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申请号:201911137432.6 公开号:CN111082393A 主分类号:H02H7/06
申请人:【中文】潍柴动力股份有限公司【EN】Weichai Power Co.,Ltd. 申请日:2019.11.19 公开日:2020.04.28
摘要:【中文】本发明涉及电控发电机领域,尤其涉及一种电控发电机组自我保护的控制方法、系统及发电机组。本发明所述的电控发电机组自我保护的控制方法包括:记录发电机的运行参数;根据运行参数和机型定义表,判断发电机的使用情况;根据使用情况进行提醒或运行限制。通过记录电控发电机使用工况和时间等参数,充分利用电控机型优势,结合发电机型功率定义强制约束客户按照功率定义和技术协议使用发电机组,减少发电机组厂商损失。时时记录客户发电机组的实际使用工况以及该工况下的负荷点,超过发电机型功率定义后提醒客户,一方面可保护发电机组,避免给客户造成安全隐患以及损失,另一方面可维护发电机组厂商的合法利益。 【EN】The invention relates to the field of electric control generators, in particular to a self-protection control method and system for an electric control generator set and the generator set. The self-protection control method of the electric control generator set comprises the following steps: recording the operating parameters of the generator; judging the service condition of the generator according to the operation parameters and the model definition table; and reminding or limiting the operation according to the use condition. By recording the parameters such as the use condition, the time and the like of the electric control generator, the advantages of the electric control generator are fully utilized, the power definition of the generator type is combined to forcibly restrict a customer to use the generator set according to the power definition and the technical protocol, and the loss of a generator set manufacturer is reduced. The actual use working condition of the generator set of the customer and the load point under the working condition are recorded in real time, and the customer is reminded after the power of the generator type is defined, so that on one hand, the generator set can be protected, potential safety hazards and loss of the customer are avoided, and on the other hand, legal benefits of manufacturers of the generator set can be maintained.
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申请号:201911061007.3 公开号:CN111156580A 主分类号:F24D15/02
摘要:【中文】本发明的可增强换热的相变蓄热地板结构及其施工方法属于建筑节能领域,该地板结构由下至上依次包括基础结构层、绝热层、相变蓄热层和地板装饰层,相变蓄热层包括加热管线和相变蓄热盒,相变蓄热盒中填充有相变材料,其特征在于:加热管线包括下层加热管线和上层加热管线,下层加热管线穿过相变蓄热盒,上层加热管线放置于相邻两个相变蓄热盒侧壁顶部形成的缺口中。本发明的加热管线双层布置,可以增加加热管线的布置密度。而且在间歇性供暖时,上层加热管线的作用在于可以很快的提升室温,辅助蓄热;下层加热管线为相变材料的蓄热提供足够的热量。并在不锈钢管与不锈钢盒之间连接肋片来强化换热,可以在极大提升相变蓄热地板的蓄热、放热速率。 【EN】The invention relates to a phase change heat storage floor structure capable of enhancing heat exchange and a construction method thereof, belonging to the field of building energy conservation, the floor structure sequentially comprises a base structure layer, a heat insulation layer, a phase change heat storage layer and a floor decoration layer from bottom to top, wherein the phase change heat storage layer comprises a heating pipeline and a phase change heat storage box, and the phase change heat storage box is filled with a phase change material, and the floor structure is characterized in that: the heating pipelines comprise a lower layer heating pipeline and an upper layer heating pipeline, the lower layer heating pipeline penetrates through the phase change heat storage boxes, and the upper layer heating pipeline is placed in a gap formed at the top of the side wall of each two adjacent phase change heat storage boxes. The heating pipeline is arranged in a double-layer mode, so that the arrangement density of the heating pipeline can be increased. When intermittent heating is performed, the upper heating pipeline has the function of quickly raising the room temperature and assisting in heat storage; the lower heating pipeline provides enough heat for the heat storage of the phase-change material. And the fins are connected between the stainless steel pipe and the stainless steel box to strengthen heat exchange, so that the heat storage and heat release rates of the phase change heat storage floor can be greatly improved.
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申请号:201911082712.1 公开号:CN111059674A 主分类号:F24F7/007
摘要:【中文】本发明公开了一种利用热交换进行再热的新风系统及换热方法,包括热交换装置一、热交换装置二、风阀一、风机一、风阀二、净化装置、换热盘管和风机二;热交换装置一与热交换装置二和风机二连通,热交换装置二通过风阀一与风机一连通,并和换热盘管连通,风机一与净化装置连通,所述净化装置与换热盘管连通;新风依次通过热交换装置一、热交换装置二、风阀一、风机一、净化装置、换热盘管和热交换装置二的回风出口进入室内,排风依次通过热交换装置一和风机二排出室外。本发明通过设置两个热交换装置,在第二次热交换中利用同一股气流的前后温度不同进行先降温后升温,保证了降温冷凝的的效果,具有降低能耗、除湿稳定、提升舒适度的优点。 【EN】The invention discloses a fresh air system and a heat exchange method for reheating by using heat exchange, which comprises a first heat exchange device, a second heat exchange device, a first air valve, a first fan, a second air valve, a purification device, a heat exchange coil and a second fan, wherein the first air valve is connected with the first heat exchange device; the first heat exchange device is communicated with the second heat exchange device and the second fan, the second heat exchange device is communicated with the first fan through the first air valve and is communicated with the heat exchange coil, the first fan is communicated with the purification device, and the purification device is communicated with the heat exchange coil; fresh air sequentially passes through the first heat exchange device, the second heat exchange device, the first air valve, the first fan, the purifying device, the heat exchange coil and a return air outlet of the second heat exchange device to enter the room, and exhaust air sequentially passes through the first heat exchange device and the second fan to be discharged out of the room. According to the invention, through arranging the two heat exchange devices, the temperature is firstly reduced and then increased by utilizing the difference of the front and back temperatures of the same air flow in the second heat exchange, so that the effects of temperature reduction and condensation are ensured, and the device has the advantages of reducing energy consumption, stabilizing dehumidification and improving comfort level.
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