首页> 外国专利> COOLING THERMOSIPHON FOR DEPTH THERMO-STABILIZATION OF SOILS (VERSIONS)

COOLING THERMOSIPHON FOR DEPTH THERMO-STABILIZATION OF SOILS (VERSIONS)

机译:冷却热土以实现土壤的深度热稳定(版本)

摘要

FIELD: construction.;SUBSTANCE: according to the first version, the thermosyphon, together with the sleeve, is immersed vertically into the soil to the depth of 50 m. The thermosyphon comprises a sealed tubular housing with the areas of evaporation, condensation, and a transport area between them. The condenser in the condensation area is made in the form of a central large-diameter pipe and eight branch pipes of a smaller diameter, with external aluminium finning, located around the central pipe. The branch pipes are connected to the openings in it, and in the lower part of the central pipe there is a separator with through branch pipes for passing the vapour-drop mixture of a refrigerant (ammonia in the first version, or carbon dioxide in the second one) from the evaporator to the condenser and draining the ammonia condensate from the condenser. The through branch pipes are mounted on a pipe board. To the branch pipe for condensate drain, located on the center of the board, an inner polyethylene pipe is connected from below, which is lowered to the bottom of the evaporator housing pipe. At the lower part of the polyethylene pipe, openings are made for the transfer of a liquid refrigerant into the annulus formed by the walls of the evaporator housing pipes and the inner pipe. According to the first version (the refrigerant is ammonia), the thermosyphon is immersed in a sleeve filled with 25-30% ammonia water. The degree of the thermosyphon filling with liquid ammonia ε=0.47-0.52 at 0°C. According to the second version, the thermosyphon is filled with carbon dioxide and immersed vertically into the soil without a sleeve, the degree of filling with liquid carbon dioxide ε=0.45-0.47.;EFFECT: creating depth thermosyphons with super deep underground evaporators, with the uniform temperature distribution over the evaporator surface located in the soil, which allows touse its potential power to remove heat from the soil more effectively and to increase the energy efficiency of the device applied.;4 cl, 5 dwg, 2 ex
机译:领域:建筑;实体:根据第一个版本,热虹吸管和套管一起垂直浸入土壤中,深度为50 m。该热虹吸管包括一个密封的管状壳体,该壳体具有蒸发,冷凝和在它们之间的运输区域。冷凝区域中的冷凝器以中央大直径管和八个较小直径的分支管的形式制成,并在中央管周围设有外部铝翅片。支管连接到支管中的开口,并且在中心管的下部有一个分隔器,该分隔器带有用于使制冷剂(第一种形式的氨或第二种形式的二氧化碳)的蒸气滴混合物通过的分支管。第二个)从蒸发器到冷凝器,并从冷凝器中排出氨冷凝物。直通支管安装在管板上。内部的聚乙烯管从下方连接到位于板中心的冷凝水排放支管,该内部聚乙烯管下降到蒸发器容纳管的底部。在聚乙烯管的下部,设有用于将液态制冷剂转移到由蒸发器容纳管和内管的壁形成的环带中的开口。根据第一种形式(制冷剂为氨),将热虹吸管浸入装有25-30%氨水的套管中。在0℃下,液态氨的热虹吸填充度ε= 0.47-0.52。根据第二个版本,热虹吸管充满二氧化碳并垂直浸没在没有套管的土壤中,液态二氧化碳的填充度ε= 0.45-0.47。效果:使用超深地下蒸发器创建深度热虹吸管,分布在土壤中蒸发器表面的均匀温度分布,这使其可以利用其潜在功率更有效地从土壤中除热并提高所用设备的能源效率.4 cl,5 dwg,2 ex

著录项

  • 公开/公告号RU2629281C1

    专利类型

  • 公开/公告日2017-08-28

    原文格式PDF

  • 申请/专利权人 RILO ILYA PAVLOVICH;

    申请/专利号RU20160117601

  • 发明设计人 RILO ILYA PAVLOVICH;

    申请日2016-04-29

  • 分类号E02D3/115;

  • 国家 RU

  • 入库时间 2022-08-21 13:23:22

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