电联产
        • CHP / 热电联产

          从沼气、柴油和天然气发动机驱动的发电机组中回收余热,最高可达1兆瓦。

      • 发动机冷却
        • 发动机冷却

          在无法进行或不适合进行空气冷却的情况下,对固定式/陆用发动机进行有效地冷却。

      • 电力与混合动力船舶
        • 电力与混合动力船舶

          适用于冷却电力与混合动力船舶推进系统的可靠解决方案

      • 工业液压
        • 工业液压

          应用于工业液压控制系统、高温环境和采矿业的综合性油冷却方案。

      • 海用液压装置
        • 海用液压装置

          用于冷却复杂的海用液压装置的全套解决方案,包括推进器和稳定器系统的冷却。

      • 船用推进系统
        • 船用推进系统

          船用发动机推进系统冷却的完整解决方案,包括最新的电力和混合动力推进系统的冷却。

      • 热水浴缸 / 水疗中心
        • 热水浴缸 / 水疗中心

          更快地加热浴缸和室内水疗池的高效解决方案,能够显著减少在新老客人更替时间段内加热浴缸的时间。

      • 游泳池加热
        • 游泳池加热

          使用锅炉或可再生能源热源进行泳池高效加热的优质换热器。

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船用发动机冷却解决方案

专为主要船舶设备制造商的热门船用发动机系列定制的冷却解决方案,包括换热器、增压空气冷却器以及组合式换热器与排气歧管,适用于冷却最大功率为1MW的船用发动机。

船用发动机冷却解决方案

专为主要船舶设备制造商的热门船用发动机系列定制的冷却解决方案,包括换热器、增压空气冷却器以及组合式换热器与排气歧管,适用于冷却最大功率为1MW的船用发动机。
专为主要船舶设备制造商的热门船用发动机系列定制的冷却解决方案,包括换热器、增压空气冷却器以及组合式换热器与排气歧管,适用于冷却最大功率为1MW的船用发动机。

产品优势

适用原厂设备

可以更方便地安装在特定类型的发动机上

选品便捷

根据发动机而设计的冷却性能

质量上乘

英国制造、使用优质组件

经济高效

便于将发动机转换为船用发动机

传统设计

适用于获批许可证的旧式发动机类型

专为主要船舶设备制造商的热门船用发动机系列定制的冷却解决方案,包括换热器、增压空气冷却器以及组合式换热器与排气歧管,适用于冷却最大功率为1MW的船用发动机。

特性

原厂品质部件

原厂品质部件

多种换热器与排气歧管组合型号,使换热器能够轻松集成到发动机冷却系统中。

品类广泛

品类广泛

我们还可提供标准系列的水套水、发动机油和涡轮增压空气冷却解决方案,使得工业发动机能够方便地转换为船用发动机。

易于维护

易于维护

可拆卸端盖使管组易于从外壳中取出,确保维修养护简单明了。

规格

下列信息为目前定制发动机换热器系列的常规指南。如果您需要的装置未列于其中,请联系我们,我们可提供数量有限的换热器,适用于部分已经停产的英国莱兰(British Leyland)、福特(Ford)、奔驰(Mercedes Benz)和珀金斯(Perkins)发动机。

如果您需要更换已经停产的换热器,并且需要购买我们的标准产品,请联系我们,告知发动机的详细信息以及您的冷却需求,我们将帮助您选择合适的产品。

康明斯 (Cummins) 发动机

型号Bowman类型应用
4B/BT/BTA SeriesCB120-4109-3Heat Exchanger
4BT/BTA SeriesFG100-4075-2Charge Air Cooler
6B/BT SeriesCB140-4216-4Heat Exchanger
6BT SeriesFG100-4075-2Charge Air Cooler
6BTA SeriesGL140-4076-2Charge Air Cooler
6C/CT/CTA SeriesCC120-4173Heat Exchanger
View Table
型号:
4B/BT/BTA Series
Bowman类型
CB120-4109-3
应用
Heat Exchanger
型号:
4BT/BTA Series
Bowman类型
FG100-4075-2
应用
Charge Air Cooler
型号:
6B/BT Series
Bowman类型
CB140-4216-4
应用
Heat Exchanger
型号:
6BT Series
Bowman类型
FG100-4075-2
应用
Charge Air Cooler
型号:
6BTA Series
Bowman类型
GL140-4076-2
应用
Charge Air Cooler
型号:
6C/CT/CTA Series
Bowman类型
CC120-4173
应用
Heat Exchanger

福特 (Ford) 发动机

型号Bowman类型应用
Type 2722/3/5FH440-3404Header Tank Heat Exchanger
View Table
型号:
Type 2722/3/5
Bowman类型
FH440-3404
应用
Header Tank Heat Exchanger

三菱 (Mitsubishi) 发动机

型号Bowman类型应用
L Series: L2ML120-3992Combined Heat Exchanger and Exhaust Manifold
L Series: L3ML130-3993Combined Heat Exchanger and Exhaust Manifold
K Series: K3B/D/EMK130-3996Combined Heat Exchanger and Exhaust Manifold
K Series: K4C/D/EMK140-3997Combined Heat Exchanger and Exhaust Manifold
S Series: S3/L2MS130-4295Combined Heat Exchanger and Exhaust Manifold
S Series: S4/L2 MS140-4296Combined Heat Exchanger and Exhaust Manifold
View Table
型号:
L Series: L2
Bowman类型
ML120-3992
应用
Combined Heat Exchanger and Exhaust Manifold
型号:
L Series: L3
Bowman类型
ML130-3993
应用
Combined Heat Exchanger and Exhaust Manifold
型号:
K Series: K3B/D/E
Bowman类型
MK130-3996
应用
Combined Heat Exchanger and Exhaust Manifold
型号:
K Series: K4C/D/E
Bowman类型
MK140-3997
应用
Combined Heat Exchanger and Exhaust Manifold
型号:
S Series: S3/L2
Bowman类型
MS130-4295
应用
Combined Heat Exchanger and Exhaust Manifold
型号:
S Series: S4/L2
Bowman类型
MS140-4296
应用
Combined Heat Exchanger and Exhaust Manifold

珀金斯 (Perkins) 发动机

型号Bowman类型应用
4-99/107/108PE180-3483Combined Heat Exchanger and Exhaust Manifold
4-236PE390-3674Combined Heat Exchanger and Exhaust Manifold
6-354PE580-3676Combined Heat Exchanger and Exhaust Manifold
View Table
型号:
4-99/107/108
Bowman类型
PE180-3483
应用
Combined Heat Exchanger and Exhaust Manifold
型号:
4-236
Bowman类型
PE390-3674
应用
Combined Heat Exchanger and Exhaust Manifold
型号:
6-354
Bowman类型
PE580-3676
应用
Combined Heat Exchanger and Exhaust Manifold

泳池锅炉供热系列 - 标准性能和尺寸

您可在下表中选择适合您的泳池或水疗池的最合适的换热器。信息显示了能够从锅炉或可再生能源所传输的热量,以及各换热器的基本尺寸,同时列出了标准泳池的尺寸。要了解更多信息,请下载产品手册、联系我们或您附近的经销商。

上图所示为额定功率为12千瓦至100千瓦的锅炉供热泳池换热器。

注:额定值和重量与各换热器的钛材质版本相关。 下载产品手册以了解更多详细信息。

上图所示为额定功率为100千瓦至300千瓦的锅炉供热泳池换热器。

注:额定值和重量与各换热器的钛材质版本相关。 下载产品手册以了解更多详细信息。

上图所示为额定功率为170千瓦至1055千瓦的锅炉供热泳池换热器。

注:额定值和重量与各换热器的钛材质版本相关。 下载产品手册以了解更多详细信息。

泳池锅炉供热系列 - 标准性能和尺寸

上图所示为适用于可再生能源的泳池换热器。最上图为5113-3、5113-5和5114-5换热器,第二个图为5115-5换热器。

注:所示重量为钛材质版本。

通过单击特定产品的链接或下载下面的产品数据表,可以找到有关该系列所有热交换器的更详细的产品信息

公制连接 (欧洲规范)

适用于水疗中心、热水浴缸和小型私人泳池

适用于中型私人和商业泳池

适用于大型商业和公共泳池

有关 JK190-5118-3 和 PK190-5119-3 的更多信息,请联系 Bowman。

用于传输太阳能电池板和热泵的热量

英制连接 (北美)

适用于水疗中心、热水浴缸和小型私人泳池

适用于中型私人和商业泳池

适用于大型商业和公共泳池

有关 JK190-5110-3 和 PK190-5111-3 的更多信息,请联系 Bowman。

用于传输太阳能电池板和热泵的热量

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船用换热器与油冷却器

Download

上水箱换热器

Download

管壳式换热器

Download

增压空气冷却器

Download

液压 油冷却器

Download
  • Swimming Pool Heat Exchangers

    Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

  • Swimming Pool Heat Exchangers

    Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

  • Swimming Pool Heat Exchangers

    Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

  • Swimming Pool Heat Exchangers

    Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

Installation Manual for Swimming Pool Heat Exchangers

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

5113 Product Profile

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

5113 Product Profile

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

5113 Product Profile

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

5113 Product Profile

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

Installation Manual for Swimming Pool Heat Exchangers

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

5113 Product Profile

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

5113 Product Profile

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

5113 Product Profile

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

5113 Product Profile

Technical sales brochure includes product information, ratings charts, drawings and dimensions for the standard product range.

FAQs

FAQs

在评估船用油冷却器使用寿命时,需要考虑多个因素。

例如,是否选择了适合冷却需求的正确产品?

设备是否进行了正确的安装和调试?

冷却介质的流速(或流量)和压力是否符合制造商建议?

设备是否按照制造商要求进行维护和保养?

如果以上问题(以及可能产生的其他问题)均得到妥善处理,那么来自Bowman等知名优质制造商的船用油冷却器完全可以使用20年以上。

但是,要实现这一点,必须确保设备的选型、安装、调试和维护都正确无误。

例如,对于配备铜镍合金管束的船用油冷却器,必须确保铜镍合金管得到正确的“养护处理”,以使其表面形成天然保护薄膜,从而提供长期的防腐保护。

此外,如果水流量超过制造商建议,那么高速进入油冷却器的海水会快速侵蚀管体和管板,导致冷却器过早失效,因此遵循指南至关重要!

随着海洋塑料污染情况加剧,除了对进水海水进行充分过滤外,定期检查和清洁油冷却器对于保持其性能和延长使用寿命也极为重要!

好消息是,如果维护得当,船用油冷却器能够可靠地运行数十年。

事实上,Bowman经常收到其油冷却器使用超过40年的案例报告!

Bowman生产的油冷却器类型广泛,适用于大多数船舶应用,并配有计算机选型程序,能够为各类应用推荐最适配的产品。

选择正确的换热器对于确保池水快速加热到所需温度非常重要。确定游泳池换热器尺寸时要考虑的主要问题有:

  1. Pool size – what is the water capacity? Heat exchangers are sized according to capacity, so a unit designed to heat a 80 m³ (18,000 gal) pool would be no use, if you have an 180 m³ (39,500 gal) pool.
  2. 怎样加热池水?通常选择锅炉或可再生能源进行加热。如果采用的是可再生能源,请选择专为太阳能电池板或热泵加热低温水而设计的换热器,因为这些设备将游泳池加热到所需温度需要的能量较少。
  3. Boiler water temperature – however, most pools will be heated by boilers, so what is the temperature of the boiler water? Usually, it’s between 80 °C and 85 °C – the ideal temperature for pool heating. Some boilers are lower – around 60 °C. So, using 82 °C water, a heat exchanger providing 110 kW should heat your 180 m³ pool efficiently. But if the boiler water temperature is only 60 °C, the heat available to transfer drops to around 60 kW – a reduction of over 40%, so a larger heat exchanger would be required for the pool to achieve full temperature.
  4. What are the water flow rates? Flow rates are vital for the heat exchanger to transfer thermal energy to the pool. If the hot water flow rate is too low, the available energy will not be passed through the heat exchanger. However, the flow rate of the pool water is equally important. People often think it is important to generate a large temperature differential between the pool water entering and leaving the heat exchanger. They are happy, if the pipework connected to the outlet of the heat exchanger is noticeably warmer than it is at the inlet. In reality, this actually reduces the efficiency of the heat transfer process! This is because the pool water flow is too low – the water remains in the heat exchanger for too long, so a much smaller volume of water is being heated to a slightly higher temperature. 然而,在池水的流速增加后,换热所需的时间就会减少,即使通过换热器的池水温度仅略微升高(例如1.5°C),也会对整个池水的加热效率产生更大的影响。

More information about heat exchanger selection, read the article ‘Why doesn’t my pool heat up faster?’

选择正确的换热器对于确保池水快速加热到所需温度非常重要。确定游泳池换热器尺寸时要考虑的主要问题有:

  1. Pool size – what is the water capacity? Heat exchangers are sized according to capacity, so a unit designed to heat a 80 m³ (18,000 gal) pool would be no use, if you have an 180 m³ (39,500 gal) pool.
  2. 怎样加热池水?通常选择锅炉或可再生能源进行加热。如果采用的是可再生能源,请选择专为太阳能电池板或热泵加热低温水而设计的换热器,因为这些设备将游泳池加热到所需温度需要的能量较少。
  3. Boiler water temperature – however, most pools will be heated by boilers, so what is the temperature of the boiler water? Usually, it’s between 80 °C and 85 °C – the ideal temperature for pool heating. Some boilers are lower – around 60 °C. So, using 82 °C water, a heat exchanger providing 110 kW should heat your 180 m³ pool efficiently. But if the boiler water temperature is only 60 °C, the heat available to transfer drops to around 60 kW – a reduction of over 40%, so a larger heat exchanger would be required for the pool to achieve full temperature.
  4. What are the water flow rates? Flow rates are vital for the heat exchanger to transfer thermal energy to the pool. If the hot water flow rate is too low, the available energy will not be passed through the heat exchanger. However, the flow rate of the pool water is equally important. People often think it is important to generate a large temperature differential between the pool water entering and leaving the heat exchanger. They are happy, if the pipework connected to the outlet of the heat exchanger is noticeably warmer than it is at the inlet. In reality, this actually reduces the efficiency of the heat transfer process! This is because the pool water flow is too low – the water remains in the heat exchanger for too long, so a much smaller volume of water is being heated to a slightly higher temperature. 然而,在池水的流速增加后,换热所需的时间就会减少,即使通过换热器的池水温度仅略微升高(例如1.5°C),也会对整个池水的加热效率产生更大的影响。

More information about heat exchanger selection, read the article ‘Why doesn’t my pool heat up faster?’

选择正确的换热器对于确保池水快速加热到所需温度非常重要。确定游泳池换热器尺寸时要考虑的主要问题有:

  1. Pool size – what is the water capacity? Heat exchangers are sized according to capacity, so a unit designed to heat a 80 m³ (18,000 gal) pool would be no use, if you have an 180 m³ (39,500 gal) pool.
  2. 怎样加热池水?通常选择锅炉或可再生能源进行加热。如果采用的是可再生能源,请选择专为太阳能电池板或热泵加热低温水而设计的换热器,因为这些设备将游泳池加热到所需温度需要的能量较少。
  3. Boiler water temperature – however, most pools will be heated by boilers, so what is the temperature of the boiler water? Usually, it’s between 80 °C and 85 °C – the ideal temperature for pool heating. Some boilers are lower – around 60 °C. So, using 82 °C water, a heat exchanger providing 110 kW should heat your 180 m³ pool efficiently. But if the boiler water temperature is only 60 °C, the heat available to transfer drops to around 60 kW – a reduction of over 40%, so a larger heat exchanger would be required for the pool to achieve full temperature.
  4. What are the water flow rates? Flow rates are vital for the heat exchanger to transfer thermal energy to the pool. If the hot water flow rate is too low, the available energy will not be passed through the heat exchanger. However, the flow rate of the pool water is equally important. People often think it is important to generate a large temperature differential between the pool water entering and leaving the heat exchanger. They are happy, if the pipework connected to the outlet of the heat exchanger is noticeably warmer than it is at the inlet. In reality, this actually reduces the efficiency of the heat transfer process! This is because the pool water flow is too low – the water remains in the heat exchanger for too long, so a much smaller volume of water is being heated to a slightly higher temperature. 然而,在池水的流速增加后,换热所需的时间就会减少,即使通过换热器的池水温度仅略微升高(例如1.5°C),也会对整个池水的加热效率产生更大的影响。

More information about heat exchanger selection, read the article ‘Why doesn’t my pool heat up faster?’

EJ Bowman 新闻中心

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