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    • 2. 发明授权
    • Evaporator, loop heat pipe module and heat generating apparatus
    • 蒸发器,回路热管模块和发热装置
    • US08100170B2
    • 2012-01-24
    • US11831973
    • 2007-08-01
    • Bin-Juine HuangHuan-Hsiang HuangFu-Sheng SunYi-Hai Lian
    • Bin-Juine HuangHuan-Hsiang HuangFu-Sheng SunYi-Hai Lian
    • H05K7/20
    • F28D15/046F21V29/51F21Y2115/10F28D15/0233F28D15/0266F28F3/12
    • An evaporator suitable for absorbing heat from a heat source is provided. The evaporator includes a top board, a bottom board, a side frame, and at least one porous member. The side frame connects the top board and the bottom board. The porous member is disposed between the top board and the bottom board and within the side frame. The part of the top board covering the porous member is a heat conducting portion near the heat source. The evaporator has at least one first channel, at least one second channel, a fluid inlet, and a fluid outlet. The first channel is adjacent to the bottom board and the porous member for containing a working fluid. The second channel is adjacent to the top board and the porous member for containing the working fluid. The fluid inlet communicates with the first channel. The fluid outlet communicates with the second channel.
    • 提供适于从热源吸收热量的蒸发器。 蒸发器包括顶板,底板,侧框架和至少一个多孔构件。 侧框架连接顶板和底板。 多孔构件设置在顶板和底板之间并且在侧框架内。 覆盖多孔构件的顶板的部分是靠近热源的导热部。 蒸发器具有至少一个第一通道,至少一个第二通道,流体入口和流体出口。 第一通道邻近底板和用于容纳工作流体的多孔构件。 第二通道邻近顶板和用于容纳工作流体的多孔构件。 流体入口与第一通道连通。 流体出口与第二通道连通。
    • 8. 发明授权
    • Insulation measuring apparatus which forces heat flow in one direction with a constant temperature region
    • 绝缘测量装置,其在恒定温度区域中迫使一个方向的热流动
    • US06257761B1
    • 2001-07-10
    • US09000785
    • 1997-12-30
    • Yew Khoy ChuahMing-Tsun SunBin-Juine Huang
    • Yew Khoy ChuahMing-Tsun SunBin-Juine Huang
    • G01N2520
    • G01K17/20G01N25/18
    • This invention makes use of a electronically controlled heating device to form a region of constant high temperature on one side of the insulating material, and causes most of the heat transfer to concentrate in a longitudinal heat flux, which flows across the direction of the thickness of object-to-be-tested, to achieve the effect of one-dimensional heat transfer. When the temperatures on both sides of the insulation material being tested come to a stable state, the temperatures, the thickness of the material, and the heat flux, are measured and used to calculate the heat conductivity. The difference between the ideal two-dimensional heat transfer and the one-dimensional heat transfer can be corrected by the results of a theoretical model. The apparatus has been used to test a material with known heat conductivity. The result of the test conforms well with the expected value. Currently, the prototype which has been developed may be designed with a digital circuit which consists mainly of a single-chip microcomputer to perform PWM (Pulse Width Modulation) temperature control, temperature measurement, parameter input and coefficient calculation and displays functions.
    • 本发明利用电子控制的加热装置在绝缘材料的一侧上形成恒定高温区域,并且使大多数热传递集中在纵向热通量中,该热通量横跨厚度方向 被测对象,实现一维传热的效果。 当待测绝缘材料两侧的温度达到稳定状态时,测量温度,材料厚度和热通量,并用于计算热导率。 通过理论模型的结果可以校正理想二维传热与一维传热之间的差异。 该设备已被用于测试具有已知导热性的材料。 测试结果与预期值吻合良好。 目前,已经开发的原型可以设计成具有主要由单片机执行PWM(脉宽调制)温度控制,温度测量,参数输入和系数计算和显示功能的数字电路。
    • 9. 发明申请
    • Isolated-Type Hybrid Solar Photovoltaic System and Switching Control Method
    • 隔离型混合太阳能光伏系统和开关控制方法
    • US20160118846A1
    • 2016-04-28
    • US14525234
    • 2014-10-28
    • BIN-JUINE HUANGPO-CHIEN HSUJONG-FU YEH
    • BIN-JUINE HUANGPO-CHIEN HSUJONG-FU YEH
    • H02J7/35H01M10/46H02J7/00H02S40/38
    • H02J7/35H01M10/465H02J3/00H02J7/007H02S40/30H02S50/00Y02E10/566Y02P80/14
    • A isolated-type hybrid solar photovoltaic system contains: a solar cell having a peak power value of the solar cell, a battery having a power capacity and a discharge depth, a controller, at least one independent inverter, at least one relay, at least one AC load, at least one load measuring element, at least one load transmission wire, a AC grid power, and a microprocessor. The controller is electrically connected with the solar cell, the battery, the microprocessor, and the at least one independent inverter. The at least one relay has a first connecting point electrically connected with the at least one AC load and has two second connecting points electrically connected with the AC grid power and AC output end of the at least one independent inverter. The at least one relay further has a driving connection point electrically connected with an output end of the microprocessor.
    • 一种隔离式混合太阳能光伏发电系统,包括:具有太阳能电池的峰值功率值的太阳能电池,具有电力容量和放电深度的电池,控制器,至少一个独立逆变器,至少一个继电器 一个AC负载,至少一个负载测量元件,至少一个负载传输线,AC电网电源和微处理器。 控制器与太阳能电池,电池,微处理器和至少一个独立的逆变器电连接。 所述至少一个继电器具有与所述至少一个AC负载电连接的第一连接点,并且具有与所述至少一个独立逆变器的AC电网电力和AC输出端电连接的两个第二连接点。 所述至少一个继电器还具有与微处理器的输出端电连接的驱动连接点。
    • 10. 发明申请
    • MULITI-EFFECT DISTILLATION DEVICE
    • 多效蒸馏装置
    • US20140042009A1
    • 2014-02-13
    • US13572689
    • 2012-08-12
    • Bin-Juine HuangShih-Lin Chang
    • Bin-Juine HuangShih-Lin Chang
    • B01D3/02
    • B01D3/065
    • Present invention is a practical, highly efficient, structurally simple, low production cost, easy to manufacturing, and inexpensive multi-effect distillation device composed of thin-laminated distiller which is tangled into spiral and becomes layers of centric circle; one side of surface of said distiller is condensing surface which is for condensation of vapor of water, condensed distilled water is drained from underneath of said condensing surface, another side of said distiller is attached with a piece of wick which is made of capillary materials, undistilled water enters from above of the wick, than be absorbed and distributed by said wick. Some of the water absorbed on said wick is evaporated into the vapor of water. There is a gap between condensing surface and wick of each adjacent layers. The top and bottom of said gap is sealed to prevent leaking of the vapor of water.
    • 本发明是一种实用,高效,结构简单,生产成本低,易于制造和廉价的多效蒸馏装置,由薄层蒸馏器组成,其被缠绕成螺旋状并成为中心圆的层; 所述蒸馏器的表面的一侧是用于冷凝水蒸汽的冷凝表面,冷凝的蒸馏水从所述冷凝表面的下面排出,所述蒸馏器的另一侧附着有由毛细管材料制成的芯片, 无水的水从灯芯上方进入,不被吸收和分配。 吸收在所述灯芯上的一些水被蒸发成水蒸汽。 每个相邻层的冷凝表面和芯之间存在间隙。 所述间隙的顶部和底部被密封以防止水蒸汽泄漏。