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    • 6. 发明申请
    • METHOD AND INJECTOR FOR INTRODUCING A VAPOROUS HEAT CARRIER INTO A LIQUID PRODUCT
    • 将蒸气加热器引入液体产品的方法和注射器
    • US20160143343A1
    • 2016-05-26
    • US14899837
    • 2014-05-24
    • GEA TDS GMBH
    • Andreas SchmiedJürgen GehlingStephan StockhorstUwe SchwenzowLudger Tacke
    • A23L3/22
    • A23L3/22A23V2002/00F28C3/06F28C3/08
    • A method for introducing a vaporous heat carrier into a liquid product, in particular a food product or beverage, and more particularly viscous products, for example desserts, sauces or concentrates, includes using the carrier to heat the product to form a germ-free product. An injector for carrying out the method is also described. A reduction in the heat transfer capacity of the injector is prevented over the entire production time. This is achieved in that three physical measurement variables which can be detected during operation of the injector are used as indicators of the formation of product deposits. At least one of said three physical measurement variables is detected, and depending on these variables, an automatically controlled axial movement of the displacement body is carried out such that the heat transfer capacity from the vaporous heat carrier into the liquid product remains the same.
    • 将蒸气热载体引入液体产品,特别是食品或饮料,更特别是粘稠的产品,例如甜点,酱汁或浓缩物的方法包括使用载体加热产物以形成无菌产物 。 还描述了用于执行该方法的喷射器。 在整个生产时间内可以防止喷射器的传热能力的降低。 这是通过在注射器操作期间可以检测到的三个物理测量变量用作产物沉积物形成的指标。 检测到所述三个物理测量变量中的至少一个,并且根据这些变量,执行位移体的自动控制的轴向运动,使得从气态热载体到液体产物的传热能力保持不变。
    • 9. 发明申请
    • CONCENTRIC SYMMETRICAL BRANCHED HEAT EXCHANGER SYSTEM
    • 集中对称分支式热交换器系统
    • US20150140190A1
    • 2015-05-21
    • US14546369
    • 2014-11-18
    • Nestec SA
    • Kevin J. CullyMichael G. RaynerAndrew Joseph Brinkmann
    • A23P1/10A23L1/317
    • A23P30/00A23L3/001A23L3/22A23L3/225A23L13/60F28D7/106F28D2021/0042F28F9/0275Y02P60/85
    • A concentric symmetrical branched heat exchanger system includes an inlet manifold that divides the product flow evenly in the first section of the system and also includes an array of tubular concentric heat exchangers arranged in parallel and in series. Flow through each leg of the system can be divided further with secondary manifolds. Division of the product flow enables efficient heat exchange at higher and controllable product flow rates and at lower heat exchanger inlet pressures. Having lower inlet pressures reduces the heat exchanger construction cost and allows attachment of cutting or shaping devices at the exchanger exits to create uniquely shaped pieces. The cutting or shaping devices can be installed at the end of the branched heat exchanger to provide cooling and cutting in one process step while eliminating the material handling step of conveying product to and from a blast freezer or similar cooling device.
    • 同心对称的分支热交换器系统包括入口歧管,其将产品流均匀地分隔在系统的第一部分中,并且还包括并联和串联布置的管状同心热交换器阵列。 通过系统的每条腿的流动可以进一步与二级歧管分开。 产品流程的划分使得能够在更高和可控的产品流速以及更低的热交换器入口压力下进行有效的热交换。 具有较低的入口压力降低了热交换器的结构成本,并且允许在交换器出口处附接切割或成形装置以产生独特的成形件。 切割或成型装置可以安装在分支热交换器的端部,以在一个工艺步骤中提供冷却和切割,同时消除将产品输送到吹出冷冻机或类似冷却装置的材料处理步骤。